Astronautics and Space Engineering BEng (Hons) or MEng — 2027 entry

Our BEng and MEng Astronautics and Space Engineering degrees will prepare you for a dynamic career in the ever-evolving field of space. You'll study the principles and technologies essential for space exploration and satellite systems.

6,690+ people have created a bespoke digital prospectus.

Key course information

Typical offer
ABB
Start date
September 2027
Full time
3 years
UK fees
£10,050
Overseas fees
£28,100
UCAS code
HH67
Campus
Stag Hill

Why choose this course?

Become an astronautics and space engineering specialist at Surrey.

Having pioneered the UK small satellite industry 40 years ago, the Surrey Space Centre designs and builds innovative commercial satellites to launch into orbit. This means our BEng and MEng Astronautics and Space Engineering courses give you a unique opportunity to learn from inspiring academics at the forefront of space engineering.

  • Take the opportunity to get industry-ready with our award-winning Professional Training placements.
  • Hone your practical, teamwork and leadership skills by joining one of our successful and dynamic student competition design groups. These include the UAS Challenge team (champions in 2021 and 2022), and our Team Peryton rocketry and satellite design teams (both category winners in 2023).
  • With our strong heritage in space study, we're widely recognised as one of the best astronautical engineer universities in the UK.

Our astronautics and space engineering degree will prepare you for a career in space, research and development or you could transfer into other engineering sectors.

We’re preparing you for the future by integrating AI into every course, building digital skills, confidence and creativity that employers value in tomorrow’s workplace.

Find out more information

Statistics

93%

Of our computer science and electronic engineering graduates are in employment or further study within 15 months of graduating (Graduate Outcomes Survey 2026, HESA)

Accreditation and/or recognition

IET logo

Course details

Open Close

What you will study

On our astronautics and space engineering course, you’ll apply your knowledge through projects on which you'll work closely with academics from Surrey Space Centre. This means you'll gain practical, hands-on experience of the technologies which are so crucial for successful space missions.

You can apply to study for either a BEng or MEng astronautics and space engineering degree. The MEng builds on the BEng with a masters year and is a direct route to a masters qualification, known as an integrated masters. Depending on your progress, you may have the option to switch to a BEng or MEng during your studies.

Professional recognition

BEng (Hons) - Institution of Engineering and Technology (IET)
Accredited by the Institution of Engineering and Technology (IET) on behalf of the Engineering Council for the purposes of fully meeting the academic requirement for registration as an Incorporated Engineer and partially meeting the academic requirement for registration as a Chartered Engineer.

MEng - Institution of Engineering and Technology (IET)
Accredited by the Institution of Engineering and Technology on behalf of the Engineering Council for the purposes of fully meeting the academic requirement for registration as a Chartered Engineer.

Foundation year

If you don’t meet our entry requirements, you might still be able to apply for this degree with an Engineering and Physical Sciences Foundation Year. This is an extra year of study to develop your skills and make it easier for you to get started at university. On successful completion of your foundation year, you’ll be ready to progress to the first year of your degree.  

To see what modules you’ll be studying, refer to the foundation tab in the 'Course structure' section.

Course structure

Open Close

The academic year is divided into two semesters of 15 weeks each. Each semester consists of a period of teaching, revision/directed learning and assessment.

The structure of our programmes follow clear educational aims that are tailored to each programme. These are all outlined in the programme specifications which include further details such as the learning outcomes.

Please note: The full module listing for the optional Professional Training placement part of your course is available in the programme specification.

Modules

Modules listed are indicative, reflecting the information available at the time of publication. Modules are subject to teaching availability, student demand and/or class size caps.

The University operates a credit framework for all taught programmes based on a 15-credit tariff.

New for 2026 entry: At Surrey, we want you to be a future-ready graduate. That’s why all our courses will offer at least one module that integrates and teaches AI tools in discipline-specific ways. You’ll develop the digital skills that employers are looking for and get comfortable with the tech of the future.

Course options

Year 1 - BEng (Hons)

Semester 1

Compulsory

ELECTRONIC CIRCUITS

More info Close

The module offers an introduction to circuit theory and analogue electronics.

