
Mechanical Engineering Meng (Hon)
Course Overview - Mechanical Engineering Meng (Hon)
Mechanical engineers use their skills in almost every industry, and you’ll find their expertise in nearly everything you see and use in everyday life. They design and develop products, systems and machinery to tackle all sorts of challenges, from renewable energy to household appliances, from robotics to manufacturing equipment, from aerospace components to healthcare solutions. As a mechanical engineer you get to use your creativity to design and develop products and systems, build prototypes, analyse and test until you find your solution. Throughout your career you will frequently...
Mechanical engineers use their skills in almost every industry, and you’ll find their expertise in nearly everything you see and use in everyday life. They design and develop products, systems and machinery to tackle all sorts of challenges, from renewable energy to household appliances, from robotics to manufacturing equipment, from aerospace components to healthcare solutions. As a mechanical engineer you get to use your creativity to design and develop products and systems, build prototypes, analyse and test until you find your solution. Throughout your career you will frequently work across teams of engineers from other branches of the discipline, so it’s crucial to have a broad understanding of general engineering and its applications. At Lancaster, your first year is dedicated to exactly this, and you’ll share this experience with all our School of Engineering students, regardless of their specialisation. We think this makes you a well-rounded graduate, with excellent teamwork and communications skills, prepared for your future career.<br/><br/><strong>What to expect</strong><br/>Our four-year MEng Hons Mechanical Engineering degree starts with your general engineering first year and includes core themes of design, materials, manufacturing, thermodynamics and heat transfer, along with mathematics.<br/><br/>In Year 2 is where you start to specialise in mechanical engineering and you will learn core themes such as the science of materials, mechanics, fluids and thermodynamics, and also machine design and control, which includes the opportunity to apply these principles to applications like mobile robotics. Working in our two new engineering buildings with state-of-the-art facilities, you’ll develop your creativity and technical skills as you design, build and test to solve real-world problems.<br/><br/>In the third year you will undertake a significant collaborative project. It’s a fantastic opportunity to develop professional skills such as project management, team working and research, whilst studying industrially relevant systems. Alongside your project work you will study specialist modules such as dynamic systems, computer aided engineering and product design, through which you will gain relevant real-world experience.<br/><br/>Take further steps towards professional engineering with management skills, project management, and industry engagement. Sustainability, safety, ethics and quality management are kept in focus too.<br/><br/><strong>Master’s-level training</strong><br/>During your final year you will undertake an extended individual project which gives you the opportunity to conduct research and pursue your interests in an engineering application of your choosing. This research will be supported by the School’s world-leading researchers whose expertise lies in energy, robotics, advanced manufacturing and more. You will also be able to tune your final year towards your career aspirations with pathways focussing on sustainable power generation, including renewable and nuclear power, or industrial system design, which includes mechatronics, control and machine learning. The fourth year also includes industry projects wherein you solve real-world problems for local companies as consultants, which is excellent experience for employment. This year will solidify your knowledge, placing you in an excellent position to launch your engineering career and progress toward achieving Chartered Engineer status.<br/><br/><strong>Personal Development</strong><br/>You will develop valuable transferable skills that make you highly desirable to future employers, such as working in collaboration, communication, and the ability to design, build, and implement a system or device. You will grow practical skills in diagnosis and testing, system maintenance, digital proficiencies, and the ability to consider and maintain work safety practices in a range of environments.<br/><br/><strong>Important Information</strong><br/>For the most up-to-date course information and more details, we recommend that you revisit our website before submitting your application.
Course Information
1 option available
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Course Details
Information
Study Mode
Full-time
Duration
4 Years
Start Date
21/09/2026
Campus
Main Site
Application Details
14 January
Application deadline
Provider Details
Codes/info
Course Code
H303
Institution Code
L14
Points of Entry
Year 1, Year 2
Entry Requirements
UCAS Tariff
Not Accepted
Access to HE Diploma
D:45
in a relevant subject, including sufficient Mathematics content
International Baccalaureate Diploma Programme
36
with 16 points from the best 3 Higher Level subjects including either: Mathematics HL grade 6 (either pathway) plus grade 6 in a HL Physical Science Mathematics HL grade 6 (either pathway) plus grade 6 in two SL Physical Sciences Mathematics SL grade 7 (Analysis and Approaches) plus HL grade 6 in a Physical Science Acceptable physical science subjects include Physics, Chemistry, Computer Science, and Design Technology
Pearson BTEC Level 3 National Extended Diploma (first teaching from September 2016)
BTEC (Pre-2016 specifications): Distinction, Distinction, Distinction in an Engineering related subject to include Distinctions in Mathematics for Engineering Technicians and Further Mathematics for Engineering Technicians units. BTEC (2016 specifications): Distinction, Distinction, Distinction in an Engineering related subject to include Distinctions in the following units – Unit 1 Engineering Principles, Unit 7 Calculus to Solve Engineering Problems. Unit 8 Further Engineering Mathematics is highly recommended.
A level
A,A,A
A level Mathematics and a Physical Science, for example, Physics, Chemistry, Computer Science, Electronics, Design & Technology or Further Mathematics
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