The aim of this master program is to provide students with specialised skills in mechanical engineering technology, catering to the growing needs of the mechanical engineering industry. This master’s qualification will equip you with the necessary skills to address the demands of the modern mechanical engineering industry. Students with a background in mechanical, mechatronics, materials, industrial, production, manufacturing, robotics, instrumentation & control, agriculture, marine, mining, oil & gas, aeronautical, aerospace, chemical, process, plant, automobile and renewable engineering will be particularly well-placed to benefit from this program as it is designed to prepare you for further career development in the mechanical design and maintenance industries. Upon completion of this program, you will gain skills and knowledge in the latest and developing technologies in mechanical engineering.
Completing a Master’s degree in Mechanical Engineering from the Engineering Institute of Technology (EIT) offers several benefits that can enhance your professional and personal growth. Here are five key benefits:
Advanced technical knowledge and skills Practical guidance from the industry experts in the field Increased employability and career advancement Global networking opportunities A world class Master of Engineering (Mechanical) recognised globally.These benefits collectively offer a transformative educational experience that can significantly impact your career trajectory, opening doors to new opportunities and empowering you to make meaningful contributions to the field of mechanical engineering.Learning Outcomes:Demonstrate sound fundamental understanding of the scientific and engineering principles and apply underpinning natural, physical, and engineering sciences, mathematics, statistics, computer, and information sciences to solve problems in Mechanical engineering.Apply in-depth as well as broad understanding of the relevant specialist body of knowledge within the mechanical engineering discipline including materials, heat transfer, fluid, design, manufacturing, dynamics, industrial processes, industrial equipment, and systematic project management.Reflect critically on a broad body of engineering knowledge to plan and execute a Mechanical engineering research-based project, with awareness to knowledge development and research direction within the engineering discipline.Draw on the knowledge of engineering design practice and understand the scope, principles, norms, accountabilities and bounds of sustainable engineering practice in the Mechanical engineering discipline.Apply systematic approaches, design processes and established engineering methods, tools, techniques, and resources, underpinned by hazard and risk framework considerations to conduct and manage Mechanical engineering projects.Communicate effectively technical ideas, design concepts or research results to diverse audience.Recognise and pro-actively engage in ongoing professional development and lifelong learning, as well as develop creative and innovative solutions to engineering problems.Demonstrate professional use and management of information.Apply discipline and professional knowledge and skills to demonstrate autonomy, adaptability, and responsibility as a professional engineer.Collaboratively work as a member of a cross disciplinary team in a manner consistent with ethical and professional standards.