View full module details

COMPUTER AND DIGITAL LOGIC

More info Close

This module introduces the principles and operation of digital logic systems, along with the tools and techniques used for their design and analysis, illustrated through real-world applications. It addresses both theoretical concepts such as logical operators, their combination and simplification, and circuit arrangements such as counters and registers, and the practical implementation of logic flows using software. The practical component also serves as an introduction to programming fundamentals through the Python language.

View full module details

ENGINEERING MATHEMATICS

More info Close

Mathematics is the best tool we have to gain a quantitative understanding of engineering sciences. This module is designed briefly to revise and then to extend A-level Mathematics material, and to introduce students to mathematical techniques to support future engineering modules.

View full module details
Compulsory

LABORATORIES, DESIGN & PROFESSIONAL STUDIES I

More info Close

Expected prior learning:  None. Module purpose:  Working individually or in groups on engineering projects requires a wide range of professional and technical skills. This module helps first year students develop skills in research and technical presentation, along with the practical laboratory skills required by the professional engineer.  Both units of assessment must be passed individually.  No compensation is allowed for this module. This module is the first module a student will encounter within the Laboratory, Design and Professional Studies group of modules in Year 1 (EEE1027 in semester 1 and EEE1028 in semester 2), in Year 2 (EEE2036 in semester 1 and EEE2037 in semester 2) and EEE3035 in year 3.

View full module details

Semester 2

Compulsory

MATHEMATICS II: ENGINEERING MATHEMATICS

More info Close

Mathematics is an essential tool to understand and solve real-world engineering problems. This module builds on the mathematical foundations from MAT1044 Engineering Mathematics to introduce and explore more advanced mathematical concepts and methods relevant to a wide range of electronic engineering applications. 

View full module details

ELECTRICAL SCIENCE I

More info Close

To understand the physics and engineering that underpins the operation of semiconductor devices and to use this to understand the operation of simple bipolar devices and MOS transistors.   In addition to understand the effects electric and magnetic fields and their interaction with matter within the discipline of electronic engineering.

View full module details

PROGRAMMING IN C

More info Close

Module purpose: Programming is a key part of electronic engineering and the C programming language is at the heart of many embedded software systems. This module will provide the students with a solid practical knowledge of the C programming language, its relationship to the underlying hardware and aspects of both high level programming and low level manipulation of memory.

View full module details
Compulsory

LABORATORIES, DESIGN & PROFESSIONAL STUDIES II

More info Close

This module is the second module a student will encounter within the Laboratory, Design and Professional Studies group of modules. In builds upon EEE1027 in semester 1 and sees the introduction of project work alongside experiment. In subsequent years students building on their labs, design and professional studies work in Year 2 (EEE2036 in semester 1 and EEE2037 in semester 2) and EEE3035 in year 3.  Working individually or in groups on technical engineering projects requires a wide range of professional skills. Linking the laboratory work closely with professional development stresses the importance of developing an integrated portfolio of project skills. Both units of assessment must be passed individually. No compensation is allowed for this module.    

View full module details

Module selection for Year 1 - FHEQ Level 4

No optional modules in Semester 1.
No optional modules in Semester 2.

Year 2 - BEng (Hons)

Semester 1

Compulsory

CIRCUITS, CONTROL AND COMMUNICATIONS

More info Close

Expected prior learning:  Learning equivalent to Year 1 of EE Programmes. Module purpose:  This module is divided into two parts (Circuit & Control Systems and Communication Systems) each of which build on the concepts and tools introduced in Year 1.

View full module details

ENGINEERING MATHEMATICS III

More info Close

This module builds on the fundamental tools and concepts introduced in the Year 1 mathematics modules MAT1044 Engineering Mathematics and EEE1032 Mathematics II: Engineering Mathematics. A broad range of mathematical topics are covered with applications to problems in electronic engineering.

