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Engineering Management Dissertation Topics
Published by Carmen Troy at January 9th, 2023 , Revised On May 17, 2024
Dissertation writing is an extremely important academic task that all students must complete as part of their degree programmes. However, choosing a dissertation topic can be an extremely daunting challenge for most students because they could be unsure about the area of research they should pursue.
The dissertation starts with an idea upon which research is performed. The idea is then transformed into an academic concept by presenting arguments and evidence. It should be noted that a well-written dissertation addresses the research topic at all levels and is written concisely.
The research methodology chapter of a dissertation presents complete evidence of the research work performed in the form of data collection/analysis methods employed by the researcher. However, many students do not know where to start.
To help you get started with brainstorming for engineering management topic ideas, we have developed a list of the latest topics that can be used for writing your engineering management dissertation.
These topics have been developed by PhD qualified writers of our team , so you can trust to use these topics for drafting your dissertation.
You may also want to start your dissertation by requesting a brief research proposal from our writers on any of these topics, which includes an introduction to the problem, research questions , aim and objectives , and literature review along with the proposed methodology of research to be conducted. Let us know if you need any help in getting started.
Check our example dissertations to get an idea of how to structure your dissertation .
You can review step by step guide on how to write your dissertation here.
View our free dissertation topics database.
List Of Dissertation Topics On Engineering Management
An Analysis on Project Delivery Through Agile Methodologies in the Age of Remote Work
What Are The Ethical Implications of Artificial Intelligence-Driven Decision-Making
Strategies for Encouraging Employee Creativity in Engineering Teams
An Investigation of The Impact of Big Data Analytics on Project Management
A Systematic Analysis of Cybersecurity Challenges in Engineering Project Management
How to Develop Skills for a Technology-Driven Workforce
Life Cycle Assessment Tools for Environmental Impact Reduction
The Role of Blockchain Technology in Supply Chain Management for Engineering Projects
How to Implement Real-Time Project Management Dashboards for Improved Decision-Making
Developing a Circular Economy Approach in Engineering Projects
The Role of Emotional Intelligence in Effective Engineering Leadership
Implementing Digital Twins for Improved Project Efficiency and Maintenance Optimisation
The Integration of Additive Manufacturing (3D Printing) in Engineering Project Management
The Role of Design Thinking in Engineering Project Management
Free Engineering Management Dissertation Topics
Topic 1: what are the environmental impacts of water waste treatment in the cement industry in south korea.
Research Aim: This study aims to find the environmental impacts of water waste treatment in the cement industry in South Korea. With the help of a comprehensive survey of the cement manufacturing companies in South Korea, this study will first scrutinise the entire waste treatment process in the cement industry in South Korea. Then it will analyse the impact of each step on the environment. After analysing the environmental effects of the water waste treatment of the cement industry in South Korea, this study will recommend modern ways to reduce the adverse effects.
Topic 2: An investigation of the challenges faced by businesses in leading themselves towards environmental sustainability due to global value chains and how the businesses mitigate such challenges - A case of Nigerian SMEs.
Research Aim: The significant aim of this research study is to uncover the issues and challenges faced by multiple businesses while implementing environmental sustainability and growth as a result of the global value chain. Another objective of this research topic is to investigate the sustainable strategies through which businesses mitigate the identified challenges of the global value chain by targeting Nigerian small and medium companies as a case study.
Topic 3: What are the modern water treatment techniques to minimise the environmental effects of water waste in the Cement Industry? A Cross-Country analysis
Research Aim: This study aims to identify modern water treatment techniques to minimise the environmental effects of water waste in the Cement Industry. A cross-country study will analyze the different water treatment techniques used by the cement industries in different countries. The best way to conduct this analysis is by comparing developed and developing countries. After identifying the best techniques, this study will recommend the optimal methods that can be used around the world in any country.
Topic 4: An innovative strategic evaluation of university knowledge and technology transfer efficacy for students up to date on new engineering tools.
Research Aim: This study aims to analyse the framework that organises total project work based on high levels of creativity in project development, as well as to keep students up to date with the usage of technology, focusing on collecting data from different firms that have utilised the technology to manufacture items and run highly creative initiative in collaboration with the university.
Topic 5: Investigating the strategies used to reduce water pollution caused by the maritime transportation system.
Research Aim: The main goal of this study is to investigate the strategies for reducing water pollution produced by the marine transportation sector/industry. This study will also analyse the environmental risks posed by water contamination and how marine transportation contributes to the increase in water pollution. Focusing on the economic cost of restoring the damage as a result of marine pollution will also help us learn about the environmental effects of water pollution and understand how to reduce water pollution using different methods and technologies used by management.
COVID-19 Engineering Management Research Topics
Topic 1: impact of covid-19 on engineering institutes.
Research Aim: This study will focus on identifying the impacts of coronavirus on engineering institutes and discuss possible solutions to overcome the challenges.
Topic 2: Role of engineering management during Covid-19
Research Aim: The study will focus on identifying the contribution of engineering management to combat the coronavirus pandemic. It will discuss emergency management to prevent and diagnose COVID-19, including its advantages and disadvantages.
More Engineering Management Dissertation Topics for 2024
Topic 1: developing an integrated water management model to reduce water wastage: a case study of developing countries.
Research Aim: This research will focus on the ecological and environmental influences that can be caused by water wastage while developing an effective model that can be utilised for effective water management to reduce the wastage of water. This research will focus on real-life scenarios of water management occurring in developing nations while recommending major changes in their existing water management system.
Find 100s of dissertation topics for other research areas.
Topic 2: Critical analysis of alternative energy in the least developed countries: The emergence of solar power as a means of providing electricity
Research Aim: The major purpose of this study will be to transform conventional means of energy into solar energy and its importance in the least developed countries. The researcher will carry out a detailed critical analysis of what pros and cons can emerge due to the utilisation of alternative energy solutions and how least developed countries can use solar energy systems instead of traditional energy systems keeping in mind the cost and other benefits.
Topic 3: Assessing the impact of biogas emission on quality of life and health of individuals living in rural areas: A case study of developing countries.
Research Aim: In this study, the main aim of the researcher will be to analyse major health issues and other effects that can be caused by the emission of biogas. The researcher will demonstrate the major risks to the quality of life of individuals living in rural areas of developing nations and what measures can be taken to reduce the effects of biogas emissions on the quality and health of the individuals.
Topic 4: Challenges facing the concept of sustainable and green engineering
Research Aim: This research study will aim to identify challenges facing the concept of sustainable and green engineering. The environment of the world is deteriorating at an alarming pace, primarily because of industrial activities that result in carbon emissions. This project will enable readers to understand the advantages of green engineering over conventional engineering and identify why this concept has not been implemented on a wider scale.
How Can ResearchProspect Help?
ResearchProspect writers can send several custom topic ideas to your email address. Once you have chosen a topic that suits your needs and interests, you can order for our dissertation outline service which will include a brief introduction to the topic, research questions , literature review , methodology , expected results , and conclusion . The dissertation outline will enable you to review the quality of our work before placing the order for our full dissertation writing service!
More Engineering Management Dissertation Topics
Some other interesting engineering management dissertation topics are listed below:
Ensuring Smooth Process Improvement by Conducting Management of Chain
The Development of a Project Management Methodology for Peace Corps Mauritania
Determination of the Critical Activities of a Public-private Intermediary Organization with the Help of Value Chain Analysis
Customer Relationship Management
Investigating the Management of Uncertainty in Product Platform Lifecycles
Study of the Performance and Characteristics of U.S. Academic Research Institution Technology Commercialization (ARITC)
Examining Health Information Technology Implementations: Case of the Patient-Centered Medical Home
Strategic Evaluation of University Knowledge and Technology Transfer Effectiveness
Proposing a Strategic Policy Model for International Collaboration in Technology and Science to Bridge the Gap between Bottom-up and Top-Down.
Use of Multiple Hierarchical and Perspectives Decision Modelling to Assess Solar Photovoltaic Technologies
Innovation Intermediaries and the Impact of Social Capital
Innovation Measurement: Determining Creativeness of an Organisation through Decision Framework
Performance of National Laboratories and the Impact of Knowledge Inflows
Proposing a Strategic Policy Choice Framework for Technological Innovation: Case of Chinese Pharmaceuticals
Use of Cognitive Map-based Scenarios to Extend Technology Roadmap: The Case of Wind Energy Sector in India
Integrating Financial Performance, Green Innovativeness, and Environmental Performance
Exploring Capability Maturity Models and Relevant Practices as Solutions Addressing IT Service Offshoring Project Issues
Decision Modelling for the Information and Communications Technology Sector and Participation in Technology Standards Development
Energy Policies to Employ Renewable Energy Resources; Case of Wind Energy in the UK
Technological Forecasting Based on Segmented Rate of Change
Sustainability Managing a Project Team
Risks Associated with Management of Engineering Projects
Supporting Business Strategies through Identification of Process Improvement Plans
Motivating Staff through Efficient Supply Chain Management
Improving the Efficiency of an Organisation with Leadership
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Important Notes:
As an engineering management student looking to get good grades, it is essential to develop new ideas and experiment with existing engineering management theories – i.e., to add value and interest to your research topic.
The field of engineering management is vast and interrelated to so many other academic disciplines like civil engineering , construction , law , healthcare , mental health , artificial intelligence , tourism , physiotherapy , sociology , management , marketing , and nursing . That is why it is imperative to create a project management dissertation topic that is articular, sound, and actually solves a practical problem that may be rampant in the field.
We can’t stress how important it is to develop a logical research topic; it is the basis of your entire research. There are several significant downfalls to getting your topic wrong; your supervisor may not be interested in working on it, the topic has no academic creditability, the research may not make logical sense, and there is a possibility that the study is not viable.
This impacts your time and efforts in writing your dissertation as you may end up in a cycle of rejection at the very initial stage of the dissertation. That is why we recommend reviewing existing research to develop a topic, taking advice from your supervisor, and even asking for help in this particular stage of your dissertation.
While developing a research topic, keeping our advice in mind will allow you to pick one of the best engineering management dissertation topics that fulfils your requirement of writing a research paper and adding to the body of knowledge.
Therefore, it is recommended that when finalising your dissertation topic, you read recently published literature to identify gaps in the research that you may help fill.
Remember- dissertation topics need to be unique, solve an identified problem, be logical, and be practically implemented. Take a look at some of our sample engineering management dissertation topics to get an idea for your own dissertation.
How to Structure Your Engineering Management Dissertation
A well-structured dissertation can help students to achieve a high overall academic grade.
A Title Page
Acknowledgments
Declaration
Abstract: A summary of the research completed
Table of Contents
Introduction : This chapter includes the project rationale, research background, key research aims and objectives, and the research problems to be addressed. An outline of the structure of a dissertation can also be added to this chapter.
Literature Review : This chapter presents relevant theories and frameworks by analysing published and unpublished literature available on the chosen research topic, in light of the research questions to be addressed. The purpose is to highlight and discuss the relative weaknesses and strengths of the selected research area whilst identifying any research gaps. Break down of the topic, and key terms can have a positive impact on your dissertation and your tutor.
Methodology: The data collection and analysis methods and techniques employed by the researcher are presented in the Methodology chapter which usually includes research design, research philosophy, research limitations, code of conduct, ethical consideration, data collection methods and data analysis strategy .
Findings and Analysis: Findings of the research are analysed in detail under the Findings and Analysis chapter. All key findings/results are outlined in this chapter without interpreting the data or drawing any conclusions. It can be useful to include graphs, charts and tables in this chapter to identify meaningful trends and relationships.
Discussion and Conclusion: The researcher presents his interpretation of results in this chapter, and states whether the research hypothesis has been verified or not. An essential aspect of this section of the paper is to draw a linkage between the results and evidence from the literature. Recommendations with regard to the implications of the findings and directions for the future may also be provided. Finally, a summary of the overall research, along with final judgments, opinions, and comments, must be included in the form of suggestions for improvement.
References: This should be completed in accordance with your University’s requirements
Bibliography
Appendices: Any additional information, diagrams, or graphs that were used to complete the dissertation but not part of the dissertation should be included in the Appendices chapter. Essentially, the purpose is to expand the information/data.
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Analyse project management strategies.
Consider sustainability and innovation.
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Engineering management simply refers to the management of all engineering aspects. It combines technology and organization to optimise engineering and overcome its limitations. Research in this field is crucial for improving engineering's potential. Thus, researchers and students must look for quality engineering management dissertation topics .
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How to find and shortlist workable dissertation topics for an engineering management dissertation.
