Undergraduate courses search
Displaying 21-40 of 135 undergraduate courses
Returning to education? Lifelong learning runs degrees with a foundation year for people who don't have the usual qualifications.
Explore power systems, power electronics, digital electronics, circuits and devices, electrical machines and drives. Your study covers theoretical and practical aspects across the range of electronic and electrical engineering. Once you’ve successfully completed the foundation year, you can start your main degree.
Explore power systems, power electronics, digital electronics, circuits and devices, electrical machines and drives. Your study covers theoretical and practical aspects across the range of electronic and electrical engineering. Once you’ve successfully completed the foundation year, you can start your main degree.
Explore power systems, power electronics, digital electronics, circuits and devices, electrical machines and drives. Your study covers theoretical and practical aspects across the range of electronic and electrical engineering. Once you’ve successfully completed the foundation year, you can start your main degree.
Explore power systems, power electronics, digital electronics, circuits and devices, electrical machines and drives. Your study covers theoretical and practical aspects across the range of electronic and electrical engineering. Once you’ve successfully completed the foundation year, you can start your main degree.
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.
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.
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.
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.
Discover the underlying principles of materials science and how these are applied. Keep your course general or tailor your degree with optional materials modules. You'll interact directly with industry, and undertake a final-year project with one of our leading research groups.
You’ll study the research, design, development, construction and flight of aircraft on this course and gain a solid grounding in aerospace engineering. You'll also learn how to communicate effectively with people from a wide range of engineering disciplines.
You’ll study the research, design, development, construction and flight of aircraft on this course and gain a solid grounding in aerospace engineering. You'll also learn how to communicate effectively with people from a wide range of engineering disciplines.
Discover the underlying principles of materials science and how these are applied. Keep your course general or tailor your degree with optional materials modules. You'll interact directly with industry, and undertake a final-year project with one of our leading research groups.
This course is about the design and operation of processes for making products such as fuels, medicines, plastics, food and materials for high technology industries. You'll also learn about the production and use of energy.
This course is about the design and operation of processes for making products such as fuels, medicines, plastics, food and materials for high technology industries. You'll also learn about the production and use of energy.
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.
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.
You'll gain both breadth and depth of knowledge across the full range of aeronautical and aerospace engineering. You'll also gain the additional project management experience and practical skills which employers demand on this four-year course.
You'll gain both breadth and depth of knowledge across the full range of aeronautical and aerospace engineering. You'll also gain the additional project management experience and practical skills which employers demand on this four-year course.