View full module details

COMPUTER ALGORITHMS AND ARCHITECTURE

More info Close

Module purpose:  this module is organized into two parts that run concurrently. Part A introduces the students to microprocessors. This covers the key concepts in microprocessor organization and design; specifically for the instruction set, performance analysis, the arithmetic logic unit (ALU), and the processor control and data paths. Additionally, we explore common memory hierarchies and caching problems. In class problems are given as examples in design. Part B covers the analysis, design and implementation of computer algorithms. It presents concepts and methods for the analysis of algorithms. Classic programming techniques and data-structures needed to develop efficient algorithms in C for solving logical and data-handling problems are introduced, and students will attend programming lab sessions where they have the opportunity to implement in C the algorithms that have been covered. This module has strong connections with a number of modules within the curriculum. The module directly builds on the Year 1 modules which establish a foundation in programming (EEE1033 and EEE1035). This module uses C as the main programming language, thus providing continuity with the first year where it was introduced. The module also prepares students for subsequent modules. This includes the Year 2 Semester 2 modules concerned with object-oriented programming (EEE2047) and computer vision & graphics (EEE2041) as well as specialist modules in Year 3 such as Computer Vision and Pattern Recognition (EEE3032), Digital Design with VHDL (EEE3027), Robotics (EEE3243), etc.

View full module details
Compulsory

LABORATORIES, DESIGN & PROFESSIONAL STUDIES III

More info Close

Expected prior learning: Learning equivalent to Year 1 of EE UG Programmes or equivalent Module purpose: Hands-on experimental skills, professional skills, and enterprise skills are important to today’s electronic engineers. This module helps the students to develop these skills by offering them laboratory-based experiments, team design projects and professional studies on transferrable skills. These activities are based on either individual or teamwork.

View full module details

Semester 2

Compulsory

SPACE ENGINEERING & MISSION DESIGN

More info Close

Expected prior learning:  Learning equivalent to Year 1 of EE Programmes. Module purpose:  Space engineering provides a foundation for human access and utilization of space and has shown growing importance to global economy. The module offers basics of space engineering and mission design. Students will obtain an introduction on mission analysis and design tools, instrumentation and space technologies. For those students on the undergraduate “space” pathways, the module acts as an introduction to the space engineering and mission design, and the themes are picked up in the compulsory Level 6 modules: EEE3040 Space Engineering and EEE3039 Space Dynamics and Missions, where they are examined in more detail. These modules, together, provide the background and context for the detailed individual Level 7 modules concerning different aspects, systems and applications of spacecraft: e.g. EEEM044 RF Systems and Circuit Design; EEM031 Satellite Communications Fundamentals; EEEM033 Satellite Remote Sensing; EEEM059 Space Avionics;.EEEM009 Advanced Guidance, Navigation and Control; EEEM032 Advanced Satellite Communications Techniques; EEEM012 Launch Vehicles and Propulsion; and EEEM057 Space Environment and Protection. Students may choose their own selection from these advanced Level 7 modules, according to their interests or future career choices.  

View full module details

ELECTRICAL SCIENCE II

More info Close

  All modern electronic devices make use of transistor technology and their future developments, via Moore’s Law and beyond, are fundamentally linked to device architecture. This module will introduce modern CMOS transistor structures and link to the operation for integrated circuits and modern memory devices. The module will also show how electric and magnetic fields can be unified within Maxwell’s equations to produce electromagnetic theory and solve common problems.

View full module details

C++ AND OBJECT-ORIENTED DESIGN

More info Close

Expected prior learning:  A good working knowledge of procedural programming, preferably in the C programming language.  [Surrey EEE students should have achieved this in their Year 1 studies. Module purpose:  Object orientated programming (OOP) is a popular programming methodology for large application programming. C++ is a powerful programming language which, being backwards compatible with C, provides efficient access to low level components of a system. This makes it important for Electronic Engineering yet it is also a fully functioning industrially recognized language for large scale application programming. The module will provide students with the fundamentals of Object Orientated Design and Programming, with specific emphasis on its implementation in the C++ language.