Finding good topics for engineering dissertations can be difficult. This is because engineering management courses can be complicated. You might want to look at some examples of engineering management dissertations to get an idea. But the most important thing is to find a good topic before you start.
The important questions that students can ask at the start of this module are;
What are the thesis topics for engineering management that I work with?
Are there any engineering management thesis topics that my supervisor would be interested in?
Do I need any engineering management dissertation help at this stage?
Once you have shortlisted dissertation topics for engineering management, you can share them with your supervisor and they can help you choose the best one.
Importance of Selecting a Good Engineering Management Dissertation Topic
Engineering management combines business and technical skills to manage engineering projects. Graduates take up key managerial roles in the industry with high salaries and benefits. It is one of the top eight highest-paying master's degree programs due to the increased demand for qualified engineering managers. Regardless of the reason for entering this field of study, it is required in both master's and PhD programs to submit an engineering management research proposal to supervisors to be considered for admission.
Review Our Full List of Latest Dissertation Topics
For more engineering management dissertation topics, please keep visiting our website as we keep updating our existing list of topics.
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Engineering Management & Systems Engineering Theses & Dissertations
Theses and dissertations published by graduate students in the Department of Engineering Management and Systems Engineering, College of Engineering, Old Dominion University since Fall 2016 are available in this collection. Backfiles of all dissertations (and some theses) have also been added.
In late Fall 2025, all theses will be digitized and available here. In the meantime, consult the Library Catalog to find older items in print.
Theses/Dissertations from 2024 2024
Dissertation: Examining the Role of Access to Capital, Social Capital Networks, and Education in Supporting Black Founders and Investors in Technology-Based Entrepreneurship , Akosua Acheamponmaa
Dissertation: Understanding the Impact of Emergent Conflict on Communication and Team Cognition: A Multilevel Study in Engineering Teams , Francisco Cima
Theses/Dissertations from 2023 2023
Dissertation: Systemic Risk Analysis of Human Factors in Phishing , Mark Guilford
Dissertation: Human Psychology Factors Influencing Agile Team Autonomy in Post-Pandemic Remote Software Organizations , Ravikiran Kalluri
Dissertation: Reinforcing Digital Trust for Cloud Manufacturing Through Data Provenance Using Ethereum Smart Contracts , Trupti Narayan Rane
Dissertation: Electric Vehicle Routing Problem – Models and Algorithms , Hesamoddin Tahami
Theses/Dissertations from 2022 2022
Dissertation: A Systems Theory-Based Framework for Environmental Scanning in Complex System Governance , Dale E. Baugh
Dissertation: Learning Curve Characterization Within Complex Low-Rate Production Environments , Robert J. Gies
Thesis: Acquisition Career Progression Model for Navy Explosive Ordnance Disposal Officers , Andrew John Heckel
Dissertation: Hard-Real-Time Computing Performance in a Cloud Environment , Alvin Cornelius Murphy
Dissertation: A Quality Systems Economic-Risk Design Theoretical Framework , Abdallah S. Thefeid
Dissertation: Predictors of Email Response: Determinants of the Intention of not Following Security Recommendations , Miguel Angel Toro-Jarrin
Dissertation: Complex System Governance Leadership , David C. Walters
Theses/Dissertations from 2021 2021
Thesis: Quantifying Cyber Risk by Integrating Attack Graph and Impact Graph , Omer F. Keskin
Dissertation: Cybersecurity Risk Assessment Using Graph Theoretical Anomaly Detection and Machine Learning , Goksel Kucukkaya
Dissertation: Application of a Blockchain Enabled Model in Disaster Aids Supply Network Resilience , Farinaz Sabz Ali Pour
Theses/Dissertations from 2020 2020
Dissertation: A Framework for Adaptive Capacity in Complex Systems , Abdulrahman Alfaqiri
Thesis: Engineering Management Competencies: A Framework for Present and Future Engineering Environments , Christopher Vaughn Barrett
Dissertation: DOD Mission Engineering and Integration Explorative-Exploitative Architecture for Technology Innovation , Jose L. Bricio-Neto
Dissertation: A Quest to Identify the Emerging Leadership Skills in VUCA World and Investigation of Their Applications in Various Organizational Levels and Security Environments , Ali Can Kucukozyigit
Dissertation: Cyber-Assets at Risk (CAR): Monetary Impact of Personally Identifiable Information Data Breaches on Companies , Omer Ilker Poyraz
Dissertation: Using Interacting Multiple Model Filters to Indicate Program Risk , Amy Sunshine Smith-Carroll
Dissertation: An Investigation on the Effectiveness of a Problem Structuring Method in a Group Decision-Making Process , Ying Thaviphoke
Dissertation: A Core Reference Hierarchical Primitive Ontology for Electronic Medical Records Semantics Interoperability , Ziniya Zahedi
Dissertation: Human Error in Commercial Fishing Vessel Accidents: An Investigation Using the Human Factors Analysis and Classification System , Peter J. Zohorsky
Theses/Dissertations from 2019 2019
Dissertation: Evaluating Stakeholder Bias in Stakeholder Analysis In Social Media , Ahmad A. Bajarwan
Dissertation: An Investigation of General Criteria for Assessing Space Flight Systems of Diverse Mission Concept Designs , Cindy L. Daniels
Dissertation: Knowledge Sharing and Creative Confidence in Promoting Employees’ Creative Behavior , Elnaz Dario
Dissertation: Optimization of Automated Guided Vehicles (AGV) Fleet Size With Incorporation of Battery Management , Ahmed Hamdy
Dissertation: An Exploratory Study of Engineering Identity Development in African American Youth , Coletta Elayne Johnson Bey
Dissertation: Identifying and Quantifying Personnel Skills Gaps , Martin Joseph McKenney
Dissertation: Measuring Risks of Interdependencies in Enterprise Systems: An Application to Ghana’s Salt Enterprise , Yaw Mensah
Dissertation: Quantifying Impact of Cyber Actions on Missions or Business Processes: A Multilayer Propagative Approach , Unal Tatar
Dissertation: Development and Initial Evaluation of a Reinforced Cue Detection Model to Assess Situation Awareness in Commercial Aircraft Cockpits , Aysen K. Taylor
Dissertation: A Comparison of Multi-Attribute Utility Theory, the Analytic Hierarchy Process, the Analytic Network Process, and New Hybrid Approaches for a Case Study Involving Radon , Jesse Ray Toepfer
Dissertation: The Resilient City: A Platform for Informed Decision-Making Process , Jarutpong Vasuthanasub
Theses/Dissertations from 2018 2018
Dissertation: A Framework for Executable Systems Modeling , Matthew Amissah
Dissertation: The Influence of Engineers on Public Policy , Sarah Bouazzaoui
Dissertation: Contextual Framework of Communications Functions Supporting Complex System Governance , Charles Wesley Chesterman Jr.
Dissertation: A Representation of Tactical and Strategic Precursors of Supply Network Resilience Using Simulation Based Experiments , Yaneth C. Correa-Martinez
Dissertation: Sequence-Based Simulation-Optimization Framework With Application to Port Operations at Multimodal Container Terminals , Mariam Aladdin Kotachi
Dissertation: Human-Intelligence and Machine-Intelligence Decision Governance Formal Ontology , Faisal Mahmud
Dissertation: Exploring Critical Success Factors of Community Development Projects , Kevin Wanjama Muchiri
Dissertation: A Multi-Level Longitudinal Investigation of Transformational Leadership Influence on Team Members Development in Engineering Project Teams , Nathapon Siangchokyoo
Dissertation: Understanding the Impact of Large-Scale Power Grid Architectures on Performance , Ange-Lionel Toba
Dissertation: Case Study on the Development of Engineering Design Modification Projects for U.S. Nuclear Power Plants: A Knowledge Retention Tool in Support of the Longevity and Resilience of the Nuclear Power Industry , Pamela M. Torres-Jiménez
Theses/Dissertations from 2017 2017
Thesis: Role of Requirements Engineering in Software Project’s Success , Sujatha Alla
Dissertation: A Hilbert Space Geometric Representation of Shared Awareness and Joint Decision Making , Mustafa Canan
Dissertation: An Investigation into Perceived Productivity and Its Influence on the Relationship Between Organizational Climate and Affective Commitment , Kaitlynn Marie Castelle
Dissertation: Emergency Diesel-Electric Generator Set Maintenance and Test Periodicity , Stephen John Fehr
Thesis: Initiating Event Analysis of a Lithium Fluoride Thorium Reactor , Nicholas Charles Geraci
Thesis: Impact of a Localized Lean Six Sigma Implementation on Overall Patient Safety and Process Efficiency , Luvianca G. Gil-Moreno
Dissertation: Diversity Team Building: Impact on Virtual Team Performance , Nina C. Magpili-Smith
Dissertation: Implementation of a Multi-Criteria Decision Analysis (MCDA) Toolkit to Aid in Ranking Naval Mission Vessel Combinations With Uncertainty , Andrew R. Miller
Dissertation: A Predictor Analysis Framework for Surface Radiation Budget Reprocessing Using Design of Experiments , Patricia Allison Quigley
Dissertation: Analysis of Project Management System Structure Using the Viable System Model (VSM) , Joseph A. Sisti
Dissertation: Planning and Team Shared Mental Models as Predictors of Team Collaborative Processes , Zikai Zhou
Dissertation: Methodology to Perform Cyber Lethality Assessment , Matthew W. Zurasky
Theses/Dissertations from 2016 2016
Dissertation: Systems Theory Based Architecture Framework for Complex System Governance , Bry Carter
Dissertation: Profit Based Simulation Model for The Rail Transportation Industry , Mark Patrick Doran
Thesis: Design and Implementation of a Virtual Team Collaboration System , Syed Ehsan
Dissertation: A General Theory of Emergence in Engineered Systems , John J. Johnson IV
Dissertation: Improvement of Work Process Performance with Task Assignments and Mental Workload Balancing , Cansu Kandemir
Dissertation: An Outcome-Based Competency Model for Systems Engineering Trainees , Vanessa J. Pietrzyk
Dissertation: A Hybrid Tabu/Scatter Search Algorithm for Simulation-Based Optimization of Multi-Objective Runway Operations Scheduling , Bulent Soykan
Thesis: Extension of the Gravity Model: A Risk Integrated Approach Towards the Impact Analysis of Mega Sports Events on Inbound Tourist Arrivals , Abdul Sami Stanekzai
Dissertation: A Retrospective Study of Amusement Ride Restraint and Containment Systems: Identifying Design Challenges for Statistically Rare Anthropometric Cases , Paula M. Stenzler
Theses/Dissertations from 2015 2015
Dissertation: An Approach for the Development of Complex Systems Archetypes , Walter Lee Akers
Dissertation: Meta-RaPS Hybridization with Machine Learning Algorithms , Fatemah Al-Duoli
Dissertation: Management and Leadership Style: Is Style Influenced by Engineering Education? , Jesse Levi Calloway
Dissertation: Key Factors Driving Personnel Downsizing in Multinational Military Organizations , Ilksen Gorkem
Dissertation: A Framework to Simplify the Choice of Alternative Analysis and Selection Methods , James Paul Lewis Holzgrefe
Dissertation: Systems Theory-Based Construct for Identifying Metasystem Pathologies for Complex System Governance , Polinpapilinho F. Katina
Dissertation: An Analysis of the Relationship Between Military Leaders' Operational Adaptability and Knowledge Transfer , Vahap Kavaker
Thesis: Improving Response Characteristics of Split Ring Resonators Using Experimental Designs , Omer Faruk Keskin
Dissertation: Examining the Relationship Between Leadership Decision Making Styles and Personality Type Within the Department of Defense , Antoine Lamont Prince Sr.
Dissertation: Command and Control in the Information Age: A Case Study of a Representative Air Power Command and Control Node , Marvin Leo Simpson Jr.
Dissertation: The Role of Diversity on Team Effectiveness in a Multinational and Multicultural Military Environment , Mustafa Utoglu
Dissertation: Safety Culture Monitoring: A Management Approach for Assessing Nuclear Safety Culture Health Performance Utilizing Multiple-Criteria Decision Analysis , James Harold Warren Jr.
Theses/Dissertations from 2014 2014
Dissertation: A Systems-Based Framework for the Assessment of Performance Measurement System Implementations in R&D Organizations , Kenneth S. Baggett Jr.
