Master of Science (Msc) in Industrial Engineering

USD 6,200

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Master of Science (Msc) in Industrial Engineering

Online flexible Engineering with Thesis for your Engineering Career.

Credentials and Awards by:

The program is accredited by and you will receive awards from the following academic partners:

Master of Science (Msc) in Industrial Engineering

Online flexible Engineering with Thesis for your Engineering Career.

Credentials and Awards by:

The program is accredited by and you will receive awards from the following academic partners:

Learning format
Blended Learning
Blended format combines face-to-face online classes and interactive e-learning.
UK Credits
120 ECTS Credits
Earn 180 UK credits that are globally recognized for higher education.
Modules
Modules: 08
Comprehensive modules covering key areas of the program.
Program Duration
24 Months
Designed to be completed within 18 months with flexible pacing.
Semesters
04 Semesters
Structured into three semesters for better course distribution.
Payments
Flexible Payments
Flexible payment options to accommodate different financial needs.

In-depth Analysis, Worldwide Recognition, Complete it with Comfort

A Degree that starts with your needs and completes with your achievements. Crafted by specialists, delivered by MEW’s purpose-built LMS, you have it all.

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Fully Assignment Based

Fully Assignment Based

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  • Graduate on Campus
  • Fully Online
  • Expert Webinars
  • Practical Thesis
  • WES Approved
  • WHED Listed
  • Practical Assignments
  • Thesis Support
  • Flexible Schedule

About the Programme

  • Awards: Girne American University + MEW School of Leadership
  • Credits: 120
  • Format: Blended (Online Lecture + Face to face Webinars)
  • Assessment: Module Assignment + Thesis
  • Accreditation and Approval: WES + WHED + YOK + YODAK + IACBE

The MSc Industrial Engineering qualification is designed to meet the needs of senior industrial engineers and provide a comprehensive understanding of the fundamental topics needed to manage and optimize industrial processes in a complex and ever-changing environment.

This qualification will develop a deeper understanding of both theoretical and practical aspects of industrial engineering, facilitating the essential skills and competencies necessary to design, analyze, and improve systems, processes, and operations.

Discover new heights of career opportunities as an Industrial Engineer. Industrial engineering is everywhere: manufacturing, logistics, healthcare, consulting, and many more industries. Students who equip themselves with a set of tools and skills used to model, optimize, and enhance industrial systems find high value in the job market. Industrial engineering skills have proven employability in the marketplace, and the body of knowledge in this field expands daily, including new tools, processes, and technologies, to strengthen yourself as an industrial engineer and excel in your career.

What You Will Be Able to Achieve

  • Develop comprehensive project plans that align with organizational goals, integrating scope, schedule, budget, and quality considerations.
  • Apply advanced optimization and simulation techniques, ensuring efficient and effective system performance.
  • Demonstrate practical leadership skills by motivating and managing teams, fostering collaboration, and adapting leadership styles to project phases.
  • Analyze and assess ergonomic risks associated with industrial activities and develop strategies to mitigate and manage these risks.
  • Formulate and negotiate contracts that align with project goals, considering legal, ethical, and financial implications.
  • Evaluate and implement effective contract management practices, ensuring compliance with contractual agreements and minimizing potential disputes.
  • Apply advanced industrial engineering methodologies, tools, and techniques to optimize process performance and ensure successful project delivery.
  • Design and implement efficient logistics strategies, considering global perspectives, to enhance supply chain management.
  • Implement operational strategies that enhance process efficiency, effectiveness, and sustainability.
  • Utilize information management systems to collect, analyze, and communicate data, enabling informed decision-making.
  • Integrate technology solutions to optimize operations and improve communication across stakeholders.
  • Design and conduct independent research projects, contributing to the advancement of industrial engineering knowledge and practice.

Instructional Approach

  • Leverage online learning platforms to facilitate interactive sessions, discussions, and collaboration among students.
  • Integrate practical examples, real-world case studies, and industry experts to provide hands-on experience and application of theoretical concepts.
  • Develop exercises and simulations that replicate industrial engineering scenarios to enhance problem-solving skills.
  • Encourage critical thinking and analysis through discussions on current trends, challenges, and emerging practices in industrial engineering.
  • Provide continuous feedback and assessment to track individual and collective progress throughout the program.

Who Is the Course For?