View full module details
Compulsory

LABORATORIES, DESIGN & PROFESSIONAL STUDIES IV

More info Close

Expected prior learning:  Participation in module EEE2036 "Laboratories, Design & Professional Studies III"  Module purpose:  Hands-on experimental skills, professional skills, and enterprise skills are important to today’s electronic engineers. This module helps the students to develop these skills by offering them laboratory-based experiments, team design projects and professional studies on transferrable skills. These activities are based on either individual or team work.

View full module details
Optional

COMPUTER NETWORKING

More info Close

Computer networks are an essential part of almost all corporate computing facilities and even most domestic ones.  Interoperability is the key – all components must conform to the same hardware and packet specifications in order that they can be interconnected successfully.  This module introduces essential concepts about all the computer networking layering levels with some emphasis on the routing algorithms and implementation of network sensing. 

View full module details

Module selection for Year 2 - FHEQ Level 5

No optional modules in Semester 1.
Select one optional module in semester 2.

Year 3 - BEng (Hons)

Semester 1

Compulsory

ENGINEERING PROFESSIONAL STUDIES

More info Close

Expected prior learning: This module is a follow-up to some of the core professional development activities in Year 2. Module purpose:  This module is a professional development module that is compulsory on all undergraduate programmes. The module builds from the team projects performed as part of the professional studies components of the Year 1 and 2 Labs, Design and Professional Studies modules (EEE1026, EEE1027, EEE2036 and EEE2037). The module provides students with competences and hands-on experience of an extended project and professional practice in modern electrical, electronic and computer engineering. The module’s focus is a student-driven team-based product-design project that applies skills and practices addressed in the syllabus. In addition, it provides a skillset for successful management of individual projects, in particular the Year 3 project, and future group projects, such as the multi-disciplinary design project in MEng Year 4.

View full module details

SPACE DYNAMICS AND MISSIONS

More info Close

Expected prior learning:   Students are expected to be familiar with the module contents of EEE1031, EEE1032, EEE2035 and equivalent. Students are also expected to be familiar with the basic principles of computer programming such as the writing of a function, for/while loops, if/else statements. It is helpful, but not essential, to have studied module EEE2043 – Space Engineering and Mission Design or to have equivalent learning. Student Journey: This module applies Engineering Mathematics concepts introduced in year 1 and 2 to the motion of objects in space. Combined with EEEM009 - Advanced Guidance Navigation & Control, which builds upon EEE3039 concepts to present students with a more in-depth overview of space-related hardware and software, EEE3039 aims at laying out the foundation for describing, predicting, and controlling the motion of objects in Space (both in terms of spacecraft position and orientation with respect to suitable reference frames). Module purpose:  This module gives a hands-on approach to mission analysis and develops mathematical descriptions of the natural orbital and rotational motions of spacecraft.  Material is delivered through a series of lectures, group problem solving and assessed assignments. The application to mission design is explored through group work and coding assignments.  

View full module details

SPACE SYSTEM DESIGN

More info Close

Expected prior learning: Good background in physics including forces and motion, heat and light, and electricity and magnetism as might have been acquired at A/AS level or International Baccalaureate Physics. It is also useful to have some knowledge of typical space missions: BEng/MEng students might have acquired this through the EEE2043 – Space Engineering & Mission Design module. Module purpose:  This is a key module for students interested in becoming space systems engineers, or in working in a related field. It introduces the student to the key principles and techniques of spacecraft systems design, through real-world examples. The student journey: For those students on the undergraduate “space” pathways, the compulsory Level 6 modules: EEE3040 Space Engineering and EEE3039 Space Dynamics and Missions, build upon the Level 5 Module EEE2043 Space Engineering and Mission Design, but provide a more detailed examination of the material. For students coming in on the MSc space pathway, EE3040 provides a first introduction to space systems design – therefore no prior knowledge of space is expected, however, a good understanding of basic physics and mathematics (to “A” level or first year undergraduate level or equivalent) is assumed. These modules, together, provide the background and context for the detailed individual Level 7 modules concerning different aspects, systems and applications of spacecraft: e.g. EEEM044 RF Systems and Circuit Design; EEM031 Satellite Communications Fundamentals; EEEM033 Satellite Remote Sensing; EEEM059 Space Avionics;.EEEM009 Advanced Guidance, Navigation and Control; EEEM032 Advanced Satellite Communications Techniques; EEEM012 Launch Vehicles and Propulsion; EEEM M057 Space Environment and Protection and EEEM049 Spacecraft Structures and Mechanisms. Students may choose their own selection from these advanced Level 7 modules, according to their interests or future career choices.

