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BEng Automotive Engineering (Industrial)

University of Leeds

Institution
University of Leeds
Level
undergraduate
Subject
Automotive Engineering (Industrial)
Duration
4 years
UCAS code
H337
Typical offer
A-level AAB, IB 18

Entry requirements

A level: A*AA (specific subject requirements) BTEC: DDD (RQF) in an Engineering-related BTEC and a grade A in A Level Mathematics. IB: 18 points at higher level to include 6 points in higher level Mathematics and Physics or Chemistry.

About this course

BEng in Automotive Engineering (Industrial), a robotics engineering degree focused on mechanical systems, vehicle design, and manufacturing. The course includes a paid industrial placement year and is accredited by the Institution of Mechanical Engineers. The first year covers core foundations through Computers in Engineering Analysis, Design and Manufacture 1, Thermofluids 1, Solid Mechanics, Engineering Materials, and Engineering Mathematics. The second year introduces Engineering Mechanics, Vibration and Control, Design and Manufacture 2, Economics and Management, Mechatronics and Measurement Systems, and Thermofluids 2. The final fourth year centers on advanced topics and practical application through modules such as Individual Engineering Project, Design of electric race car cooling system, Development of an optimised rear mounting frame for a Formula Student car, Future decarbonisation of transport: Propulsion system, Tribological performance of automotive braking systems, Automotive Propulsion Systems, Vehicle Design and Analysis, Additive Manufacturing, and Computational Fluid and Structural Mechanics.

Modules

  • Computers in Engineering Analysis –
  • Design and Manufacture 1 –
  • Thermofluids 1 –
  • Solid Mechanics –
  • Engineering Materials –
  • Engineering Mathematics –
  • Engineering Mechanics –
  • Vibration and Control –
  • Design and Manufacture 2 –
  • Economics and Management –
  • Mechatronics and Measurement Systems –
  • Thermofluids 2 –
  • Individual Engineering Project –
  • Design of electric race car cooling system
  • Development of an optimised rear mounting frame for a Formula Student car
  • Future decarbonisation of transport: Propulsion system
  • Tribological performance of automotive braking systems
  • Automotive Propulsion Systems –
  • Vehicle Design and Analysis –
  • Additive Manufacturing –
  • Computational Fluid and Structural Mechanics –