  • All professional individuals who are currently holding any of the industrial engineering positions and would want to excel in a new position and take on future challenges.
  • Anyone who is keen to know more and have an accredited globally recognized qualification to launch a career in industrial engineering and achieve the dream of becoming an industrial engineering graduate.

Study Modules

  • Advanced Engineering Mathematics
  • Programming Languages
  • Advanced Ergonomics
  • Project Planning and Management
  • Advanced Engineering Mathematics II
  • Modelling and Optimization
  • Advanced System Simulation
  • Advanced Human Resource Management
Skills this course bring:
  • Literature Search
  • Academic Critique
  • Literature Review

What will you achieve?

  • Develop Comprehensive Project Plans.

  • Apply Advanced Optimization and Simulation Techniques.

  • Demonstrate Practical Leadership Skills.

  • Analyze and Assess Ergonomic Risks.

  • Formulate and Negotiate Contracts.

  • Optimize Process Performance.

  • Design Efficient Logistics Strategies.

  • Utilize Information Management Systems.

Why Should You Enrol?

The MSc in Industrial Engineering at the MEW School of Leadership is designed for a diverse range of professionals seeking to advance their careers and gain specialized expertise in industrial engineering. This course is ideal for:

  • Current Industrial Engineers.
  • Engineers in Other Disciplines.
  • Recent Graduates.
  • Career Changers.
  • Aspiring Leaders and Innovators.
  • Lifelong Learners and Researchers.

Credentials and Accreditations

About Girne American University -

Girne American University (GAU) is the first university in Cyprus with more than 20,000 students and 18,000 alumni from 135 countries with 22 research laboratories is the largest public university of Northern Cyprus registered and accredited by YOK and YODAK.

GAU was established in 1985. Having started with seven students, today GAU is a globally recognized university with seven international campuses across three continents. It is ranked among the top 100 higher education providers by Eduniversal and offers access to the American learning system with internationally accredited programs. It serves 20,000 students from 135 countries, offers 71 undergraduate programs, and features a well-equipped library with extensive scientific databases and digital resources.

GAU offers programs at the Doctorate, Master's and Bachelor's levels, and all the programs are WES Approved.

Girne American University Accreditation & Associations:

  • YÖK - Council of Higher Education (Republic of Turkiye)
  • YÖDAK - Higher Education Planning Evaluation Accreditation and Coordination Council (Northern Cyprus)
  • IACBE - The International Assembly for Collegiate Business Education (US)
  • UK NARIC
  • EAQUALS
 
 
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About MEW School of Leadership -

MEW School of Leadership is a London-based leading global online business school offering fully accredited, self-paced, flexible and assignment-based;

  • Accredited Online Degrees, 
  • Pathway Programs Master's and Bachelor's levels,
  • Short Certified CPD Courses,
  • UK University progress UG and PG Diplomas, 
  • Executive & Corporate Training.

In management, administration and professional areas via blended and online learning models. We are one of the top schools for Online MBA, Masters Degrees, Executive Education, Corporate Training and much more. MEW School of Leadership is transforming Leadership thought and practice in the UAE, UK and beyond."

MEW School partners with world's best universities and awarding bodies to bring accredited an globally recognised qualifications at your class or screen. 

 

Learn more

Girne American University

MEW School of Leadership

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Learning Modules/Units

Unveil the valuable lessons and practical skills that you'll gain throughout this course.

This unit introduces learners to the realities of developing and managing a project. It will also introduce learners to the challenges of project management practice in the global business arena. It aims to promote thinking critically about project management as complex, process-based cultural systems and as constantly developing with high-performing team efforts. As firms increasingly have project development and management activities, understanding efficient project management is vital. Learners will learn about the roles and responsibilities of project team members. Various management skills will be studied, focusing on success factors, monitoring, and control. 

This unit aims to develop learners’ understanding of how effective strategic human resource management supports the achievement of organizational objectives in different contexts. Learners will evaluate the contribution of strategic human resource management and the application of leadership and management theory for organizational benefit.

  • Understand the role of management of human resources.
  • Be able to create a human resource plan for an organisation.
  • Understand the role of legal and ethical issues in developing human resources policy.
  • Be able to plan and develop human resource strategies.
  • Understand HRM approaches within organisations and their relationships with organisational performance.