View full module details

Semester 2

Optional

CONTROL ENGINEERING

More info Close

Expected prior learning:  Module EEE2033 – Electronics III: Circuits, Control and Communications or equivalent learning. Module purpose:  Control Engineering covers classical control theory as well as more modern methods. Students have the opportunity in this module to evaluate and apply various control techniques. This module builds on basic concepts previously introduced in Electronics III: Circuits, Control and Communications EEE2033, or equivalent learning and builds the fundamentals for a subsequent career as a control engineer or systems engineer.

View full module details

DATA & INTERNET NETWORKING

More info Close

Expected prior learning: Module EEE2040 – Communications Networks or equivalent learning. Module purpose: The Internet is an important worldwide communications system; the module provides an in-depth treatment of current and evolving Internet protocols and standards, and the algorithms that underlie them. The module also permits further study on networking in modules such as EEEM018 Advanced Mobile Communication Systems, EEEM023 Network Service management and Control, EEEM032 Advanced Satellite Communication Techniques

View full module details

POWER ELECTRONICS

More info Close

Expected prior learning: Modules EEE2033 – Circuits, Control and Communications, or equivalent learning. Knowledge of linear systems and of the basics of control engineering is particularly helpful. Module purpose: This module aims to develop a better understanding of transistor amplifiers, power semiconductor switching devices and various power converters. A detailed analysis of power converters like AC to DC phase controlled rectifiers, AC to AC, DC to DC converter & Pulse Width Modulated (PWM) inverters will be provided. In order to develop a broader understanding of this subject, a few domestic & industrial applications will be taught in this module.

View full module details

ELECTRICAL MACHINES AND POWER SYSTEMS

More info Close

This module aims to introduce the operating principles of electrical machines used in the power stations. Further this module will cover to a greater depth the concept of power transmission using interconnected grid systems, overhead and underground power transmission and distribution systems. This module is primarily intended for students on an Electrical engineering pathway but is widely available to students on other pathways so that they may get some exposure to the engineering achievement and challenges of large-scale electrical machines (generators, motors and transformers) and the operation of the power grid. Module EEE3038 Electrical Machines and Power module builds upon the electromagnetic theory covered in Level 5 module EEE2045 Electrical Science II. It shows how this leads to the design and understanding of the operation of large electrical (AC) machines – motors, generators and transformers. The module is complementary to the Level 6 module EEE3026 Power Electronics, which deals primarily with circuit level devices. Together, these modules provide a good understanding of AC electricity for students who wish to embark on a career in the electrical power industry. For students on the MEng electrical pathways, the material covered in these modules provides the fundamental knowledge required for the compulsory Level 7 modules: EEEM058 Renewable Energy Technologies and ENGM246 Wind Energy Technology. Students graduating from these programmes are well set up for careers in the burgeoning “green” industries.

View full module details

Semester 1 & 2

Compulsory

YEAR 3 PROJECT

More info Close

Expected prior/parallel learning: Appropriate background knowledge related to the project topic. Module purpose: The purpose of the Year 3 Individual Project is to prepare students for independent problem solving and independent work in engineering (or other professional environment). The module builds from the shorter projects undertaken in Year 1 (EEE1027 and EEE1028) and Year 2 (EEE2036 and EEE2037) labs, design and professional studies modules.  Students undertake an extended piece of research and development work on a particular topic over two semesters, and then present the outcomes of this work via a written Final Project Report and an oral presentation, in the form of a viva-voce examination. This module will further develop a student’s skills in planning, problem-solving and analysis, formal writing and presenting their work. For students staying on to MEng programme, this individual module feeds into the group Multidisciplinary Design project.    