Dissertation: Human Capital Management Within the Federal Government Utilizing Generational Stratification With a Focus on Generation Y , Ian Nathaniel Barford
Dissertation: Time-Based Collision Risk Modeling for Air Traffic Management , Alan E. Bell
Dissertation: An Investigation of Business Transformation Disruptors at the Military Strategic Command Level , Thomas Bock
Dissertation: Systems Theory Based Framework for Competency Models , Joseph M. Bradley
Thesis: Emergency Diesel-Electric Generator Set Maintenance and Test Periodicity , Stephen John Fehr
Dissertation: An Instrument to Assess Individual Capacity for System Thinking , Ra'ed M. Jaradat
Thesis: Simulation Modeling and Analysis of Customs-Regulated Container Terminal Operations with Multimodal Transportation , Mariam A. Kotachi
Thesis: Assessing Organizational Effectiveness Through the Competing Values Framework A Data Envelopment Approach , Raghavender Macherla
Dissertation: Assessing the Impact of Electronic Health Record Systems Implementation on Hospital Patient Perceptions of Care , Katherine Sofia Palacio Salgar
Dissertation: Graphical Display of the Effect of Three Cash Flow Elements for Sensitivity Analysis , Kawintorn Pothanun
Dissertation: Self-Regulating Teamwork Behaviors in Low-Volume & High-Complexity Production , Aaron W. Powell
Dissertation: An Investigation into the Analysis of Truncated Standard Normal Distributions Using Heuristic Techniques , John Walter Ralls
Dissertation: A Method to Define Requirements for System of Systems , Randy Gene Walker
Dissertation: The Relationship Among HFACS Levels and Analysis of Human Factors in Unmanned and Manned Air Vehicles , Veysel Yesilbas
Theses/Dissertations from 2013 2013
Dissertation: System Governance Analysis of Complex Systems , Behnido Y. Calida
Dissertation: Shared Leadership in Six Sigma Teams From the North Shore-LIJ Health System , Brian J. Galli
Dissertation: An Expert Based Multi Attribute Group Decision Making (MAGDM) Model for Portfolio Evaluation: Application on Ground Force Units , Metin Gultekin
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Dissertation: The RQ-Tech Methodology: A New Paradigm for Conceptualizing Strategic Enterprise Architectures , Christine Ann Hoyland
Dissertation: Micro to Macro Dynamics of Shared Awareness Emergence in Situations Theory: Towards a General Theory of Shared Awareness , Samuel F. Kavacic
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PhD Program
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The PhD degree in MS&E is intended for students primarily interested in a career of research and teaching, or high-level technical work in universities, industry, or government.
The PhD is conferred upon candidates who have demonstrated substantial scholarship and the ability to conduct independent research. Through course work and guided research, the program prepares students to make original contributions in Management Science and Engineering and related fields.
Doctoral Programs
Program overview Curriculum Admission
Program overview
Student Stories
“I became interested in the intersection between behavioral economics and energy policy, inspiring many of the projects I have undertaken during my time at Stanford.”
- Melanie Craxton, graduating PhD candidate
Career Placement
PhD graduates from MS&E have taken positions with a wide range of organizations that include high-tech businesses, government agencies, nonprofits, and academic institutions.
Click below to see where graduates have found employment.
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Engineering Management Doctoral Program
Program details.
The Doctor of Philosophy (Ph.D.) in Engineering Management degree program prepares students to perform the compelling research and high-level design that will advance the field of engineering management across areas such as finance, manufacturing, public policy and the service sector.
The Stevens Advantage: Widen Your Career Options
Graduate Cooperative Education Program : Available with two tracks, your co-op experience can serve as a starting point for a research project or augment your on-campus research with complimentary experience.
International Student Experience : Tap into our expanding worldwide network of research, academic and alumni partners and mentor with our expert faculty in a number of federally-designated STEM degree programs. Optional Practical Training (OPT) or Curricular Practical Training (CPT) is available to gain work experience in your major/field of study.
State-of-the-Art Research Labs and Facilities : Build, tinker and test your designs in Stevens' MakerCenter, Prototype and Object Fabrication Lab, or numerous other research facilities.
Research Opportunities : Renowned faculty, labs and research centers – as well as industry partnerships and funding from leading national agencies – support strategic and interdisciplinary research in engineering and science.
Assistantships and Fellowships: Stevens offers funding to select graduate students in the form of teaching assistantships, research assistantships and fellowships. Limited in number, these highly competitive opportunities are awarded to exceptional candidates based on merit.
Expanded Learning Options : The Schaefer School offers new opportunities for doctoral students to do coursework at universities in the New York City area – and around the world – through our growing list of academic partnerships with other prestigious universities. Learn more about our latest partnerships.
Program Admission Requirements
Transcripts from all post-secondary institutions attended
Two letters of recommendation (academic or professional only; Select Ph.D. programs require a third letter of recommendation)
Statement of Purpose
$60 non-refundable Application Fee
Proof of English language proficiency
Writing sample(s). All applicants are encouraged to submit a lab report (preferable) or paper that they wrote, individually, for an engineering course. Applicants who have published a journal article are also encouraged to submit a copy of their article.
For more complete details, visit our General Admissions Requirements page .
Apply Online >
View objectives, outcomes, and other Ph.D. curriculum details in the most recent academic catalog.
View Academic Catalog >
Each Ph.D. curriculum must also adhere to the institute wide standards listed in the doctoral handbook.
View Doctoral Handbook >
If you have existing graduate credits or experience in this area of study, contact [email protected] to discuss opportunities to include it in the curriculum.
Information about assistantships and fellowships can be found here .
The four fields comprising STEM – science, technology, engineering and mathematics – offer a wide variety of professions that are classified as some of the highest-growing and highest-paying jobs right now and in the future. And for international students, the demand for STEM-related professionals in the United States can open the door for an extended stay. An ever-growing list of eligible programs across all levels is available here .
Graduate Programs That Advance Your Career
Lockheed Martin
A Tech Forward Education
The multidisciplinary collaborations that can take place are the best aspect of the engineering management doctoral program. Collaborations with researchers from other areas enrich the quality of the research and learning experience, and the technical knowledge ultimately acquired is of the highest quality.
Danta Gamma Dessarve
Engineering Management Graduate
Related Programs
Socio-technical systems doctoral program.
Socio-Technical Systems at Stevens is the first and only such degree in the U.S. specializing in the area.
Engineering Management Master's Program
The Engineering Management program equips students with tools and methodologies needed to manage complexity.
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PhD in Engineering Management
Advancing engineering research and leadership.
The industry leaders of tomorrow must earn their credentials today. Enroll in Western New England University’s PhD in Engineering Management program and prepare to take your place at the top of your organization. In this full- or part-time program , you will learn at a technical depth and gain the breadth of knowledge to become a successful practitioner, researcher, teacher, and mentor in the management of engineering and technology. You will develop the skills needed to conduct rigorous research in areas related to the improvement, design, and management of projects and programs within complex human/technological systems, including engineering, quality, healthcare, service, and logistical/transportation systems. You have the option to complete the PhD in Engineering Management 100% online . This is an excellent option for working professionals interested in pursuing their program part-time at our nationally recognized university.
Why Choose the PhD in Engineering Management?
It is the philosophy of the program to graduate students who have the ability to create, evaluate, improve, design, and manage complex human technological systems. Additionally, students will demonstrate the ability, through dissertation research, to contribute to the body of knowledge in the field of engineering management. The systems include engineering/manufacturing systems, service systems, and logistical systems.
What to Expect
The PhD in Engineering Management focuses on developing skills needed to conduct rigorous research in areas related to the improvement, design, and management of projects and programs within complex human-technological systems.
What Will You Study?
The PhD in Engineering Management focuses on developing skills needed to conduct rigorous research in areas related to the improvement, design, and management of projects and programs within complex human-technological systems. Students take 10 courses before beginning a dissertation research project, including five core courses that establish a foundation of knowledge from which each student can explore their area of interest. Core courses are Engineering Supply Chain, Operations Research, Project Management, Strategic Economic Decision Making, and Seminar/Research Methods for Engineering Management. After the core is complete, a plan of study is developed in consultation with a research advisor that considers the dissertation research of the student. Whether you pursue your studies on campus or fully online, you will work regularly with your advisor, a content expert in your field of interest. You can be confident that you will have support throughout your educational journey.
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Admissions requirements.
Candidates for the PhD in Engineering Management should possess a master’s or bachelor’s degree in engineering or closely related discipline. A cumulative GPA of at least a 3.5 (4.0 scale) will be required for admission. A GRE score* from the last five years, with a combined verbal and quantitative score of at least a 300 with a quantitative score in at least the top 40 th percentile will be required for consideration. Candidates below established GPA and GRE requirements will be considered on a case-by-case basis. Candidates whose primary language is not English will be required to demonstrate proficiency in English . Applicants must also have evidence of completion of a probability and statistics course with a grade of at least a “B” and be able to demonstrate competence in at least one structured programming language (R, Python, C++, etc.).
*The College of Engineering will consider waiving the GRE requirement based on progressive industry experience, academic performance, a recommendation from a research advisor, and an interview. The interview can be scheduled at any point during the application process by emailing Dr. Christian Salmon, Department Chair for Industrial Engineering and Engineering Management, at [email protected] .
Admissions Process
The personal attention you’ll receive from our faculty is unparalleled. They’ll become your mentors, learning partners, and colleagues during your education. Not only will you work with them in the classroom, but you’ll also have the opportunity to collaborate with faculty on research and development projects. Their interests are in areas such as supply chain management, discrete event systems, quality, reliability, global health, human factors, and risk management.
How are courses offered?
Course Delivery: In-class or online* Total Credits: 57-72
Options for attending courses include fully in-class, fully online, as well as hybrid in-class and online to accommodate work and family. All lectures will be captured and available for online review. The program will capture all lecture-based presentations using the echo360 lecture capture system.
If you are interested in completing the program fully online, you will have an initial consultation with the Department Chair to discuss your goals and how an online approach could work for you, with particular attention to dissertation requirements. Once enrolled in program, you will be paired with a faculty advisor who will be a content expert in their field based on your research interests.
*International candidates will be required to attend in-class sessions in order to be in compliance with student visa requirements.
Program Goals & Philosophy
Goals/Principles
The goal of the program is to prepare graduates with the appropriate technical depth and breadth of knowledge so that they may be successful educators, researches, and practitioners in the management of complex human technological systems. The program will follow three principles in pursuit of this goal. In addition to passing the required coursework, students must also pass a comprehensive examination to demonstrate a mastery of Principles 1 and 2.
Principle 1: Provide a Solid Foundation and Depth in Engineering Management Theory and Practice
A solid fundamental understanding of a field is essential in order for students to be considered an expert in that field. This is true for Engineering Management as well. It is the fundamentals that a student will need to expand upon in order to contribute new knowledge to the field of engineering management. We place an emphasis on the fundamentals of the management of complex human technological systems and an emphasis on the modeling and analysis of such systems.
Principle 2: Provide Breadth Across Multiple Types of Human Technological Systems
Principles, tools, and fundamentals of engineering management have been rooted in engineering and manufacturing systems. These tools have also been successfully applied to other systems such as service and transportation/logistical systems. Today engineering managers can be increasingly found in banks, hospitals, amusement parks, airlines, and a variety of delivery agencies. On the surface, these industries appear different however; they all involve people, materials, information, equipment, energy, and capital. Therefore, the program will emphasize case studies and examples within the coursework that are applications in the following three areas:
Engineering and Manufacturing Systems
Service Systems
Logistical Systems
Principle 3: Contribute to the body of Knowledge in Engineering Management
A requirement of any Doctorate of Philosophy Program in Engineering is the expectation that graduating students will contribute to the body of knowledge in their chosen field by conducting research. This will be demonstrated by graduating students successfully completing a doctoral dissertation. Students conducting dissertation research will be guided by a selected advisor and advisory committee. Students must pass a dissertation approval examination in order to ensure they are prepared to conduct research. Upon the successful completion of research, graduating students will document the research results in a dissertation. Dissertations will be defended in front of advisory committees.
Leaders with engineering backgrounds are needed around the globe to manage people and resources. The College of Engineering enjoys a growing reputation among international students for the caliber of our graduate programs. Learn more about our support for international students.
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Apply for the PhD
Apply for the PhD (Distance Learning)
Start dates.
January April July September ( semester dates )
School of Physics, Engineering and Technology
UK fees International fees
Meet us online or on campus and find out more about postgraduate study at York.
Pioneer impactful research in key areas such as sustainability, entrepreneurship, innovation, strategy, and leadership in engineering businesses. Enhance your skillset to open up new opportunities and career paths in academia or research and development, across industry and the public sector.