  • Understand and apply various mathematical models and optimization techniques to solve complex industrial engineering problems.
  • Analyze real-world systems and processes to identify opportunities for improvement through optimization.
  • Develop and use simulation models to predict system behavior and evaluate the impact of different variables.
  • Implement optimization algorithms using software tools to achieve optimal solutions in industrial applications.
  • Interpret and communicate the results of modeling and optimization studies to support decision-making in engineering contexts.
  • Integrate knowledge of modeling and optimization with other industrial engineering concepts to enhance overall system performance.
  • Critically evaluate the limitations and assumptions of different modeling and optimization approaches.

  • Explain simulation concepts and distinguish between simulation and other optimization techniques.
  • Describe and implement the steps of simulation methodology, including defining parameters and constants.
  • Select appropriate simulation techniques and utilize computerized simulation packages effectively.
  • Identify and apply common probability distributions in simulation models.
  • Build, test, and analyze simulation models for industrial systems, making data-driven decisions.
  • Critically evaluate simulation outcomes and effectively communicate results to stakeholders.
  • Recognize ethical implications and ensure accuracy and transparency in simulation practices.

  • Apply advanced calculus and differential equations to model and solve complex engineering problems.
  • Utilize linear algebra and matrix theory in the analysis and optimization of industrial systems.
  • Implement numerical methods for the solution of engineering mathematics problems using appropriate software tools.
  • Analyze and interpret the behavior of dynamical systems through the application of Laplace transforms and Fourier analysis.
  • Develop mathematical models for engineering systems and validate them through theoretical and computational techniques.
  • Employ statistical methods and probability theory to manage uncertainty and variability in engineering processes.
  • Synthesize knowledge of advanced engineering mathematics to design and improve industrial engineering systems.

  • Apply advanced techniques in partial differential equations to solve engineering problems involving heat transfer, fluid dynamics, and wave propagation.
  • Utilize complex analysis, including contour integration and residue theorem, in the evaluation of engineering integrals.
  • Implement advanced numerical methods, such as finite element analysis, for the solution of engineering mathematics problems.
  • Analyze and solve optimization problems using techniques from convex analysis and nonlinear programming.
  • Develop and apply models using stochastic processes and random fields to address engineering challenges involving uncertainty.
  • Employ advanced mathematical methods in the design and analysis of control systems for industrial engineering applications.
  • Integrate knowledge of advanced mathematical concepts to innovate and optimize industrial engineering processes and systems.

  • Develop a solid understanding of various programming paradigms and languages.
  • Apply programming concepts to solve complex industrial engineering problems.
  • Design, implement, and debug programs using industry-standard software development tools.
  • Analyze and optimize code for performance and efficiency in industrial applications.
  • Integrate programming languages with other engineering tools and systems.
  • Demonstrate proficiency in object-oriented, procedural, and functional programming.
  • Utilize data structures and algorithms to enhance program functionality and efficiency.
  • Collaborate effectively in team-based programming projects and present technical solutions.
  • Evaluate and select appropriate programming languages for specific engineering tasks.
  • Understand and implement best practices for software development and maintenance in an industrial context.

  • Analyze and evaluate ergonomic principles and their application in industrial settings.
  • Develop and implement ergonomic solutions to enhance worker safety, health, and productivity.
  • Critically assess workplace design and processes to identify and mitigate ergonomic risks.
  • Apply advanced ergonomic assessment tools and techniques in real-world scenarios.
  • Integrate ergonomic considerations into the design and development of industrial systems and equipment.
  • Conduct ergonomic research and contribute to advancements in the field of industrial engineering.
  • Communicate ergonomic findings and recommendations effectively to diverse stakeholders.

Program Details

Accreditation

This course has been duly accredited by and is delivered in partnership with our accreditation partner, Girne American University, Northern Cyprus. The program carries accreditation and recognition ...

This course has been duly accredited by and is delivered in partnership with our accreditation partner, Girne American University, Northern Cyprus. 

The program carries accreditation and recognition from the following bodies:

  • YÖK - Council of Higher Education (Republic of Turkiye)
  • YÖDAK - Higher Education Planning Evaluation Accreditation and Coordination Council (Northern Cyprus)
  • IACBE - The International Assembly for Collegiate Business Education (US)

The Degree issued for this program is accepted and approved by:

  • World Education Services (WES), Canada
  • World Higher Education Database (WHED), UNESCO



Entry Requirement

A bachelor's degree or at least five years of managerial experience. A student would need at least a bachelor's degree from an accredited UK university or equivalent qualification in case the qualifi...