View full module details

Module selection for Year 3 - FHEQ Level 6

No optional modules in Semester 1.
Select three optional modules in Semester 2.

Teaching and learning

Teaching styles vary, from large group lectures and practical laboratory sessions, to small group tutorials in your personal tutor’s office. The School’s tutorial system ensures you receive individual attention when needed.

Although the School is large, our staff are approachable and friendly, and we pride ourselves on the rapport we have with our students.

We actively encourage you to do project work outside of timetabled hours – as long as you follow safe working practices.

Learning methods

  • Laboratory work
  • Lectures
  • Practical sessions
  • Tutorials
  • Seminars
  • AI learning

Assessment

Your progress will be assessed using a variety of methods suited to the module content and activity type. These include:

  • Coursework
  • Essays
  • Examinations
  • Presentations
  • Reports.

General course information

Contact hours

Contact hours can vary across our modules. Full details of the contact hours for each module are available from the University of Surrey's module catalogue. See the modules section for more information.

Timetable

New students will receive their personalised timetable during Welcome Week. In later semesters, at least one week before the start of the semester.

Scheduled teaching can take place on any day of the week (Monday – Friday), with part-time classes normally scheduled on one or two days. Wednesday afternoons tend to be for sports and cultural activities.

View our code of practice for the scheduling of teaching and assessment (PDF) for more information.

Location

This course is based at Stag Hill campus. Stag Hill is the University's main campus and where the majority of our courses are taught. 

Career opportunities

Open Close

We offer careers information, advice and guidance to all students whilst studying with us, which is extended to our alumni for three years after leaving the University.

93%
Employability

Of our computer science and electronic engineering graduates are in employment or further study within 15 months of graduating (Graduate Outcomes 2026, HESA)

Studying for our BEng or MEng Astronautics and Space Engineering can lead to a rewarding career. It also offers an intellectually demanding and exciting opportunity to make new discoveries through research.

Graduates of our astronautics and space engineering courses are not only in demand in research and development, but also in technical sales, management, government and public services. They have a consistently strong record of gaining employment with leading companies across the electronics, information technology and communications industries.

Where do our students go?

Want to find a space or astronautical engineering job? Our graduates over the last few years have secured roles such as:

  • Electronic Engineer
  • Electronic Engineer
  • Embedded Engineer
  • Graduate Engineer
  • Leadership Engineering Associate
  • Research and Development Engineer (Software)
  • Trainee Patent Attorney.

Graduates have joined companies such as:

  • Tactiq Ltd
  • Keysight Technologies UK Ltd
  • Page White and Farrer
  • Jaguar Land Rover
  • BAE Systems
  • Paradigm Communication Ltd
  • Stanhope-Seta.

Facilities

Open Close

Extensive teaching laboratories, plus networked Linux and Windows computer suites with 24-hour access, are available to all electrical and electronic engineering undergraduates.

You’ll also have access to state-of-the-art research facilities in Year 3 if you’re completing a project linked to one of our research centres: 

We actively encourage you to do project work outside of timetabled hours – as long as you follow safe working practices. 

Students have the chance to carry out their own projects in the ‘Makerspace’ work area run by SurreyEARS (Electronics and Amateur Radio Society) with support from the School of Computer Science and Electronic Engineering. 

Entry requirements

Open Close

Learn more about the qualifications we typically accept to study this course at Surrey.


Typical offer

A-level

More info Close
  • BEng (Hons):
    • ABB
    • Required subjects: mathematics and another STEM subject
  • MEng:
    • AAA
    • Required subjects: mathematics and another STEM subject
  • BEng (Hons) with Foundation Year:
    • CCC
    • Required subjects: Mathematics and one of Chemistry, Computer Science, Electronics, Further Maths or Physics.

A-level General Studies and A-level Critical Thinking are not accepted. Applicants taking the Science Practical Endorsement are expected to pass.

GCSE or equivalent: English at grade 4 (C).

