MSc Civil Engineering and Management
The MSc Civil Engineering and Management program at the University of Nottingham aim to...
University Park Campus
INTAKE: September
The MSc Electrical Engineering program at the University of Nottingham is designed to equip students with a comprehensive understanding of electrical systems, their design, analysis, and application in various industries. The program covers a wide range of topics, including power systems, control systems, electronics, telecommunications, and renewable energy.
Core Modules: The program includes a set of core modules that cover essential aspects of electrical engineering. These modules may include advanced power systems, control engineering, digital signal processing, electrical machines, and renewable energy systems.
Specialization Options: Students have the flexibility to tailor their degree by choosing from a range of specialization options. These may include power electronics, telecommunications, energy systems, robotics, or microelectronics. Specializations allow students to delve deeper into specific areas of electrical engineering based on their interests and career goals.
Laboratory Work and Projects: The program emphasizes hands-on learning through laboratory experiments and project-based assignments. Students have access to state-of-the-art facilities and equipment, enabling them to gain practical experience in designing, analyzing, and troubleshooting electrical systems.
Industry Engagement: The University of Nottingham has strong industry connections, offering students opportunities for industrial placements, internships, or collaborative projects. This engagement with industry partners provides students with real-world exposure, allowing them to apply their knowledge in practical settings and develop valuable industry networks.
Research Opportunities: The university is renowned for its cutting-edge research in electrical engineering. Students may have the chance to engage in research projects and work alongside world-leading researchers on innovative advancements in the field. This exposure to research fosters critical thinking, problem-solving skills, and an understanding of emerging technologies.
Professional Development: The program focuses on developing students' professional skills, preparing them for successful careers in the industry. Students have access to workshops, seminars, and industry-led modules that enhance their skills in areas such as project management, teamwork, communication, and leadership.
University Park Campus
IELTS 6.5
£ 27200
Postgraduate Entry Requirements: For admission into postgraduate programs at the University of Nottingham, international students are generally required to meet the following criteria:
Academic Qualifications: Students should have completed a bachelor's degree or its equivalent with a minimum of 60% or above in their country's grading system. The specific entry requirements may vary depending on the chosen program of study. Some programs may have additional subject-specific requirements or prerequisite knowledge.
Students must provide:
Work experience: Some postgraduate courses may require relevant work experience in the field.
It is important to note that meeting the minimum entry requirements does not guarantee admission, as the university considers factors such as availability of places and competition for the program. Additionally, some courses may have higher entry requirements or additional selection criteria, such as interviews or portfolio submissions.
Scholarships for International Students at the University of Nottingham:
It's important to note that scholarship availability, eligibility criteria, and application deadlines may vary from year to year.
Graduates of the MSc Electrical Engineering program from the University of Nottingham have excellent career prospects in various sectors.
Power Systems Engineer: Graduates can work in power generation, transmission, and distribution companies, designing and maintaining electrical power systems. They may be involved in optimizing energy efficiency, integrating renewable energy sources, or ensuring the reliability and safety of the electrical grid.
Control Systems Engineer: Graduates can pursue careers in automation, robotics, or manufacturing industries, designing and implementing control systems for efficient and safe operation. They may work on projects involving robotics, industrial automation, or process control.
Electronics Design Engineer: Graduates can work in the electronics industry, designing and developing electronic circuits and systems. They may be involved in product development, testing, or quality assurance.
Telecommunications Engineer: Graduates can work in the telecommunications industry, designing and maintaining communication networks and systems. They may specialize in areas such as wireless communication, optical communication, or network infrastructure.
Renewable Energy Engineer: Graduates with a specialization in renewable energy can work in the renewable energy sector, developing sustainable energy solutions, and implementing renewable energy systems. They may be involved in solar power, wind power, or energy storage projects.
Research and Development: Graduates interested in research can pursue further studies or work in research institutions, universities, or specialized research and development centers. They may contribute to research projects focused on advancing electrical engineering knowledge, developing innovative technologies, or addressing industry challenges.