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The MEng (Hons) in Mechanical and Energy Engineering fosters innovative thinking to address contemporary challenges through cutting-edge technical solutions. This five-year program builds on core engineering principles while introducing specialized energy studies, environmental impact evaluation, and management strategies. You'll develop expertise to handle complex professional tasks in energy production and usage, preparing you to make informed decisions regarding energy and environmental matters. This undergraduate program provides a strong foundation in both mechanical and energy engineering, empowering you to drive society toward sustainability by developing cleaner energy solutions and enhancing efficiency. Through thermodynamics and fluid mechanics, you'll examine electricity generation from geothermal and nuclear sources via turbines, while evaluating heat pumps as a superior alternative to traditional gas heating systems. Your acquired knowledge and analytical skills will enable you to create innovative approaches to boost efficiency in aerospace, transportation, medical engineering, and nanotechnology applications. The curriculum includes industry visits and an optional work placement, leading to a Diploma in Industrial Training (DIT) upon completion. Practical, hands-on learning experiences throughout the program ensure you develop industry-relevant skills that enhance your employability upon graduation. As a mechanical engineering student, you'll master the design, development, and optimization of mechanical systems and components. The comprehensive curriculum covers essential topics including mechanics, electrical engineering, mathematics, materials science, thermodynamics, sustainable development, and renewable energy technologies. With sustainability as a central theme, you'll learn to develop solutions that balance environmental, economic, and social factors. Practical applications include: designing turbine systems for various energy sources, developing efficient heating alternatives, enhancing transportation systems, and advancing medical and nanotechnologies. In addition to technical expertise, you'll cultivate vital professional skills through individual and team projects, gaining experience in collaborative work, professional communication, and technical documentation. The program also incorporates business fundamentals, addressing global concerns like product lifecycle sustainability and financial feasibility.
Year 1 Standard entry requirements Highers AAAB (including Mathematics and Physics with one at A), A-Levels BBB - AAB (including Mathematics and Physics), Int. Baccalaureate 30 points (including Mathematics and Physics at Higher Level 5), BTEC DDM in Engineering, HNC A in graded unit (in relevant HNC, Eng Mathematics 1 and Eng Mathematics 2). Minimum entry requirements - Highers BBBC (including Mathematics at B and Physics or Engineering Science at B), A-Levels BCC (including Mathematics and Physics with one at B), BTEC DMM in Engineering, Int. Baccalaureate 29 points (including Mathematics and Physics at Higher Level 5). Year 2 - Advanced Highers AB (including Mathematics and Physics plus Highers at AAAB), A-Levels AAB (including Mathematics and Physics with one at A), Int. Baccalaureate 34 points (including Mathematics and Physics at Higher Level 6), HND AA in graded unit (In relevant subject including Engineering Maths 1, 2, 3 and 4), Global College Successful completion of our Engineering with Accelerator Programme. Year 3 - Entry to Year 3 is only available via our associate student partnership college route. IELTS Academic 6.0 with no score lower than 5.5. TOEFL 79 (including reading 18, listening 17, speaking 20, and writing 21).