BTECs

More info Close
  • BEng (Hons):
    • DDD
    • Required subjects: A-level Mathematics grade B and BTEC Extended Diploma in Applied Science or Engineering.
  • MEng:
    • D*DD
    • Required subjects: A-level Mathematics grade B and BTEC Extended Diploma in Applied Science or Engineering.
  • BEng (Hons) with foundation year:
    • DMM.
    • Required subjects: BTEC Extended Diploma in Advanced Manufacturing Engineering, Aeronautical Engineering, Electrical and Electronic Engineering, Mechanical Engineering.
    • Additionally, a Distinction in one of the following modules: Mathematics for Engineering Technicians, Calculus to Solve Engineering Problems, Further Engineering Mathematics.

GCSE or equivalent : Maths at grade 7 and English language at grade 4 (C)

Please see the alternative qualifications guidance if you are taking a mixture of BTECs and A-levels or if you are taking other qualifications types.

International Baccalaureate Diploma

More info Close
  • BEng (Hons):
    • 33
    • Required subjects: Mathematics Analysis and Approaches HL5/SL6 or Mathematics Applications and Interpretations HL5 and HL5/SL6 in another STEM subject.
  • MEng:
    • 35
    • Required subjects: Mathematics HL6/SL7 and one of Computer Science, Computing, DT (Systems and Control), Electronics, Further Mathematics, or Physics
  • BEng (Hons) with Foundation Year:
    • 29
    • Required subjects: Mathematics analysis and approaches HL4/SL6 or mathematics applications and interpretations HL4; and additionally one of Chemistry, Computer Science, or Physics HL4/SL6.

GCSE or equivalent: English A HL4/SL4 or English B HL5/SL6.

European Baccalaureate

More info Close
  • BEng (Hons):
    • 78%
    • Required subjects: Mathematics (5 period) 7.5 and another STEM subject 7.5.
  • MEng:
    • 85%
    • Required subjects: Mathematics 8.5 and one of Computer Science, Computing, DT (Systems and Control), Electronics, Further Mathematics, or Physics.
  • BEng (Hons) with Foundation Year:

GCSE or equivalent: English Language (1/2) - 6 English Language (3) - 7.

Access to HE Diploma

More info Close
  • BEng (Hons):
    • QAA recognised Access to Higher Education Diploma with 45 level 3 credits overall including 30 at Distinction and 15 at Merit. Additionally, A-level Mathematics grade B.
    • Required subjects: Access to Higher Education modules must be in relevant subjects.
  • MEng:
    • QAA recognised Access to Higher Education Diploma with 45 Level 3 Credits at Distinction. Additionally, A-level Mathematics grade B.
    • Required subjects: Access to Higher Education modules must be in relevant subjects.
  • BEng (Hons) with Foundation Year:
    • QAA recognised Access to Higher Education Diploma with 45 level 3 credits overall including 21 credits at Distinction, 3 credits at Merit and 21 credits at Pass. Additionally, A-level Mathematics grade C.
    • Required subjects: Access to Higher Education modules must be in relevant subjects.

GCSE or equivalent: English Language at grade 4 (C).

Scottish Highers

More info Close
  • BEng (Hons):
    • AABBB
    • Required subjects: mathematics and another STEM subject.
  • MEng:
    • AAAAB
    • Required subjects: Mathematics and one of Computer Science, Computing, DT (Systems and Control), Electronics, Further Mathematics, or Physics.
  • BEng (Hons) with Foundation Year:
    • BBBCC
    • Required subjects: Mathematics and one of Chemistry, Computer Science, Further Maths or Physics..

GCSE or equivalent: Scottish National 5 for English Language grade C.

Welsh Baccalaureate

More info Close
  • BEng (Hons):
    • ABB from a combination of the Advanced Skills Baccalaureate Wales and two A-levels.
    • Required subjects: A-levels in mathematics and another STEM subject
  • MEng:
    • AAA from a combination of the Advanced Skills Baccalaureate Wales and two A-levels.
    • Required subjects: A-levels in mathematics and another STEM subject
  • BEng (Hons) with Foundation Year:
    • CCC from a combination of the Advanced Skills Baccalaureate Wales and two A-levels.
    • Required subjects: A-levels in Mathematics and one of Chemistry, Computer Science, Further Maths or Physics.