Your research
As a postgraduate researcher, the focus of your work will be an independent research project. You will work with leading researchers, while gaining valuable skills through an integrated training programme in research methods.
You'll have access to advanced taught courses to help you develop the knowledge and skills needed to conduct your research.
Your research will culminate in a thesis and oral examination. Your thesis should effectively, clearly and concisely communicate the research question, methodology, results, analysis, and conclusions, with quality and depth appropriate for your PhD in Engineering Management degree.
Research projects
Our academics are working on a wide range of projects suitable for research students to join.
Find a project
School of Physics, Engineering and Technology funding
Funding for research students at York
[email protected] +44 (0)1904 324485
Related links
Research degree funding
Accommodation
International students
Life at York
How to apply
Supervision
You will be supervised on a one-to-one basis by a member of academic staff. We also offer opportunities for co-supervision, within the School and across the wider University, to support interdisciplinary projects. Your supervisor will help guide your progress, supported by a thesis advisory panel.
Before applying, we encourage you to find out about our academics and get to know how their work and expertise fit your interests. Our academic staff are happy to answer any questions on their research interests or discuss a project you might have in mind.
Find a supervisor
Training and support
You'll collaborate with fellow researchers through seminars, workshops, and research group meetings where you can present your work, gaining insights and feedback from peers and staff. Collaborative opportunities exist both within and beyond the university, including partnerships with industry, broadening your research scope and perspectives.
You'll participate in our annual PhD conference typically held during the summer. This event provides hands-on experience in presenting your research, helping you develop effective communication skills crucial in today's engineering landscape.
You can enrol in researcher development courses and professional development courses to further enhance your skills and expertise. These opportunities aim to equip you with a well-rounded skill set to thrive in both academic and professional areas.
Previous students have had the opportunity to showcase their work at conferences both in the UK and internationally, as well as to publish in esteemed global journals.
Course location
Your primary base will be on Campus West . Most of your training and supervision meetings will take place here, though your research may take you further afield.
Full-time students are provided with dedicated desk spaces within the School of Physics, Engineering and Technology for the entirety of their programme.
We offer a distance learning (DL) option for the PhD programme if you cannot live in York full- or part-time. As part of the application process, we will ask for justification for taking the DL option and will then assess the feasibility of the work programme. The latter will be embodied in a plan of study outlining resources and facilities needed, training requirements and an associated timeline, which will need to be in place before being accepted onto the programme. Unless special arrangements can be agreed in advance, a research topic that requires specialised equipment and facilities may not be possible with the DL option.
Entry requirements
You should have, or be about to complete, the equivalent of a 2:1 honours degree or above in:
Project Management
Business Management
Engineering Management
Electronics
Electrical Engineering
Mathematics
Computer Science
Music Technology
or a closely-related subject.
English language requirements
If English is not your first language you must provide evidence of your ability.
Advertised research projects
If you are applying for an advertised research project, please include the project name in your application. You should contact the project leader in advance, who may also ask you to submit a full research proposal. Advertised research projects may be funded or self-funded, as indicated in the advert.
Research proposals
Your research proposal needs to describe the nature of your proposed study and give some indication of how you will conduct your research. The purpose of this exercise is to ensure that you and your potential supervisor(s) have matching research interests. The proposal should be 250 to 350 words in length. It must be in English, and be your own words.
If you are not applying for a particular research project, you should contact the member of the academic staff you wish to work with, who may provide you with a research/project outline.
Careers and skills
Your PhD will help to extend your qualifications, allowing you to explore and research diverse areas. This includes understanding the various aspects of entrepreneurship and leadership in engineering businesses, innovation, and strategy management, and sustainability. You'll gain skills problem-solving, critical thinking, business acumen, and data analysis. This preparation will enable you to step confidently into the next stage of your career.
Our dedicated careers team offer specific support including a programme of professional researcher development and careers workshops and 1:1 career support sessions.
Career opportunities
(Sustainable) project manager
Marketing leader
Lead engineer
(Green) innovation specialist
Engineering consultant
Design engineer
Academic researcher
(Eco-friendly) product development engineer
Sustainable leader
Entrepreneurship
Scholarships and funding
Discover york.
We offer a range of campus accommodation to suit you and your budget, from economy to deluxe.
Discover more about our researchers, facilities and why York is the perfect choice for your research degree.
Graduate Research School
Connect with researchers across all disciplines to get the most out of your research project.
Doctor of Philosophy in the Field of Engineering Management (STEM)
The online master of science in engineering management is designed to provide students with an interdisciplinary understanding of leadership skills. Specifically, the skills needed to become effective managers in technology-driven organizations and government entities. Throughout the program, students acquire knowledge of technical engineering principles and engineering contracts within a management context.
Program graduates are equipped with the skills to effectively lead diverse engineering teams, oversee complex projects, implement innovative strategies, and drive organizational success. They also are prepared to take the Project Management Professional Examination (offered by the Project Management Institute) to receive the PMP certification.
The online program’s structure offers synchronous and asynchronous learning options, giving students the flexibility to study at their convenience and from any location.
This is a STEM designated program.
Visit the program website for additional information.
Adminssion Requirements
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Requirement
Admission deadlines:
Fall – January 15
Spring – September 1
Summer* – March 1 (non-F1 visa seeking applicants)
Standardized test scores:
The GRE General Test is optional for all applicants. For applicants who want to submit scores, they must be submitted officially from ETS using the institutional code 5246.
The Test of English as a Foreign Language (TOEFL), the academic International English Language Testing System (IELTS), or the PTE Academic is required of all applicants except those who hold a bachelor’s, master’s, or doctoral degree from a college or university in the United States or from an institution located in a country in which English is the official language, provided English was the language of instruction. Minimum scores:
- Academic IELTS: an overall band score of 7.0 with no individual score below 6.5; or
- TOEFL: 600 on paper-based or 100 on Internet-based; or
- PTE Academic: 68.
Recommendations required:
Three recommendations required. If possible, one recommendation should be from your advisor at the institution from which you earned your highest degree.
Prior academic records:
Transcripts are required from all colleges and universities attended, whether or not credit was earned, the program was completed, or the credit appears as transfer credit on another transcript. Unofficial transcripts from all colleges and universities attended must be uploaded to your online application. Official transcripts are required only of applicants who are offered admission.
If academic records are in a language other than English, a copy in the original language and an English language translation must be uploaded. Transcript evaluations should not be uploaded. Applicants who have earned a degree from an Indian university are required to submit individual semester marksheets.
Statement of purpose:
Please write a comprehensive essay of 400 to 600 words, indicating your primary and supporting fields of study, your specialized interests, and the general subject area of your planned dissertation or professional project.
Additional requirements:
Applicants whose highest earned degree is a master’s degree should have a grade-point average of at least 3.5. Applicants without a master's degree must have a bachelor's degree with a GPA of at least 3.3.
All applicants must submit a resumé or CV. Applicants to the on–campus program should identify one to three faculty members whose research interests most closely match their own and note this on the online application. All on-campus applicants must choose an area of focus that most closely matches their interests and note this on the online application.
International applicants only:
Please follow this link - - to review the International Applicant Information carefully for details on required documents, earlier deadlines for applicants requiring an I-20 or DS-2019 from GW.
* A limited number of doctoral applicants are accepted for the summer. Please contact the admissions office for details. International applicants who require a visa from GW are eligible to apply for admission in fall and spring only (not summer).
For additional information about the admissions process visit the SEAS Admissions Frequently Asked Questions page.
Students entering the program with a relevant master’s degree spend a minimum of three years in full-time residency for PhD studies. During that time they take a minimum of 36 credits in coursework, including at least 18 credits in dissertation research. Students entering the program without a relevant master’s degree are required to take up 24 credits in additional of coursework. Students entering with only a bachelor’s degree are required to take 24 credits in additional coursework.
Course List
Code
Title
Credits
Required courses
Data Analysis for Engineers and Scientists
Research Formulation in Engineering Management and Systems Engineering
Research Methods for Engineering Management and Systems Engineering
Electives
At least 9 credits in courses selected in consultation with the academic advisor.
Research
Dissertation Research (taken for a total of 18 credits)
Additional requirements
To advance to the research phase, students must achieve a minimum GPA of 3.4 with no grade below B- at the completion of their coursework.
Coursework must be finished within three years (five years for direct admit PhD students) of the start of the PhD program.
Within three years of the start of the program (five years for direct admits), Students must attempt the doctoral qualifying examination and will be given a maximum of two attempts to pass the exam.
Within five years of the start of the program (seven years for direct admits), students must complete their research proposal and successfully defend it to a committee of three members, at least two of which which must be from the EMSE Department. Students have a maximum of two attempts to successfully pass their research proposal defense.
Within seven years of the start of their PhD program (nine years for direct admits), students must complete their research dissertation and successfully defend it to a committee of five members, at least three of which must be from the EMSE Department and one must be from outside the EMSE Department. Students have a maximum of two attempts to successfully pass their dissertation defense.
Preliminary/Qualifying Exams
The Qualifying Examination is the principal means of determining whether a student qualifies as a candidate for the doctoral degree and progress to the second stage of the program. Its purpose is to ascertain that the student's background and intellectual development are adequate to support doctoral research in the central field. The DQE will be offered in January (both parts) and September (only data analysis). Before taking the examination, students must have completed the core courses and 27 credits (nine courses) of their required coursework and have the DegreeMap finalized. Students must also submit a Doctoral Qualifying Exam Checklist to the doctoral coordinator.
The Qualifying Examination consists of two parts: a two-part written examination and a focus area exam.
Written Exam (Part I)
This exam consists of a two-hour, in-class exam covering EMSE 6765 and an eight-hour, take-home exam covering EMSE 8000 and EMSE 8001 . Both exams are offered during the last week in January. The EMSE 6765 -based exam is also offered during the last week in January. Students should apply to take this exam before the end of the preceding semester.
Focus Area Exam (Part II)
The Focus Area Exam is both a written and oral exam. Students must take this exam by the end of the semester following the successful completion of DQE part I (i.e., student will nominally complete Part I in January, and must take Part II in the third week of May). Students should register for EMSE 8999 for the semester in which they are taking the exam.
Students have three options for the basis for their oral defense:
A conference or journal paper, on which they are the lead author. If it is a conference paper, the full paper must have been peer-reviewed.
A seminal journal paper in their focus area. Their advisor and examining committee must approve the paper.
A 10-page literature review on a topic in their focus area. They have two weeks to complete the review.
In all cases, students are required to defend the work in front of a committee. The committee must consist of three faculty members, at least two of which are full-time in EMSE. Oral exams are approximately one hour long.
At the discretion of the committee, a student who fails any part of the qualifying examination may be given a second opportunity to attempt qualification for candidacy. Usually, only the failed portion of the examination must be retaken. Students who fail to qualify for candidacy in a doctoral program of the School are considered to have failed on a school-wide basis and will not be admitted to further doctoral study within the School.
After successful completion of the DQE, the candidate's advisor will present the academic record of the candidate and request the formation of a research committee. The Department votes on (provisional) admission to candidacy and the research committee. The research committee must be formed before the proposal defense (described below) and must consist of the student’s advisor and two other faculty members, at least one of which must be full-time. Once the student is admitted to candidacy for the degree, he/she begins specialized study and research under the supervision of their research committee. At this point the research committee remains fixed unless a change is formally requested and approved by the department chair and advisor.
Publication Requirements
Students are given 18 months from completion of DQE Part II to be accepted into a pre-approved conference for presentation on a topic relevant to their research. This presentation must be co-authored by their adviser. Failure to do so will result in termination of their candidacy in the doctoral program.
Dissertation
Proposal defense: After acceptance to a conference, students are required to present a written dissertation proposal to their research committee and to successfully defend the proposal in an oral defense. This proposal should consist of, at a minimum, an introductory chapter, a review of the literature chapter, a methodology chapter, and a chapter on potential results. The Request for Proposal Defense form must be filed and approved two weeks prior to the defense. The Form 5 Doctor of Science Dissertation form is present at the proposal defense and, after a successful defense, is signed by all committee members. After the defense, the advisor in collaboration with the student submits, in writing, a copy (signed by student and adviser) of all suggestions, clarifications, and corrections to the proposal along with the signed Form 5 to the doctoral coordinator within four weeks of the defense. Failure to do so will void the defense. The doctoral coordinator forwards the Form 5 to the department chair for signature. Students are given a maximum of two attempts and a maximum time limit of two years past the semester in which they pass their DQEs to successfully defend their proposal. Failure to do so will result in termination of their candidacy in the doctoral program.
