Year 1: Laying the Groundwork
Your first year introduces you to the core principles of physics and engineering. You'll engage in modules such as:
Mathematics for Physics I: Developing core knowledge and skills required for degree-level physics, especially in terms of mathematical modelling.
Fundamentals of Laboratory Physics: Gaining insight from the observation of natural phenomena and designing experiments to discriminate between different hypotheses.
Computational Physics: Modelling, Simulation and Good Practice: Introducing the use of computing for modelling and simulation of physical systems, regardless of computational background.
This year emphasizes developing problem-solving skills and understanding the engineering design process.
Year 2: Deepening Knowledge and Skills
In the second year, you delve deeper into specialized topics. Modules typically include:
Thermodynamics
Control Systems
Manufacturing Processes
Engineering Management
The curriculum includes more complex projects and design challenges, encouraging independent thinking and teamwork. You'll also have opportunities to engage with industry professionals through guest lectures and site visits.
Year 3: Industry Placement Year
In your third year, you'll have the opportunity to gain practical experience through an industry placement. This immersive experience allows you to apply your knowledge in a real-world setting, enhancing your skills and employability. The university provides support throughout this adventure to ensure a successful and enriching experience.
Year 4: Specialisation and Independent Project
Your final year focuses on consolidating your learning and preparing for your career. You will undertake a substantial Individual Project, allowing you to apply your knowledge to a real-world engineering problem. Modules may include:
Advanced Topics in Engineering Physics
Project Management
Sustainable Engineering
This year prepares you for professional practice and further study, equipping you with the skills and experience sought after by employers.
At Loughborough University, the Engineering Physics MPhys is designed to provide you with a comprehensive understanding of engineering principles, even if you don't have a traditional scientific or mathematical background. The foundation year focuses on developing your skills in mathematics, physics, and laboratory work, ensuring you're well-prepared for the challenges of the full degree. As you progress, you'll engage in hands-on projects, collaborate with peers, and apply your learning in real-world contexts.
Here's how the program integrates experiential learning:
Foundation Year Modules: Begin with core modules such as Introduction to Engineering and Further Foundation Mathematics, laying the groundwork for your engineering studies.
Hands-on Laboratory Work: Engage in practical laboratory sessions where you can apply theoretical knowledge to real-world experiments, enhancing your understanding of engineering concepts.
Project-Based Learning: Participate in individual and group projects led by academics, allowing you to tackle engineering challenges and develop problem-solving skills.
Interdisciplinary Approach: Study modules from various engineering disciplines, providing a broad perspective and preparing you for specialization in later years.
Industry-Led Final-Year Project: In the latter stages of your degree, undertake an industry-led project, applying your learning to solve real-world engineering problems.
Graduate Outcomes (summary):
Graduates from Loughborough’s MPhys Engineering Physics programme are well-equipped to embark on diverse and rewarding careers in engineering. The programme's comprehensive curriculum, coupled with practical experience, ensures that students are equipped with the skills and knowledge sought after by employers. With a strong emphasis on employability, many graduates secure positions in leading companies within 15 months of completing their course.
Typical job roles you could pursue:
Mechanical Engineer
Electrical Engineer
Systems Engineer
Project Engineer
Key supporting information on progression & employability:
Career support: Loughborough University offers tailored support through its Careers and Employability Service, including CV workshops, interview preparation, and networking opportunities with industry professionals.
Employment stats & salary figures: Graduates from Loughborough's engineering courses have a strong track record of securing employment in engineering roles. According to the HESA Graduate Outcomes Survey 2024, graduates with engineering degrees from Loughborough University have a median starting salary of £32,000.
University–industry partnerships: The programme benefits from strong links with leading companies such as Rolls-Royce, BAE Systems, and SSE Renewables, facilitating placements and collaborative projects.
Accreditation & long-term value: The MPhys Engineering degree is accredited by the Institute of Physics (IOP), providing a pathway towards professional recognition as a Chartered Physicist (CPhys).
Graduation outcomes: Graduates are well-prepared for professional practice, with many progressing to Chartered Engineer status through further study and work experience.
Further Academic Progression:
After completing the MPhys, you have several options to further your studies:
Doctoral research (PhD): Engage in advanced research in areas like quantum engineering, photonics, or condensed matter physics.
Master's degrees (MSc): Specialise in areas such as Medical Physics, Advanced Materials, or Computational Engineering.
Professional development: Participate in professional development courses and certifications to enhance your skills and career prospects.



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