A-level General Studies and A-level Critical Thinking are not accepted. Applicants taking the Science Practical Endorsement are expected to pass.

GCSE or equivalent: English at grade 4 (C).

Extended Project Qualification (EPQ)

More info Close

This route is only applicable to the MEng course.

Applicants taking the Extended Project Qualification (EPQ) will receive our standard A-level offer, plus an alternate offer of one A-level grade lower, subject to achieving an A grade in the EPQ. The one grade reduction will not apply to any required subjects.

This grade reduction will not combine with other grade reduction policies, such as contextual admissions policy or In2Surrey.

T Level

More info Close

BEng (Hons) with foundation year:

  • T – Level with an overall grade of Pass and a grade of D in the Core Component
  • Required subjects: Design and Development for Engineering and Manufacturing, Maintenance, Installation and Repair for Engineering and Manufacturing, and Engineering, Manufacturing, Processing and Control.

GCSE or equivalent: Maths at grade 7 and English language at grade 4 (C).

Country-specific qualifications

International students in the United Kingdom

Loading...

English language requirements

IELTS Academic: 6.0 overall with 5.5 in each element.

View the other English language qualifications that we accept.

If you do not currently meet the level required for your programme, we offer intensive pre-sessional English language courses, designed to take you to the level of English ability and skill required for your studies here.

International Foundation Year

If you are an international student and you don’t meet the entry requirements for this degree, we offer the International Foundation Year at the Surrey International Study Centre. Upon successful completion, you can progress to this degree course.

More information

Selection process

We normally make offers in terms of grades.

If you are a suitable candidate you will be invited to an offer holder event. During your visit to the University you can find out more about the course and meet staff and students.

Credit Transfer and Recognition of Prior Learning

View our Code of practice for Recognition of Prior Credit and Prior Learning and further guidance: Credit Transfer and Recognition of Prior Learning - Guide for Applicants (PDF) for more information.

We recognise that many students enter their higher education course with valuable knowledge and skills developed through a range of professional, vocational and community contexts.  

If this applies to you, the recognition of prior learning (RPL) process may allow you to join a course without the formal entry requirements or enter your course at a point appropriate to your previous learning and experience. There are restrictions on RPL for some courses and fees may be payable for certain claims.  

Contextual offers

Did you know eligible students receive support through their application to Surrey, which could include a grade reduction on offer?

About contextual offers

Fees and funding

Open Close

Fees for the 2027-28 academic year

Explore UKCISA’s website for more information if you are unsure whether you are a UK or overseas student. View the list of fees for all undergraduate courses.

Standard year
£10,050
Foundation year
£10,050
Professional training year
£2,010
Standard year
£28,100
Foundation year
£28,100
Professional training year
£2,010

Professional training placement year fees are approximately 20% of the full-time UK fees of the academic year in which you undertake your placement.

Payment schedule

  • Students with Tuition Fee Loan: the Student Loans Company pay fees in line with their schedule. 
  • Students without a Tuition Fee Loan: pay their fees either in full at the beginning of the programme or in two instalments as follows:
    • 50% payable 10 days after the invoice date (expected to be during October to November of each academic year).
    • 50% in January of the same academic year. 
  • The exact date(s) will be on invoices. Students on part-time programmes where fees are paid on a modular basis cannot pay fees by instalment. 
  • Sponsored students: must provide us with valid sponsorship information that covers the period of study. 

Additional costs

There may be additional costs for writing paper and associated stationery, as well as travel, visa and accommodation costs for the placement.

Terms and conditions

When you accept an offer to study at the University of Surrey, you will be agreeing to follow our policies and procedures, student regulations, and terms and conditions.

We provide these terms and conditions at the offer stage. You will be asked to accept these when you accept the offer made to you. You will be provided with these terms and conditions again at registration by way of reminder.

Disclaimer

This online prospectus has been published in advance of the academic year to which it applies.

Whilst we have done everything possible to ensure this information is accurate; some changes may happen between publishing and the start of the course.