Final examination/doctoral defense: Once the dissertation has been completed and accepted by the faculty advisor and research committee, students may file a Request for Final Examination form with the Doctoral Coordinator. This form must be filed and approved by the department chair at least two weeks prior to the final examination date. Approval is granted only when all required materials have been presented to the doctoral coordinator. The required materials include a completely filed Request for Final Examination Form, a copy of the journal article with reviews, resumes of outside evaluators and electronic and written copies of the dissertation. The final examination is oral and open to the public. The candidate must demonstrate mastery of the special field of study and of the materials and techniques used in the research. The committee of examiners may include qualified experts brought to the University especially to participate in the examination. The director of research usually serves as advocate for the candidate. Students should consult department regulations concerning the formation of the committee. The committee votes on the quality and originality of the candidate’s contribution to knowledge as well as their mastery of the scholarship and research techniques of the field. Upon a majority vote for pass, the committee recommends the candidate for the degree of Doctor of Philosophy. The vote to pass may be provisional based on committee recommendations for changes to the dissertation in terms of additional analysis, writing or clarifications.
Seminar and Colloquia Requirements
As described in the Publication Requirements section above, students are required to present in a pre-approved conference on a topic relevant to their research. In addition, students are also encouraged to present and participate in departmental research seminars.
Graduation and Scholarship Requirements
Students are responsible for knowing the university’s minimum GPA requirement for graduation and scholarships. Please visit the Graduation and Scholarship Requirements section on the GW Bulletin to read the requirements.
Students should contact the department for additional information and requirements.
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Degrees and Programs
Doctor of Philosophy (PhD) in Engineering Management
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Earn a doctorate degree in engineering management and meet the long-standing needs of the field by engaging in cutting-edge engineering research, leadership, and publishing.
Many industries are reporting significant workforce shortages of trained technical management personnel with a doctoral degree and experience in leading engineering organizations. Moreover, the shortage is growing each year with increasing demand in new engineering-related corporations and the annual departure of large cohorts of existing professionals who are reaching retirement age. This program is in response to that need. The PhD in Engineering Management degree is for new master's degree graduates and non-traditional students (i.e., experienced personnel) who desire to advance in their careers by gaining leadership skills in the industries related directly and indirectly to engineering and technology.
The PhD in Engineering Management is for current professionals or those with experience in the field of engineering design, manufacturing and service. Students will pursue a deep proficiency in this area using an interdisciplinary methodology, cutting-edge courses, and dynamic faculty. Graduates will contribute significantly to the Engineering Management field through the creation of new knowledge and ideas.
As your PhD progresses, you will move through a series of progression points and review stages by your academic supervisor. This ensures that you are engaged in a process of research that will lead to the production of a high-quality Thesis and/or publications and that you are on track to complete this in the time available. Following submission of your PhD Thesis or accepted three academic journal articles, you will have an oral presentation assessed by an external expert in your field.
Why Capitol?
Learn around your busy schedule
Program is 100% online, with no on-campus classes or residencies required, allowing you the flexibility needed to balance your studies and career.
Proven academic excellence
Study at a university that specializes in industry-focused education in technology fields, with a faculty that includes many industrial and academic experts.
Expert guidance in doctoral research
Capitol’s doctoral programs are supervised by faculty with extensive experience in chairing doctoral dissertations and mentoring students as they launch their academic careers. You’ll receive the guidance you need to successfully complete your doctoral research project and build credentials in the field.
Key Faculty
Vice President
Dissertation Chair/Adjunct Professor
Career Opportunities
Market demand for engineering management expertise
Get the necessary credentials to take on a leadership role; become a researcher, speaker, author, or trusted expert; or enter higher education as a teaching professional.
A degree that is relevant to any and every organization
Graduates will contribute significantly to the engineering management field through the creation of new knowledge and ideas.
This program may be completed with a minimum of 60 credit hours, but may require additional credit hours, depending on the time required to complete the dissertation/publication research. Students who are not prepared to defend after completion of the 60 credits will be required to enroll in RSC-899, a one-credit, eight-week continuation course. Students are required to be continuously enrolled/registered in the RSC-899 course until they successfully complete their dissertation defense/exegesis.
The student will produce, present, and defend a doctoral dissertation after receiving the required approvals from the student’s Committee and the PhD Review Boards.
Prior Achieved Credits May Be Accepted
Doctor of Philosophy in Engineering Management - 60 credits
ENGINEERING MANAGEMENT DOCTORAL CORE: 30 CREDITS
6
6
6
6
6
ENGINEERING MANAGEMENT DOCTORAL RESEARCH AND WRITING: 30 CREDITS
6
6
6
6
6
No more than two course can be taken at the same time without the approval of the VPAA
Educational Objectives:
Students will integrate and synthesize alternate, divergent, or contradictory perspectives or ideas fully within the field of Engineering Management.
Students will present scholarly work on Engineering Management via appropriate communication channels.
Students will demonstrate advanced knowledge and competencies in Engineering Management.
Students will analyze existing theories to draw data-supported conclusions in Engineering Management.
Students will execute a plan to complete significant pieces of scholarly research in Engineering Management.
Students will evaluate the legal, social, economic, environmental, and ethical impact of actions within Engineering Management and demonstrate advanced knowledge and competency to integrate the results in the leadership decision-making process.
Learning Outcomes:
Upon graduation:
Graduates will evaluate the legal, social, economic, environmental, and ethical impact of actions within Engineering Management and demonstrate advanced knowledge and competency to integrate the results in the leadership decision-making process.
Graduates will demonstrate the highest mastery of traditional and technological techniques of communicating ideas effectively and persuasively.
Graduates will evaluate complex problems, synthesize divergent/alternative/contradictory perspectives and ideas fully, and develop advanced solutions to Engineering Management challenges.
Graduates will contribute to the body of knowledge in the study of Engineering Management.
Tuition & Fees
Tuition rates are subject to change.
The following rates are in effect for the 2024-2025 academic year, beginning in Fall 2024 and continuing through Summer 2025:
The application fee is $100
The per-credit charge for doctorate courses is $950. This is the same for in-state and out-of-state students.
Retired military receive a $50 per credit hour tuition discount
Active duty military receive a $100 per credit hour tuition discount for doctorate level coursework.
Information technology fee $40 per credit hour.
High School and Community College full-time faculty and full-time staff receive a 20% discount on tuition for doctoral programs.
Find additional information for 2024-2025 doctorate tuition and fees.
Need more info, or ready to apply?
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Program overview.
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Rigorous, discipline-based research is the hallmark of the MIT Sloan PhD Program. The program is committed to educating scholars who will lead in their fields of research—those with outstanding intellectual skills who will carry forward productive research on the complex organizational, financial, and technological issues that characterize an increasingly competitive and challenging business world.
Start here.
Learn more about the program, how to apply, and find answers to common questions.
Admissions Events
Check out our event schedule, and learn when you can chat with us in person or online.
Start Your Application
Visit this section to find important admissions deadlines, along with a link to our application.
Click here for answers to many of the most frequently asked questions.
PhD studies at MIT Sloan are intense and individual in nature, demanding a great deal of time, initiative, and discipline from every candidate. But the rewards of such rigor are tremendous: MIT Sloan PhD graduates go on to teach and conduct research at the world's most prestigious universities.
PhD Program curriculum at MIT Sloan is organized under the following three academic areas: Behavior & Policy Sciences; Economics, Finance & Accounting; and Management Science. Our nine research groups correspond with one of the academic areas, as noted below.
Those interested in a PhD in Operations Research should visit the Operations Research Center .
PhD Program Structure
Additional information including coursework and thesis requirements.
MIT Sloan Predoctoral Opportunities
MIT Sloan is eager to provide a diverse group of talented students with early-career exposure to research techniques as well as support in considering research career paths.
Rising Scholars Conference
The fourth annual Rising Scholars Conference on October 25 and 26 gathers diverse PhD students from across the country to present their research.
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The goal of the MIT Sloan PhD Program's admissions process is to select a small number of people who are most likely to successfully complete our rigorous and demanding program and then thrive in academic research careers. The admission selection process is highly competitive; we aim for a class size of nineteen students, admitted from a pool of hundreds of applicants.
What We Seek
Outstanding intellectual ability
Excellent academic records
Previous work in disciplines related to the intended area of concentration
Strong commitment to a career in research
MIT Sloan PhD Program Admissions Requirements Common Questions
Admissions for 2024 is closed. The next opportunity to apply will be for 2025 admission. The 2025 application will open in September 2024.
More information on program requirements and application components
Students in good academic standing in our program receive a funding package that includes tuition, medical insurance, and a fellowship stipend and/or TA/RA salary. We also provide a new laptop computer and a conference travel/research budget.
Funding Information
Throughout the year, we organize events that give you a chance to learn more about the program and determine if a PhD in Management is right for you.
PhD Program Events
Docnet recruiting forum at university of minnesota.
We will be joining the DocNet consortium for an overview of business academia and a recruitment fair at University of Minnesota, Carlson School of Management.
September 25 PhD Program Overview
During this webinar, you will hear from the PhD Program team and have the chance to ask questions about the application and admissions process.
DocNet Recruiting Forum - David Eccles School of Business
MIT Sloan PhD Program will be joining the DocNet consortium for an overview of business academia and a recruitment fair at Utah, David Eccles School of Business.
October PhD Program Overview
Complete PhD Admissions Event Calendar
Unlike formulaic approaches to training scholars, the PhD Program at MIT Sloan allows students to choose their own adventure and develop a unique scholarly identity. This can be daunting, but students are given a wide range of support along the way - most notably having access to world class faculty and coursework both at MIT and in the broader academic community around Boston.
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Profiles of our current students
MIT Sloan produces top-notch PhDs in management. Immersed in MIT Sloan's distinctive culture, upcoming graduates are poised to innovate in management research and education.
Academic Job Market
Doctoral candidates on the current academic market
Academic Placements
Graduates of the MIT Sloan PhD Program are researching and teaching at top schools around the world.
view recent placements
MIT Sloan Experience
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The PhD Program is integral to the research of MIT Sloan's world-class faculty. With a reputation as risk-takers who are unafraid to embrace the unconventional, they are engaged in exciting disciplinary and interdisciplinary research that often includes PhD students as key team members.
Research centers across MIT Sloan and MIT provide a rich setting for collaboration and exploration. In addition to exposure to the faculty, PhD students also learn from one another in a creative, supportive research community.
Throughout MIT Sloan's history, our professors have devised theories and fields of study that have had a profound impact on management theory and practice.
From Douglas McGregor's Theory X/Theory Y distinction to Nobel-recognized breakthroughs in finance by Franco Modigliani and in option pricing by Robert Merton and Myron Scholes, MIT Sloan's faculty have been unmatched innovators.
This legacy of innovative thinking and dedication to research impacts every faculty member and filters down to the students who work beside them.
Faculty Links
Accounting Faculty
Economic Sociology Faculty
Finance Faculty
Information Technology Faculty
Institute for Work and Employment Research (IWER) Faculty
Marketing Faculty
Organization Studies Faculty
System Dynamics Faculty
Technological Innovation, Entrepreneurship, and Strategic Management (TIES) Faculty
“MIT Sloan PhD training is a transformative experience. The heart of the process is the student’s transition from being a consumer of knowledge to being a producer of knowledge. This involves learning to ask precise, tractable questions and addressing them with creativity and rigor. Hard work is required, but the reward is the incomparable exhilaration one feels from having solved a puzzle that had bedeviled the sharpest minds in the world!” -Ezra Zuckerman Sivan Alvin J. Siteman (1948) Professor of Entrepreneurship
Sample Dissertation Abstracts - These sample Dissertation Abstracts provide examples of the work that our students have chosen to study while in the MIT Sloan PhD Program.
We believe that our doctoral program is the heart of MIT Sloan's research community and that it develops some of the best management researchers in the world. At our annual Doctoral Research Forum, we celebrate the great research that our doctoral students do, and the research community that supports that development process.
The videos of their presentations below showcase the work of our students and will give you insight into the topics they choose to research in the program.
