Undergraduate courses search
Displaying 81-100 of 170 undergraduate courses
Returning to education? Lifelong learning runs degrees with a foundation year for people who don't have the usual qualifications.
Study mathematics, control, embedded systems and programming, then advance to system design, security and intelligent systems. Learn to design optimised hardware/software for computing, sensing, IoT, AI, telecoms and autonomous systems, with applied projects building career-ready skills.
Discover the technology that powers modern life – from smartphones and electric vehicles to renewable energy systems and cutting-edge electronics. Learning spans everything from designing semiconductor chips, circuits and motors to building digital electronic, communication and power systems.
Biomedical engineering is a dynamic, multidisciplinary field that links engineering and medicine to improve human health and quality of life. It’s a field where you can make a real impact, using cutting-edge technology to develop innovations that help people live longer, healthier and happier lives.
Biomedical engineering is a dynamic, multidisciplinary field that links engineering and medicine to improve human health and quality of life. It’s a field where you can make a real impact, using cutting-edge technology to develop innovations that help people live longer, healthier and happier lives.
Biomedical engineering is a dynamic, multidisciplinary field that links engineering and medicine to improve human health and quality of life. It’s a field where you can make a real impact, using cutting-edge technology to develop innovations that help people live longer, healthier and happier lives.
Biomedical engineering is a dynamic, multidisciplinary field that links engineering and medicine to improve human health and quality of life. It’s a field where you can make a real impact, using cutting-edge technology to develop innovations that help people live longer, healthier and happier lives.
Materials Science and Engineering explores the principles of materials and how they are used in engineering. This foundation year is for students looking to strengthen their science skills and knowledge before starting the degree, preparing you for the BEng degree and hands-on materials projects.
Biomedical Engineering is a dynamic, multidisciplinary field linking engineering and medicine to improve health and quality of life. The foundation year builds your maths, science and practical skills, preparing you to progress onto the BEng degree.
You’ll learn to design and operate processes that make fuels, medicines, plastics, food, and advanced materials. The foundation year prepares you with essential science, maths, and engineering skills. Once you’ve successfully completed the foundation year, you’ll progress onto the BEng degree.
Biomedical Engineering is a dynamic, multidisciplinary field linking engineering and medicine to improve health and quality of life. The foundation year builds your maths, science and practical skills, preparing you to progress onto the BEng degree.
Biomedical Engineering is a dynamic, multidisciplinary field linking engineering and medicine to improve health and quality of life. The foundation year builds your maths, science and practical skills, preparing you to progress onto the BEng degree.
Learn to create and design the products that shape our world, from medicines and fuels to plastics and high-tech materials. The foundation year prepares you with essential science, maths, and engineering skills. Once you’ve successfully completed it, you’ll progress onto the MEng degree.
Learn to create and design the products that shape our world, from medicines and fuels to plastics and high-tech materials. The foundation year prepares you with essential science, maths, and engineering skills. Once you’ve successfully completed it, you’ll progress onto the MEng degree.
Gain both academic knowledge and practical experience on this unique interdisciplinary degree, taught by world-leading academics across seven departments. Develop a strong understanding across engineering disciplines and how they all fit together, before specialising in your area of interest.
Gain both academic knowledge and practical experience on this unique interdisciplinary degree, taught by world-leading academics across seven departments. Develop a strong understanding across engineering disciplines and how they all fit together, before specialising in your area of interest.
Learn core fields of computer systems - including maths, control, embedded systems and programming, - then apply them in advanced modules. Gain hardware and software skills for careers in robotics, IoT, AI and more, completing individual and group research projects in Years 3 and 4.
Gain both academic knowledge and practical experience on this unique interdisciplinary degree, taught by world-leading academics across seven departments. Develop a strong understanding across engineering disciplines and how they all fit together, before specialising in your area of interest.
This course explores the principles of materials and how they are used in engineering. This foundation year is for students looking to strengthen their science skills and knowledge before starting the degree, giving a strong start and preparing you for the MEng, and hands-on materials projects.
This course explores the principles of materials and how they are used in engineering. This foundation year is for students looking to strengthen their science skills and knowledge before starting the degree, giving a strong start and preparing you for the MEng, and hands-on materials projects.
Learn core fields of computer systems - including maths, control, embedded systems and programming, - then apply them in advanced modules. Gain hardware and software skills for careers in robotics, IoT, AI and more, completing individual and group research projects in Years 3 and 4.