A bachelor's degree or at least five years of managerial experience.

A student would need at least a bachelor's degree from an accredited UK university or equivalent qualification in case the qualification is achieved abroad for the standard admission route; however, there could be a chance given to students who have a proven record of at least five years of managerial experience in the respective field of the degree applied for. This will be assessed on a case-by-case basis, and it is the university's discretion to accept or reject any application based on the experience certificate provided.

Required Documents:

  • High School Diploma/Certificate
  • Evidence of English Competence: TOEFL, IELTS, or equivalent if available. If not, then the candidate will be tested upon admission at MEW School.
  • Bachelor's Degree Certificate and official transcripts: An appropriate bachelor’s degree or its equivalent and official transcripts or academic records for all university-level studies have been completed. OR Five to Eight years of Managerial Experience: The experience letter for this purpose must be stamped and signed by proper authority with a clear start and end date of the experience. 
  • Recent updated CV/resume/portfolio
  • Academic Reference Letter
  • Professional Reference Letter
  • Photocopy of Passport/ Any Government issued ID

 

Certificate

Upon the successful completion of all the learning outcomes and passing the assessment criteria, the student will be awarded the following credentials: Certificate 1: Course Completion Certificate,...

Upon the successful completion of all the learning outcomes and passing the assessment criteria, the student will be awarded the following credentials:

  • Certificate 1: Course Completion Certificate, awarded by MEW School of Leadership
  • Certificate 2: Master's degree certificate and transcript awarded by Girne American University.

The Degree issued for this program is accepted and approved/listed by:

  • World Education Services (WES), Canada
  • International Association of Universities - World Higher Education Database (IAU WHED) - UNESCO

Visa Requirement

A visa is required only if you are invited for a research-based workshop/assignment or choose to finish the third semester on campus with the university. You might also require a visa if you opt-in to...

A visa is required only if you are invited for a research-based workshop/assignment or choose to finish the third semester on campus with the university. You might also require a visa if you opt-in to participate in the awarding university graduation ceremony.

However, since the program is 100% online, there is no visa requirement.

Please also note that MEWSchool might facilitate your visa process but cannot process or guarantee your visa. Any extra process or charges or any additional requirement related to visa processing will be borne individually and solely by the student. The above fee for the program includes only the tuition fee for the program along with your certification.

Career Outlook

The MSc Industrial Engineering program at the MEW School of Leadership is designed to enhance career prospects for both on-job and off-job professionals significantly. This pro...

The MSc Industrial Engineering program at the MEW School of Leadership is designed to enhance career prospects for both on-job and off-job professionals significantly. This program equips graduates with advanced skills and knowledge, making them highly valuable in the job market.

For On-Job Professionals

  • Career Impact: Enhance your ability to take on more complex and higher-level responsibilities within your current organization.
  • Promotion Potential: Graduates often see a faster track to senior positions such as Senior Industrial Engineer, Operations Manager, and Project Manager.
  • Earning Potential: According to the U.S. Bureau of Labor Statistics, the median annual wage for industrial engineers was $87,040 in May 2022, with the top 10% earning more than $130,000 annually.

For Off-Job Professionals

  • Career Opportunities: Open doors to diverse fields such as manufacturing, logistics, healthcare, and consulting.
  • Market Demand: Industrial engineering skills are in high demand, with job growth projected to increase by 10% from 2021 to 2031, faster than the average for all occupations.
  • Earning Potential: Entry-level positions start around $65,000 annually, with significant growth potential as experience and expertise increase.

Graduates of this program are well-equipped to take on leadership roles, drive innovation, and improve operational efficiencies, leading to substantial career growth and increased earning potential.

  1.  

Workshop

Online face-to-face workshops will be conducted where practical applications of the topics discussed will be explored. Our faculty will facilitate and supervise the workshops, and an invitation for th...

Online face-to-face workshops will be conducted where practical applications of the topics discussed will be explored. Our faculty will facilitate and supervise the workshops, and an invitation for the same will be sent at least two hours before the invitation date. These workshops provide a complimentary learning opportunity for students to learn more practically and in depth from the faculty or fellow learners.

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