Attention To Retention: The Informativeness of Insiders’ Decision to Retain Shares
2024 PhD Doctoral Research Forum Winner - Gabriel Voelcker
Watch more MIT Sloan PhD Program Doctoral Forum Videos
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Department of Industrial Engineering
Bachelor of Science in Industrial Engineering
Master of Science in Engineering Systems Management
PhD in Engineering - Engineering Systems Management
Industry 4.0 Laboratory
Manufacturing Laboratory
Materials Science Laboratory
Modelling and Simulation Laboratory
Supply Chain Laboratory
College of Engineering Department of Industrial Engineering
The PhD in Engineering - Engineering Systems Management (PhD-ESM) will help produce the next generation of leading academics and industry experts in the different fields of ESM. The program addresses fundamental research problems of national and global importance for the 21st century, including but not limited to Supply Chain Management, Sustainable Construction Project Management and Smart Cities Management.
PhD-ESM students work with AUS engineering faculty at the forefront of their fields, engaged in a wide range of disciplines, and hailing from some of the world’s best universities. The faculty’s commitment to research, in cooperation with other academic institutions and major industrial and government organizations, creates an ideal environment for candidates to acquire cutting-edge knowledge and cultivate their own research interests.
The program admits both part-time and full-time students. Full-time students may be considered for a competitive full graduate assistantship for the duration of the program.
The program is taught in English and is composed of three phases:
Core courses, which include methodological courses related to key aspects of theoretical and applied research. Two courses are common to all concentrations.
Six elective courses designed to suit the research interests of candidates with the aim of strengthening their knowledge in their area of research.
Development of a doctoral dissertation, allowing students to develop cutting-edge research competencies and generate original scientific work that can be published in reputed international journals.
FInd our program brochure here .
Admission to the PhD-ESM program is competitive and only applicants who have a strong alignment between their own research interests and an area of specialization of one of the faculty will be selected. Applicants are strongly encouraged to review the available doctoral advisors on this website and identify those who they believe are most closely aligned with their desired areas of research. The number of students admitted is dependent on the faculty's projected ability to advise additional doctoral students and availability of financial support for those seeking assistantships. The selection is based on the applicants' academic history, maturity in the development of research capabilities, and proficiency in specialized skills demanded by the research area. In particular, candidates must have sufficient prior background to meet the prerequisites of their area of research.
For more information on admission requirements and the application process, please click here.
For more information about graduate assistantships, please click here.
The admission requirements for the PhD-ESM program are as follows.
Full Admission
For full admission to the PhD-ESM degree program at AUS, an applicant must:
hold a master’s degree or a bachelor’s degree in engineering from an independently accredited university recognized by the UAE Ministry of Education’s Higher Education Affairs Division and by AUS. Applicants with non-engineering degrees may be considered on a case-by-case basis
have attained a minimum cumulative grade point average (CGPA) of 3.0 (on a scale of 4.0) or its equivalent in the master’s degree or a CGPA of 3.5 (on a scale of 4.0) or its equivalent in the bachelor’s degree
submit three letters of recommendation, a statement of purpose and a current curriculum vitae/resume
Applicants with a degree obtained outside the UAE must submit an equivalency of their degree from the UAE Ministry of Education, Higher Education Affairs Division.
Bridging Courses
Applicants with a relevant bachelor’s degree are required to complete six credit hours of the following bridging courses:
ESM 520 Management for Engineers
ESM 570 Project Management
ESM 575 Advanced Engineering Economy
any of the 500-level and 600-level courses offered by the master of science (MS) programs at AUS (MS in biomedical, chemical, civil, computer, electrical, mechanical, and mechatronics engineering; construction management; or engineering systems management), subject to the approval of the Program Coordinator.
The bridging courses do not generate credit hours towards the completion of the degree program and are not counted in the grade point average of the student.
The mission of the PhD-ESM program is to educate future researchers, practitioners, innovators and academics. The program seeks to give students cutting-edge knowledge, skills and abilities in engineering systems management that can be utilized to meet societal needs and shape contemporary market trends in the UAE, the region and globally.
Graduates of the PhD-ESM program will be prepared to:
pursue successful academic, industry and/or government careers
conduct research independently across multidisciplinary areas
apply technical knowledge for long-term sustainable and economic development
act professionally and ethically in the practice of engineering systems management
To qualify for graduation with a PhD-ESM degree, students must successfully complete a minimum of 54 credits with a minimum cumulative GPA of 3.00, as follows:
a minimum of 24 credits (8 courses) of required and elective coursework:
a minimum of 6 credits (2 courses) of required courses
a minimum of 18 credits (6 courses) of elective courses
a zero-credit seminar course
a minimum of 30 credits of research work (dissertation)
The expected minimum duration for completion of the PhD ESM degree program is four years.
Required Courses
Students must successfully complete the following required courses:
ESM 701 Research Methods
ESM 702 Multivariate Data Analysis
ESM 795 Doctoral Seminar
ESM 799 Dissertation (for a minimum of 30 credits)
Elective Courses (minimum of 18 credits)
Students must successfully complete a minimum of six elective courses (for a minimum of 18 credits) selected from the following research areas. The electives courses must be approved by the program coordinator.
Supply Chain Management Research Area
ESM 710 Advanced Decision Making Analysis
ESM 711 Deterministic Optimization Techniques
ESM 712 Advanced Supply Chain Management
ESM 713 Supply Chain Modeling
ESM 714 Modeling and Analysis of Logistics Systems)
ESM 794 Special Topics in ESM–Supply Chain Management
Sustainable Construction Project Management Research Area
ESM 720 Sustainable Development for Engineers
ESM 721 Sustainable Development and Global Competitiveness
ESM 722 Sustainable Analytics and Resource Management
ESM 723 The Living Building
ESM 724 Sustainable Ecosystems
ESM 725 Programs and Portfolio Management
ESM 794 Special Topics in ESM–Sustainable Construction Project Management
Smart Cities Research Area
ESM 730 Tools for Big Data
ESM 731 Smart Cities Infrastructure and Services
ESM 732 Networking Architectures for Smart Cities
ESM 733 Electronic, Social and Sensor Network Applications for Smart Cities
ESM 734 Trust and Security for Smart Cities
ESM 794 Special Topics in ESM–Smart Cities
Engineering Management Research Area
ESM 740 Advanced Quality Engineering
ESM 741 Organizational Performance Management
ESM 742 Strategic Human Resources Management
ESM 743 Strategic Management
ESM 794 Special Topics in ESM–Engineering Management
Course Descriptions
ESM 701 Research Methods (3-0-3)
Equips PhD students with a good understanding of qualitative and quantitative research methods at both the conceptual and applied levels to prepare them to undertake substantiated and rigorous scholarly research work, particularly dissertation and research papers. Familiarizes students with basic tenets of research, knowledge, methods and success in research. Includes problem formulation, literature review, hypotheses formulation, proposal preparation and empirical testing techniques. Enables students to formulate empirical research using experimental or descriptive research approaches. Utilizes commonly used statistical models such as nonparametric association and correlation measures and analysis of variance to analyze and interpret actual data.
ESM 702 Multivariate Data Analysis (3-0-3)
Discusses techniques for analyzing multivariate experimental and observational data. Provides students with a working knowledge of several multivariate data analysis techniques to conduct empirical research. Covers exploratory multivariate data analysis, multivariate analysis of variance, multivariate regression analysis, principal components analysis, factor analysis, clustering analysis and structural equation modeling. Utilizes commonly used statistical software for data analysis, such as Minitab, STATA, and the R free open-source package.
ESM 795 D octoral Seminar (1-0-0)
Provides a unique discussion forum for all doctoral students to interact with a diverse group of faculty from different CEN departments and AUS colleges, as well as with outside presenters. Encompasses a wide variety of pertinent topics from ESM research areas/themes.
ESM 799 Dissertation (24 credits)
Includes the preparation of a dissertation proposal, presentation and defense of the research proposal, write-up of the dissertation, and presentation and defense of the dissertation.
Elective Courses
ESM 710 Advanced Decision Making Analysis (3-0-3)
Provides the necessary theoretical knowledge towards analyzing and making decisions. Covers multiple objectives, influence diagrams, decision trees, risk assessment and quantification, single and multi-attribute utility, techniques for multi-criteria decision making (MCDM) and game theory.
Covers deterministic operations research techniques and their underlying theory. Includes advanced topics in large-scale optimization, integer programming, non-linear programming, and meta-heuristic optimization techniques.
ESM 712 Advanced Supply Chain Management (3-0-3)
Covers leading-edge topics in global supply chain management including the latest supply chain strategies, strategic sourcing, technological advances in supply chain management, supply chain risk management approaches, sustainable supply chain, ethical issues in supply chain management, and humanitarian supply chain.
ESM 713 Supply Chain Modeling (3-0-3)
Explores how optimization techniques can support decisions in the design, planning and operation of a supply chain. Covers deterministic and stochastic models in supply chain management. Includes advanced topics in supply chain design, supply chain coordination, closed loop supply chains, supply chain risk and sustainability.
ESM 714 Modeling and Analysis of Logistics Systems (3-0-3)
Discusses the modeling and analysis of logistics and physical distribution systems. Includes location and design of facilities, tactical and operational decisions related to warehousing, management of logistics systems and management of ports operations and container terminals.
ESM 720 Sustainable Development for Engineers (3-0-3)
Covers both the rudimentary and radical concepts of sustainable development and economic growth in a social and environmental context. Discusses, analyzes and evaluates patterns of development. Investigates the impacts of engineering projects in local and international communities via well-structured research questions utilizing theoretical and empirical research techniques. Evaluates contemporary trends in sustainable technology in relation to the different project settings.
ESM 721 Sustainable Development and Global Competitiveness (3-0-3)
Introduces students with technical backgrounds to the macro realm of sustainable development, international economics, and urban planning and regeneration. Highlights the role of multinational corporations and mega projects in global competitiveness. Presents the subtle overlap between design patterns, development, and regulations in sustainable development projects. Deliberates the latest UN sustainable development goals and their expected aftermath in an international setting. Uses case studies and research workgroups to demonstrate the comprehensive link between economic growth and social progress.
ESM 722 Sustainable Analytics and Resource Management (3-0-3)
Focuses on sustainability data analyses and covers current and innovative methodologies in optimal energy and water resource management in construction projects. Explores data driven resource management techniques during design, construction and operation. Utilizes regression analysis, economic impact analysis, and feasibility studies in answering research questions through a series of case studies and projects
ESM 723 The Living Building (3-0-3)
Focuses on the Living Building Challenge performance areas. Introduces the “beyond regenerative” concept of an organic, living building envelope for commercial and residential construction. Explains the core construction practices in relation to net zero energy and net zero water techniques. Presents traditional and renewable grid balance techniques through a series of projects and seminars.
ESM 724 Sustainable Ecosystems (3-0-3)
Covers integrated ecological planning and sustainable land management in coastal ecosystems. Discusses fundamental concepts and practical quantitative problem-solving techniques dealing with contamination, environmental toxicology and ecosystem turbulence due to manmade construction projects.
ESM 725 Programs and Portfolio Management (3-0-3)
Presents a view of managing projects from an organizational perspective. Discusses strategic alignment, project and program selection techniques, the role of effectively managing organizational assets through an enterprise project management office as a governance entity, portfolio management and program management. Covers schedule integration, resource management and portfolio risk management. Covers tools such as Analytic Hierarchy Process, Earned Value Management and Monte Carlo Simulation. Uses specific examples and case studies to explore and apply practices to create and manage portfolios of programs and projects to efficiently leverage organizational assets.
ESM 730 Tools for Big Data (3-0-3)
Covers software tools for manipulating, storing and analyzing Big Data in various formats such as sensor and web logs, videos, speech recordings, images, emails, social media messages and more. Covers use of R system for data manipulation and for statistical and machine learning. Explains the use of MapReduce/Hadoop scalable data processing in conjunction with Hive/Pig. Introduces NoSQL databases such as MongoDB and CouchDB. Includes techniques for processing streaming real-time data. Discusses tools for visualizing large data and integration strategies for various Big Data tools.
ESM 731 Smart Cities Infrastructure and Services (3-0-3)
Identifies and investigates the major infrastructure pillars of smart cities. Discusses smart cities’ physical layer and enabling technologies, developing smart cities’ conceptual model and multi-criteria assessment transformation based on SWOT. Studies smart cities’ resources and services such as smart energy, smart buildings, smart transportation, smart water, smart waste, smart physical safety and security, smart health care and smart education. Explores the social impact and ethical issues of smart cities.
ESM 732 Networking Architectures for Smart Cities (3-0-3)
Introduces communication networks for smart cities. Discusses architectures, models, protocols and the emerging new Internet of Things (IoT) paradigm. Addresses the principles of flow and congestion control, addressing, signaling switching and routing, multiple access approaches, convergence sublayer solutions and standards, physical layer technologies, and network security.
