BEng Electronics and Computer Engineering

Leeds

 

INTAKE: September

Program Overview

The BEng Electronics and Computer Engineering program at the University of Leeds offers students a comprehensive education in the fields of electronics and computer engineering, preparing them for exciting careers in industries at the forefront of technological innovation. The BEng Electronics and Computer Engineering program at the University of Leeds offer students a dynamic and intellectually stimulating learning environment, fostering the development of technical expertise, creativity, and innovation. Graduates emerge as skilled engineers ready to tackle the challenges of the digital age and make significant contributions to the advancement of technology in various industries.

Interdisciplinary Curriculum: The BEng Electronics and Computer Engineering program at the University of Leeds provide students with a solid foundation in both electronics and computer engineering. The curriculum integrates theory with practical application, covering topics such as digital systems design, microprocessor systems, analogue and digital electronics, computer programming, and signal processing.

Hands-On Learning Opportunities: Students enrolled in the program have access to state-of-the-art laboratories and facilities equipped with the latest technology. They engage in hands-on learning experiences, including laboratory experiments, design projects, and industry placements, allowing them to apply theoretical concepts to real-world engineering challenges.

Industry-Relevant Skills: Throughout the program, students develop a range of technical skills and competencies highly valued by employers in the electronics and computer engineering sectors. These include circuit design, programming proficiency in languages such as C/C++ and VHDL, problem-solving abilities, teamwork, and project management skills.

Research-Led Teaching: The University of Leeds is renowned for its research excellence in engineering and technology. The BEng Electronics and Computer Engineering program benefit from research-led teaching, with faculty members actively engaged in cutting-edge research projects. Students have the opportunity to learn from leading academics and contribute to innovative research initiatives.

Career Prospects: Upon successful completion of the program, graduates are well-equipped to pursue diverse career paths in areas such as telecommunications, semiconductor design, embedded systems development, consumer electronics, automotive engineering, and more. They may work as electronics engineers, computer hardware engineers, software developers, systems analysts, or pursue further studies at the postgraduate level.

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Location

Leeds

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Score

IELTS: 6

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Tuition Fee

£ 30250

Undergraduate Entry Requirements

Academic Qualifications: International students applying for undergraduate programs at the University of Leeds are typically required to have a minimum academic achievement of 60% or above in their previous studies. This may vary depending on the specific course and country of origin.

English Language Proficiency: 

  • IELTS: Overall score of 6.0 or 6.5, with no section below 5.5.
  • TOEFL: Overall score of 87, with no section score below 20.
  • PTE: Overall score of 60, with a minimum of 59 in each section.

Students must provide:

  • academic marksheets & transcripts
  • letters of recommendation
  • a personal statement - SOP
  • passport
  • other supporting documents as required by the university.

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 Leeds:

International Undergraduate Scholarships: The University of Leeds offers a range of scholarships specifically for international undergraduate students. These scholarships are awarded based on academic excellence, and the selection criteria may vary depending on the specific scholarship. Some of the popular undergraduate scholarships include the International Undergraduate Science and Engineering Scholarship, the International Undergraduate Arts, Humanities and Cultures Scholarship, and the Business School International Undergraduate Scholarship.

Country-Specific Scholarships: The university also offers scholarships that are specific to certain countries or regions. These scholarships aim to attract high-achieving students from those areas and foster international collaborations. Examples of country-specific scholarships include the India Excellence Scholarship, the China Scholarship Council – University of Leeds Scholarships, and the Commonwealth Scholarships.

External Scholarships and Funding: In addition to the university's own scholarships, international students at the University of Leeds are encouraged to explore external scholarship opportunities. There are numerous organizations, foundations, and government bodies that offer scholarships and funding for international students studying in the UK. The university provides support and guidance to help students navigate these external scholarship options.

Research Council Funding: For international students pursuing research degrees, the University of Leeds encourages them to explore research council funding opportunities. Research councils such as the UK Research and Innovation (UKRI) and the Arts and Humanities Research Council (AHRC) offer funding for research projects across various disciplines. These funding opportunities provide financial support for tuition fees and living expenses during the research period.

It is important to note that the availability and eligibility criteria for scholarships may vary each year.

Graduates of the BEng Electronics and Computer Engineering program at the University of Leeds are highly sought after by employers across various industries due to their diverse skill set and comprehensive understanding of electronics and computer engineering principles.

Electronics Engineer: Graduates can pursue roles as electronics engineers, designing, testing, and developing electronic components, devices, and systems. They may work in sectors such as telecommunications, aerospace, automotive, and consumer electronics, designing circuits, troubleshooting problems, and ensuring the efficient operation of electronic systems.

Computer Hardware Engineer: With their knowledge of computer architecture and hardware design, graduates can work as computer hardware engineers, designing and testing computer components such as processors, memory devices, and networking hardware. They may also be involved in the development of embedded systems for various applications.

Software Developer: Many graduates choose to pursue careers as software developers, creating applications, systems software, and firmware for a wide range of electronic devices and systems. They may develop software for embedded systems, mobile applications, web applications, or desktop software, using programming languages such as C/C++, Java, Python, and VHDL.

Systems Analyst: Graduates with strong analytical skills may opt for roles as systems analysts, working to understand the requirements of electronic systems and software applications and designing solutions to meet those requirements. They may work closely with clients, users, and stakeholders to identify needs and implement effective solutions.

Research and Development (R&D): Some graduates choose to pursue careers in research and development, working in industries such as telecommunications, semiconductor manufacturing, and consumer electronics. They may be involved in developing new technologies, improving existing products, or conducting research to address specific engineering challenges.

Further Study: For those interested in advancing their knowledge and skills, further study at the postgraduate level is an option. Graduates may pursue master's or doctoral degrees in specialized areas such as digital signal processing, computer vision, robotics, or advanced electronic systems design.


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