4 Years On Campus Bachelors Program
Electronic & Computer Engineering (with a Year in Industry) BEng (Hons) at Liverpool Hope University is a dynamic four-year degree blending the essentials of electronics and software development, with a valuable one-year placement embedded in industry. It’s perfect for hands-on learners who want to design everything from microchips to mobile devices while gaining real-world engineering experience.
Curriculum Structure:
Year One:
You will develop the core knowledge and skills that underpin electronics and computer engineering. Engineering Principles introduces circuit theory, analogue and digital electronics, mathematics, and engineering programming, supported by a microcontroller-based robotics project. Computing Principles & Professional Development introduces computer systems, databases, algorithm design, and programming, while also building professional and study skills essential for engineers.
Year Two:
The second year broadens your technical expertise. You’ll study Applied Electronics (sensors, circuits, signal conversion, sequential logic), Networks (internet components and protocols), and Control Theory (ensuring stable operation of electronic and electromechanical systems). Practical computing is advanced through Microcontrollers and Object-Oriented Programming with C++, supported by UML for large-scale software design. Software Engineering using Java explores teamwork, project management, and industrial technology practices. You’ll also study Signal Processing (continuous/discrete signals, filtering, real-time processing) and Professional Skills to prepare for industry employment.
Year Three
Your third year is entirely spent in industry—an invaluable placement where you’ll apply theory to real engineering challenges, build professional experience, and get a head start in your career. 
Year Four:
The final year is influenced by research and current industry needs, focusing on employability and specialization. You’ll study Electronic Systems (amplifiers, power electronics, system design), Machine Learning Hardware (accelerated architectures for AI), and Internet of Things (IoT) technologies. Embedded Systems expands microcontroller, programmable logic, and SoC design skills. In Machine Learning you’ll progress from fundamental models to advanced topics such as reinforcement learning, NLP, meta-learning, and semi-supervised methods. Mobile & Ubiquitous Computing focuses on Android development using Java and Android Studio. The year culminates in a major independent Project, where you integrate your skills to develop a solution in an area of personal interest.
Focus Areas:
Electronics (analogue/digital), embedded systems, microcontrollers, IoT, signal processing, machine learning (software and hardware), control systems, mobile computing, robotics, software engineering (C++, Java), and professional engineering practice.
Learning Outcomes:
Graduates will be able to design and program embedded and electronic systems, develop AI-driven and IoT solutions, analyse and process signals, build mobile and distributed computing applications, and manage large-scale software projects. You’ll also gain professional and team-working skills highly relevant to industry.
Professional Alignment (Accreditation)
The program aligns with the standards set by the Institution of Engineering and Technology (IET), ensuring that graduates meet the educational requirements for Chartered Engineer status.
Reputation (Employability Rankings)
Liverpool Hope University achieved a TEF Silver rating (Teaching Excellence Framework 2023), reflecting strong teaching and student outcomes. Graduate employability is a particular strength—98.1% of graduates are in work or further study within six months. Small class sizes and close lecturer support are frequently praised by students, offering a more personalised learning environment.
At Liverpool Hope, you won't just learn about engineering; you will become an engineer. From your first year, you'll be in our specialist labs, getting practical experience with industry-standard equipment. The course is built around the application of knowledge, allowing you to design, build, and test real electronic and computing systems. This focus on creating and doing ensures you graduate with a robust portfolio of work and the confidence to solve complex technical problems. Your practical journey is supported by a comprehensive suite of resources and opportunities tailored to your development:
Experiental Learning Highlights:
Specialist Laboratory Facilities: You will work in our modern Engineering Laboratories, which are equipped with professional oscilloscopes, signal generators, power supplies, and advanced microcontroller development kits for prototyping and testing your electronic designs.
Industry-Standard Software: Gain proficiency in essential engineering tools, including MATLAB and Simulink for system modelling, simulation, and complex data analysis, which are crucial for designing and validating your projects.
Practical Project Work: Apply your skills through significant collaborative projects, such as designing and programming integrated hardware-software systems, which are core to the curriculum and develop vital teamwork and project management abilities.
Digital Systems & Programming: Develop expertise in programming languages like C/C++ and work with Field-Programmable Gate Arrays (FPGAs) using relevant design suites to create and implement sophisticated digital circuits.
Final Year Capstone Project: Undertake a major individual project where you will conceive, design, and build a functional engineering system from the ground up, serving as a centrepiece for your CV and demonstrating your capabilities to future employers.
Dedicated Learning Resources: You are supported by the University Library, which offers an extensive collection of technical journals, specialised e-books, and access to key online engineering databases to aid your research and project work.
Graduates of Liverpool Hope University's BEng (Hons) Electronic & Computer Engineering are highly employable, moving into roles such as electronics design engineer, embedded systems developer, software engineer, control systems specialist, and network analyst. Many alumni also pursue further study in electronic engineering, computer science, robotics, or related fields, or work in sectors including telecommunications, automotive, consumer electronics, and industrial automation.
Here's how Liverpool Hope specifically supports your future:
Career Services & Experiential Learning:
The program offers a practical curriculum that combines electronic engineering with computer systems, providing opportunities for hands-on learning through laboratory work, design projects, and individual research. You'll learn through a mix of lectures, practical sessions, and project-based activities, with a strong emphasis on integrating hardware and software systems. The University's Careers and Employability service provides tailored support including CV development, interview preparation, and industry networking opportunities throughout your studies.
Industry Partnerships & Research:
The Department of Mathematics and Computer Science maintains industry connections and modern facilities including electronics laboratories, computing suites, and embedded systems development environments. Students benefit from applied teaching in areas such as digital systems design, programming, communications engineering, and control systems. The curriculum is designed to develop practical skills in circuit design, software development, and systems integration that are valued by employers across the technology sector.
Graduate Outcomes:
Students graduate with a solid foundation in electronic principles, computer programming, systems design, and project management, complemented by practical experience from laboratory work and engineering projects. These skills are highly sought after in various technology-driven industries.
Further Academic Progression:
After your BEng (Hons) at Liverpool Hope, you can pursue a master's in specialized areas such as embedded systems or telecommunications, or enter professional roles in electronics design, systems engineering, or technical support, supported by the program's practical focus and industry-relevant curriculum.



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