ESM 733 Electronic, Social and Sensor Network Applications for Smart Cities (3-0-3)
Covers the foundations of electronic, social and sensor network applications including infrastructure, services and application layers with special emphasis on sensors and mobile devices. Explores harvesting and processing techniques for large-scale near real-time data from smart cities. Discusses the role of Geographical Information Systems (GIS) and associated spatial analysis. Covers the design of networks for capturing resource consumption and mobility patterns. Discusses use of statistical and big data techniques to improve city services based on harvested data, and business models for sustainable deployment of smart city applications. Covers the ethics of data-driven urbanism. Includes case studies in selected areas of learning, recreation, energy, production and health.
ESM 734 Trust and Security for Smart Cities (3-0-3)
Covers advanced security and trust concepts and implementation in wired and wireless computer networks and computer systems especially in the context of smart cities. Includes malware defenses, impact of channel fragility, node mobility, cooperative functionality, and resource constraints on security and trust at the different layers of the Internet protocol stack. Discusses special topics in privacy for personal data such as mobility patterns, resource consumption (food, water, energy), and individualized health profiles.
ESM 740 Advanced Quality Engineering (3-0-3)
Covers emerging issues with quality engineering and management such as innovation, happiness and process re-engineering with a focus on both quantitative and qualitative analytical skills essential to conducting research. Examines organizational development and deployment of service management systems utilized in achieving service quality. Includes analysis of business case, enablers and detractors of Six Sigma and quality awards deployment in both manufacturing and service sectors through critical articles reviews.
Explores traditional and contemporary performance management (PM) frameworks and models at the organization level, unit level and the individual level. Focuses on designing PM systems that integrate strategy, execution, methodologies and risk. Details the design of the added-value PM systems including goals and objectives, operational process, support process, evaluation and control, and organization behavior. Covers PM measurements system’s design and analysis using the various key performance indicators, key risk indicators, and key control indicators. Includes PM implementation pitfalls and critical success factors
ESM 742 Strategic Human Resources Management (3-0-3)
Explores how human resources management (HRM) policies and procedures can add value to an organization. Covers state-of-the-art human resource management approaches to become a strategic partner in improving resource utilization and help companies achieve their goals. Includes the processes of developing and implementing human resource strategies to promote a healthy social and psychological environment for the workforce. Discusses key theories and research approaches within the field of human resource management in the following areas: strategic HRM (the link between HRM and outcomes at the firm and individual level), the HR function (the roles and capabilities of the HR department and of individual HR professionals), and international HRM (HRM in multinational corporations, comparative HRM and global mobility). Examines the particularities of HRM in the public sector and in the GCC countries.
ESM 743 Strategic Management (3-0-3)
Covers analysis of internal and external environments of an organization. Explores the development of appropriate strategies, objectives and key performance indicators (KPIs).
Information and Communication Technology in Construction, Construction Project Delivery Systems, Construction Organizations
Inventory control, production planning and scheduling, supply chain management, maintenance management and total quality management.
Supply chain Management, Maintenance Management, Risk Management in Product Design
Healthcare Management, Supply Chain Management, Scheduling, Project Management, Facilities Planning and Design, and Operations Research
Applied operations research & optimization; Simulation; Production systems design, modeling, and analysis; Large-scale network routing & scheduling; Supply chain Modeling
Intelligent Transportation Systems (ITS) applications, dynamic traffic assignment (DTA), traffic signal design and operations, traffic flow theory, and operations research applications in transportation networks
Operation research, facility planning healthcare and Supply chain Management
Supply Chain Management, Production and Inventory Control, Applied Operations Research, Scheduling in Healthcare.
Sustainable Analytics, Green Engineering Practices and Project Benchmarking
Construction & Project Management, Project Time & Cost Control, Construction Contracting
Advanced Learning Technologies, Internet of Things, Software Design
Embedded Systems, Smart Grid, Internet of Things.
Communications Networks
Sustainable community planning, land use and environmental planning and urban economic development
Public Health in transport operations, control and modeling of interrupted flow and congested traffic systems.
Water infrastructure management, Water and wastewater treatment, waste residual management within water treatment plants, and water quality management in coastal areas
Open channel hydraulics, compound channel flow mechanism and boundary shear stress distributions, hydraulic structures such us bridges and culverts
Artificial Intelligence; more specifically, Machine Learning, Computer Vision, Deep Learning, Affective computing, Supervised and unsupervised learning and Generative learning; Image Processing.
Environmental chemistry and toxicology assessment of persistent organic pollutants in the environment
Construction management and IT, sustainability, BIM, PPP/PFI, education, disaster and resilience management.
Generalizing statistical distributions arising from the hazard function, statistical inference of probability models, characterization of distributions, and bivariate and multivariate weighted distributions.
Management Information Systems, Decision Analysis, Multi Criteria Decision Making, Knowledge Management, Database Management Systems
Wireless communications and networking, with emphasis on multimedia communications, adaptive video streaming over wireless networks, optimal resource allocation and performance evaluation, and QoS routing in WSNs
Work, organizational and cultural values, expatriate management, talent management and Emiratization
Enterprise risk management, Decision-making under risk and uncertainty, Disaster risk management, Supply chain risk management, Project risk management
Statistical Process Optimization, Quality Engineering, Medical and Health Informatics, Healthcare Systems Improvement, Smart Healthcare Systems
Applications of microprocessors for achieving improved protection and monitoring of power systems. Design, implementation and testing of protective relays, modeling of power systems, applications of power electronics and signal processing in power systems. Smart energy management systems
Smart Grid, Renewable DG, Distribution System Planning, Microgrids, Electric Transportation, Storage Systems, Demand Side Management, and Bulk Power System Reliability
For more information about the program, please contact:
Dr. Abdulrahim Shamayleh Associate Professor of Industrial Engineering and Department Head and Coordinator of ESM MS Program Email [email protected]
Tel 06 515 4907 Office Location: Engineering Science Building / ESB-2091
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Faculty Website: Faculty of Engineering and the Built Environment Department: Postgraduate School of Engineering Management Programme Level: Postgraduate Programme Name: PhD in Engineering Management Programme Code: P6EM4Q
Medium of Facilitation: part-time, Full-Time NQF Level: 10 NQF Credits: 360 SAQA: 96969
Application Start Date : 1 April 2024 Application End Date: 14 March 2025
Campus: Auckland Park Kingsway
Contacts: UJ Call Centre 011 559-4555 Email: [email protected]
Duration of Study: 2 Years Full-Time and 5 Years Part-Time
Programme Fees
The purpose of the qualification is to develop an engineer with advanced abilities in applying fundamental engineering management sciences and/design and synthesis, and related principles independently to specific management systems problems of society at large. One of the main objectives in this process is to develop an advanced capability to conduct fundamental independent systems engineering and management research of an original nature. It also promotes a lifelong learning approach and an aptitude for training other students in similar fields.
Admission Requirements
An approved master’s degree in Engineering or a similar approved degree at master’s level.
Selection Process
Final admission to the programme will only be granted upon successful presentation of a research seminar six months after enrolment. Research topics must also be accepted and approved by the supervisors in the Faculty and finally by the Senate or Executive Committee of the Senate of the University.
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We have 305 engineering management PhD Projects, Programmes & Scholarships
In-process monitoring of microstructure evolution during ingot-to-billet conversion of the aerospace grade ti-6al-4v (ti64) material in support of the ongoing development of digital twin infrastructure for high-value manufacturing, phd research project.
PhD Research Projects are advertised opportunities to examine a pre-defined topic or answer a stated research question. Some projects may also provide scope for you to propose your own ideas and approaches.
Funded PhD Project (UK Students Only)
This research project has funding attached. It is only available to UK citizens or those who have been resident in the UK for a period of 3 years or more. Some projects, which are funded by charities or by the universities themselves may have more stringent restrictions.
Dynamic digital scheduling for optimal outfitting of naval ships
Actuator phm exploiting multi- physics digital twin and machine learning phd, self-funded phd students only.
This project does not have funding attached. You will need to have your own means of paying fees and living costs and / or seek separate funding from student finance, charities or trusts.
Scalable digital twin for improved safety and availability of complex engineering assets PhD
Phd in rami bahsoon's autonomous, intelligent and distributed software engineering lab, competition funded phd project (students worldwide).
This project is in competition for funding with other projects. Usually the project which receives the best applicant will be successful. Unsuccessful projects may still go ahead as self-funded opportunities. Applications for the project are welcome from all suitably qualified candidates, but potential funding may be restricted to a limited set of nationalities. You should check the project and department details for more information.
A four-year funded PhD in the field of User-Centred Systems (Internet of Things, edge devices, security & privacy)
Funded phd project (students worldwide).
This project has funding attached, subject to eligibility criteria. Applications for the project are welcome from all suitably qualified candidates, but its funding may be restricted to a limited set of nationalities. You should check the project and department details for more information.
BIM and Building Automation System assisted Indoor Environmental Quality Monitoring for Engineering Laboratory using IoT devices
Hybrid technologies for battery thermal management using smart materials, developing a wireless sensor for measuring water storage in glacier moulins, engaging, informative and innovative researching in a future-oriented environment in unnc, funded phd programme (students worldwide).
Some or all of the PhD opportunities in this programme have funding attached. Applications for this programme are welcome from suitably qualified candidates worldwide. Funding may only be available to a limited set of nationalities and you should read the full programme details for further information.
China PhD Programme
A Chinese PhD usually takes 3-4 years and often involves following a formal teaching plan (set by your supervisor) as well as carrying out your own original research. Your PhD thesis will be publicly examined in front of a panel of expert. Some international programmes are offered in English, but others will be taught in Mandarin Chinese.
PhD in Mechanical Engineering - A Digital Twin-based approach for Nuclear Reactor Design and Prognosis
Comprehensive decision support system for effective disaster management, postgraduate research at the school of science, engineering and environment, university of salford, awaiting funding decision/possible external funding.
This programme is waiting to confirm funding from a university or external source. This may depend on attracting suitable students and applications are welcome. Please see the programme details for more information.
PhD Opportunities
PhD Opportunities highlight some of the specific PhD projects, programmes or other information currently available from a university.
PhD Studentship in Development of a vibration management concept for gas turbine engines
Hybrid modelling for net-zero circular manufacturing: value chain transformation analysis.
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Northeastern University
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http://hdl.handle.net/2047/D20233329
Chemo prevention treatment for women with high risk to develop breast cancer
Design for internet of things
An environmental input-output analysis of Boston's climate action plan
Examining agile management methods and non-agile management methods in global software development projects
Multi-resolution approach to identification of recurring patterns in process signal
Proposing a measure to evaluate the impact of the sharing economy: a critical analysis of short-term residential rentals.
Geological Processes
APPLICATION OF THE METHODOLOGY OF INTERPRETATION OF EXOGENOUS GEOLOGICAL PROCESSES AND ENGINEERING-GEOLOGICAL CONDITIONS FOR MAPPING HAZARDOUS GEOLOGICAL PROCESSES AND ZONING OF ENGINEERING-GEOLOGICAL CONDITIONS OF THE URBAN DISTRICT OF THE MUNICIPAL FORMATION OF THE RESORT CITY OF SOCHI OF THE KRASNODAR KRAI
October 2023
Conference: International Conference “Scientific research of the SCO countries: synergy and integration”
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Innopolis University, Russian Federation
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Anyone used an agency to book the tour? All that I see online is Moscow and Saint Petersburg.
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SO could I arrive with my visas and sit down with a Russian Travel Agent to book my train tickets with stop overs? . I will book my own hotels at the stops and sightseeing trips.?? I am an experienced traveller and NOT a group tourist traveller.
Thank you for your time and all considerations.
Oops, sorry this was not a Russian travel form...
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In 1958, the brand partnered the New York Yacht Club, creator of the legendary America's Cup. Rolex then formed partnerships with several prestigious yacht clubs around the world and became associated with major nautical events - offshore races and coastal regattas. These strong ties culminated in 1992 with the launch of the Yacht-Master.
Rolex Yacht-Master
NATO Strap: A Rolex Yacht-Master NATO strap is a versatile and trendy option for a casual style ; Dial. The Rolex Yacht-Master dial is available in various colors, including white, black, champagne, and mother-of-pearl. Embodying both style and functionality, the Rolex Yacht-Master dial ensures effortless readability in any environment.
Rolex Yacht-Master
The Yacht-Master has been sharing the stage with other popular Rolex models like the Submariner and Sea-Dweller since 1992. But unlike its deep-diving brethren, the Yacht-Master is the premier timepiece for skippers. Thanks to a wide range of available case sizes - from 37 to 42 mm - the Rolex Yacht-Master is a perfect fit for most wrists.
Rolex Yacht-Master 42 watch: 18 ct white gold
Discover the Yacht-Master 42 watch in 18 ct white gold on the Official Rolex Website. Model:m226659-0002. ... Like all Rolex Professional watches, the Yacht-Master 42 offers exceptional legibility in all circumstances, and especially in the dark, thanks to its Chromalight display.
Rolex Yacht-Master
The Yacht-Master 40 and Yacht-Master 42 are equipped with calibre 3235. Entirely developed and manufactured by Rolex, this self-winding mechanical movement is particularly precise and reliable. Carrying a number of patents, our calibre 3235 is fitted with the Parachrom hairspring and the Chronergy escapement, both of which are resistant to ...
A Week On The Wrist The Rolex Yachtmaster 40mm With ...
The Everose Rolex Yachtmaster, in Rolex Everose, with Everose Oysterclasp and Oysterflex bracelet, as shown, $22,000 in 37 mm, and $24,950 in 40 mm. For more info, check out Rolex.com. Rolex. A-week-on-the-wrist. For the first time, Rolex is delivering a watch on a rubber strap - except in classic Rolex fashion it's not a rubber strap at all.
Review: Rolex Yacht-Master 16622
The audience was just right, the time was just right, and all of a sudden you couldn't find a rose gold Yacht-Master for love nor money. Mainly money. What that's done is relegated the early 16622 watch into a little corner of the Rolex world very few people think to look. It's the reject bin, where the offcuts and misshapen goods rot in ...
The Rolex Yacht-Master Is Now Cooler Than Ever
Danny Milton. April 11, 2022. 0. At 8:30 AM last Wednesday (Geneva time), when everyone stateside was tucked into their beds, the entire set of new Rolex novelties hit the internet. We immediately turned our focus to a certain left-sided crown GMT-Master II with a green and black bezel, and the new Air-King with crown guards and professional case.
Anyone wear a YachtMaster on a NATO strap?
Explorer - 214270 Milgauss - 116400 GV Date Just 41 - 126334 Sub - 14060m 2 liner Tudor S&G. If you have to loose the bracelet please go rubber at least. In my opinion nato straps are awful, maybe acceptable on a true tool watch but the yachtmaster is too elegant.
Rolex Yachtmaster: Is This the First Titanium Rolex?
Specifically, Ainslie has been wearing a version of Rolex's 42mm Yacht Master in titanium since at least late 2020. It looks a lot like the Yacht Master 42 in white gold, but with some key differences: it's got a cleaner look, lacking a date window; it's fastened using a NATO -style velcro strap; and it's made from titanium with a matte ...
Yachtmaster on a NATO
Join Date: Mar 2017. Real Name: RP. Location: irvine. Watch: 116689. Posts: 1,222. Yachtmaster on a NATO. Not sure I like it 100%. Any suggestions for the yacht-master on straps. Doesn't matter what kind of strap, I would like to see what everyone has.
Rubber Straps for Rolex Yacht-Master 2 44mm
The Rolex Yacht-Master 2. The Rolex Yacht-Master II has had some recent improvements to its already nearly perfect design. However, the color scheme has remained the same. Currently there are three Rolex Yacht-Master 2 models available. The spectacular Yacht-Master II in yellow gold features an Oyster band in matching yellow gold as the case ...
Yacht Master 16622
The Rolex Yacht-Master 16622 has a 40mm case, the dial is made of 950 platinum. Hour markers are dots, with batons at the 6 and 9 hour marks and a triangle ...
NATO Strap For Rolex Yacht-Master 40mm In Alligator
Strap length: 270mm / 10.5in. The strap fits 140-240mm (5.5-9.5in) wrists. Compatibility: The strap is compatible with Rolex Datejust 41mm, Explorer II 42mm, Oyster Perpetual 41mm, Sea-Dweller 43mm, Sky-Dweller, Submariner 41mm, Yacht-Master II 44mm. Craftsmanship and classic style combine in this NATO watch strap, rich in texture and sleek in ...
Rolex Yacht-Master 42 watch: RLX titanium
The Oyster bracelet Alchemy of form and function. The Yacht-Master 42, made from RLX titanium, is fitted on an Oyster bracelet. Developed at the end of the 1930s, this three-piece link bracelet remains the most universal in the Oyster Perpetual collection and is known for its robustness.
rolex yachtmaster sizes
catamaran; gulet; motorboat; powerboat; riverboat; sailboat; trimaran; yacht; yacht. rolex yachtmaster sizes. Share on Facebook Share on Twitter. 426. IMAGES
rolex oyster perpetual date yacht master superlative chronometer
Shop New Arrivals. Master Chronometer vs Superlative Chronometer. Accuracy has always been an important point of pride and marketing for luxury watch brands. For over a century, t
Rolex Yacht-Master
Yacht-Master 37. Oyster, 37 mm, Oystersteel and Everose gold. Yacht-Master 40. Oyster, 40 mm, Oystersteel and Everose gold. Reset
Rolex Yacht-Master
Bracelets, clasps and extension systemsComfort and security on the wrist. 01. Oysterflex bracelet: flexible and innovative. The Oysterflex bracelet was first introduced in 2015 on the Yacht-Master 37 and Yacht-Master 40 in 18 kt Everose gold. Its innovative design meets the specific requirements of sports watches.
Rolex Yacht-Master 40 mm 78763
Buy Rolex Yacht-Master 40 mm 78763 wrist watches at the best price. Prices, photos, characteristics. Perspectiva pawnshop, call us: +7 (495) 959-99-99
Rolex Yacht-Master 40 watch: Oystersteel and platinum
Like all Rolex Professional watches, the Yacht-Master 40 offers exceptional legibility in all circumstances, and especially in the dark, thanks to its Chromalight display. The broad hands and hour markers in simple shapes - triangles, circles, rectangles - are filled with a luminescent material emitting a long-lasting glow.
ROLEX BOUTIQUE GUM in Red Square 3 109012 Moscow
Moscow5:03 am. Currently closed. Our store in Moscow, Russiais recognized as an Official Rolex Retailer, as we only sell genuine Rolex timepieces. Official Rolex Retailer. ROLEX BOUTIQUEGUM. Red Square 3109012 MoscowRussia. +7 495 937 53 73. Get directions. Visit website.
IMAGES
VIDEO
COMMENTS
In 1958, the brand partnered the New York Yacht Club, creator of the legendary America's Cup. Rolex then formed partnerships with several prestigious yacht clubs around the world and became associated with major nautical events - offshore races and coastal regattas. These strong ties culminated in 1992 with the launch of the Yacht-Master.
NATO Strap: A Rolex Yacht-Master NATO strap is a versatile and trendy option for a casual style ; Dial. The Rolex Yacht-Master dial is available in various colors, including white, black, champagne, and mother-of-pearl. Embodying both style and functionality, the Rolex Yacht-Master dial ensures effortless readability in any environment.
The Yacht-Master has been sharing the stage with other popular Rolex models like the Submariner and Sea-Dweller since 1992. But unlike its deep-diving brethren, the Yacht-Master is the premier timepiece for skippers. Thanks to a wide range of available case sizes - from 37 to 42 mm - the Rolex Yacht-Master is a perfect fit for most wrists.
Discover the Yacht-Master 42 watch in 18 ct white gold on the Official Rolex Website. Model:m226659-0002. ... Like all Rolex Professional watches, the Yacht-Master 42 offers exceptional legibility in all circumstances, and especially in the dark, thanks to its Chromalight display.
The Yacht-Master 40 and Yacht-Master 42 are equipped with calibre 3235. Entirely developed and manufactured by Rolex, this self-winding mechanical movement is particularly precise and reliable. Carrying a number of patents, our calibre 3235 is fitted with the Parachrom hairspring and the Chronergy escapement, both of which are resistant to ...
The Everose Rolex Yachtmaster, in Rolex Everose, with Everose Oysterclasp and Oysterflex bracelet, as shown, $22,000 in 37 mm, and $24,950 in 40 mm. For more info, check out Rolex.com. Rolex. A-week-on-the-wrist. For the first time, Rolex is delivering a watch on a rubber strap - except in classic Rolex fashion it's not a rubber strap at all.
The audience was just right, the time was just right, and all of a sudden you couldn't find a rose gold Yacht-Master for love nor money. Mainly money. What that's done is relegated the early 16622 watch into a little corner of the Rolex world very few people think to look. It's the reject bin, where the offcuts and misshapen goods rot in ...
Danny Milton. April 11, 2022. 0. At 8:30 AM last Wednesday (Geneva time), when everyone stateside was tucked into their beds, the entire set of new Rolex novelties hit the internet. We immediately turned our focus to a certain left-sided crown GMT-Master II with a green and black bezel, and the new Air-King with crown guards and professional case.
Explorer - 214270 Milgauss - 116400 GV Date Just 41 - 126334 Sub - 14060m 2 liner Tudor S&G. If you have to loose the bracelet please go rubber at least. In my opinion nato straps are awful, maybe acceptable on a true tool watch but the yachtmaster is too elegant.
Specifically, Ainslie has been wearing a version of Rolex's 42mm Yacht Master in titanium since at least late 2020. It looks a lot like the Yacht Master 42 in white gold, but with some key differences: it's got a cleaner look, lacking a date window; it's fastened using a NATO -style velcro strap; and it's made from titanium with a matte ...
Join Date: Mar 2017. Real Name: RP. Location: irvine. Watch: 116689. Posts: 1,222. Yachtmaster on a NATO. Not sure I like it 100%. Any suggestions for the yacht-master on straps. Doesn't matter what kind of strap, I would like to see what everyone has.
The Rolex Yacht-Master 2. The Rolex Yacht-Master II has had some recent improvements to its already nearly perfect design. However, the color scheme has remained the same. Currently there are three Rolex Yacht-Master 2 models available. The spectacular Yacht-Master II in yellow gold features an Oyster band in matching yellow gold as the case ...
The Rolex Yacht-Master 16622 has a 40mm case, the dial is made of 950 platinum. Hour markers are dots, with batons at the 6 and 9 hour marks and a triangle ...
Strap length: 270mm / 10.5in. The strap fits 140-240mm (5.5-9.5in) wrists. Compatibility: The strap is compatible with Rolex Datejust 41mm, Explorer II 42mm, Oyster Perpetual 41mm, Sea-Dweller 43mm, Sky-Dweller, Submariner 41mm, Yacht-Master II 44mm. Craftsmanship and classic style combine in this NATO watch strap, rich in texture and sleek in ...
The Oyster bracelet Alchemy of form and function. The Yacht-Master 42, made from RLX titanium, is fitted on an Oyster bracelet. Developed at the end of the 1930s, this three-piece link bracelet remains the most universal in the Oyster Perpetual collection and is known for its robustness.
catamaran; gulet; motorboat; powerboat; riverboat; sailboat; trimaran; yacht; yacht. rolex yachtmaster sizes. Share on Facebook Share on Twitter. 426. IMAGES
Shop New Arrivals. Master Chronometer vs Superlative Chronometer. Accuracy has always been an important point of pride and marketing for luxury watch brands. For over a century, t
Yacht-Master 37. Oyster, 37 mm, Oystersteel and Everose gold. Yacht-Master 40. Oyster, 40 mm, Oystersteel and Everose gold. Reset
Bracelets, clasps and extension systemsComfort and security on the wrist. 01. Oysterflex bracelet: flexible and innovative. The Oysterflex bracelet was first introduced in 2015 on the Yacht-Master 37 and Yacht-Master 40 in 18 kt Everose gold. Its innovative design meets the specific requirements of sports watches.
Buy Rolex Yacht-Master 40 mm 78763 wrist watches at the best price. Prices, photos, characteristics. Perspectiva pawnshop, call us: +7 (495) 959-99-99
Like all Rolex Professional watches, the Yacht-Master 40 offers exceptional legibility in all circumstances, and especially in the dark, thanks to its Chromalight display. The broad hands and hour markers in simple shapes - triangles, circles, rectangles - are filled with a luminescent material emitting a long-lasting glow.
Moscow5:03 am. Currently closed. Our store in Moscow, Russiais recognized as an Official Rolex Retailer, as we only sell genuine Rolex timepieces. Official Rolex Retailer. ROLEX BOUTIQUEGUM. Red Square 3109012 MoscowRussia. +7 495 937 53 73. Get directions. Visit website.