BEng (Hons) Nuclear Engineering · Lancaster UniversityBachelor's degree · 3 years
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Lancaster University · Undergraduate

BEng (Hons) Nuclear Engineering Bachelor's degree at Lancaster University

BEng (Hons) Nuclear Engineering at Lancaster University. Nuclear engineering sits at the intersection of physics, materials science and energy systems.

BEng (Hons)
Award
3
Years
Full-time
Study mode
85%
in work/study (15m)

About this course

Find out more about studying Nuclear Engineering BEng Hons (H820) at Lancaster University From the provider’s course page.

BEng (Hons) Nuclear Engineering is a Bachelor's degree (BEng (Hons)) at Lancaster University, based in Bailrigg Campus, Lancaster. It runs 3 years, studied full-time.

For Chemical, process and energy engineering graduates from this provider, 85% were in work or further study 15 months after graduating, 90% in highly skilled roles, typical earnings around £30,000. (HESA Graduate Outcomes / LEO, via Discover Uni.)

For the typical curriculum, specialisations, career paths and graduate earnings for Engineering, see the sections below.

Course evidence score

The arithmetic mean of the official measures available for this course: NSS satisfaction, graduate activity and continuation.

8.9
/ 10
Excellent
3 of 3 official measures
Student satisfaction
What students say in the National Student Survey
Excellent83

Published threshold met NSS publication requires sufficient responses; small differences are not a rank. NSS mean of 7 published themes (Discover Uni snapshot 2026-06-21)

Graduate outcomes
In work or further study 15 months after graduating
Excellent85

Limited evidence Published sample: 10; treat comparisons cautiously. Cohort 2022-23. Graduate Outcomes work or further study 85% (2022-23; Discover Uni snapshot 2026-06-21)

Continuation
Students who continue past their first year
Exceptional100

Published threshold met Discover Uni suppresses continuation data below its publication threshold. Cohort 2022-23. Continuation 100% (2022-23; Discover Uni snapshot 2026-06-21)

Curriculum & modules

Real modules published for this course, grouped only where the source gives a year, stage or level.

Year 1 6 modules
  • Applied Engineering MathematicsCore
    Module details

    In this module you will strengthen your mathematical skills and apply them to important engineering problems. Theory is presented in the context of real engineering scenarios so that both the mathematical technique itself and the engineering concept are both better understood. This includes extending integration into higher dimensions, and introducing linear algebra, including vectors and matrices, which are applied to solving problems on structural mechanics and electronic networks, for example. Methods of approximating and solving non-linear functions are discussed in order to show how hard problems can be simplified. Laplace transforms are introduced which reduce the complexity of differe

  • Engineering ScienceCore
    Module details

    This module explores the core principles of engineering science, connecting key concepts to chemical, mechanical, nuclear, and electrical/electronic systems. You will discover how physical principles associated with energy transfer, forces, kinetics, and atomic behaviour shape the function of structures, processes, and components laying the foundation for all engineering disciplines. Topics include atomic and molecular behaviour in materials, charge movement, compound formation, and reaction kinetics. You will also examine forces from electrostatic, electromagnetic, and mechanical interactions, along with their effects on displacement, stress, current flow, and the behaviour of solids and fl

  • Engineering SkillsCore
    Module details

    This module will provide you with key practical skills that will allow you to design physical components, structures and systems and create functionality across all engineering disciplines. Whether you are a chemical engineer designing a heat exchanger, or a nuclear engineer designing a reactor, all engineers need to be able to generate and understand engineering drawings. Here you will use industry standard Computer Aided Design software to realise your designs. You will also learn the formal design process so that you can create innovative and robust designs. Using a ‘Design for Manufacture’ focus, you will learn how your designs can be manufactured from a range of subtractive, additive an

  • Engineering SystemsCore
    Module details

    This module bridges engineering science with real-world applications, enabling you to design and implement industrially relevant systems. One stream focuses on sensor technology, amplifier design, and "front-end" circuits. You’ll apply electronics theory to build practical circuits and networks, exploring operational amplifiers, key components of analogue systems. You'll also develop an understanding of signals in both the time and frequency domains. Systems within the field of chemical engineering will be explored where essential concepts including batch, semi-batch, and continuous processes, as well as purge and recycle streams are fundamental. You’ll perform material balance and phase equ

  • Engineering ThermofluidsCore
    Module details

    This module introduces thermodynamics, heat transfer, and fluid dynamics, core principles that drive engineering solutions across all disciplines. Understanding how heat and fluid behave is crucial for engineers tackling real-world challenges, from designing efficient thermal management systems and heat exchangers to optimizing industrial processes. You will explore the fundamental laws governing energy transfer and fluid flow, learning how these principles apply to practical engineering scenarios. In this module theoretical concepts are reinforced through experiments and observations. By directly engaging with real-world examples, you will develop a deep understanding of the mechanisms at p

  • Fundamental Engineering MathematicsCore
    Module details

    This module covers key analytical techniques providing a foundation for all engineering programmes. Whether you are already familiar with these concepts or not, this module will bring everyone to the same level and make sure you have the mathematical tools to succeed. Techniques of primary importance to engineering such as complex numbers, differentiation and integration are covered to ensure you can understand and apply all the different methods available and solve real engineering problems during the supported sessions and beyond. This analysis is supported by practical lessons in the use of numerical techniques using tools such as MATLAB. These tools are used not only to show how techniqu

Year 2 6 modules
  • Engineering MaterialsCore
    Module details

    This module introduces the fundamentals of engineering materials, focusing on their structure, properties, and real-world applications. It covers atomic bonding, crystalline structures, defects, deformation mechanisms, and phase transformations, as well as failure analysis under complex loading conditions such as fatigue, creep, and environmental degradation. Students will also explore material characterization techniques, mechanical analysis, and material selection, with an emphasis on sustainability and lifecycle considerations. By studying this module, students will gain critical knowledge and skills to analyse material behaviour, predict failures, and select appropriate materials for eng

  • Fluid Mechanics and Mass TransferCore
    Module details

    Understanding how fluids move and how mass is transported is essential in engineering as these principles are applied across various industries, from energy production and manufacturing design to chemical and nuclear plants. In this module, you will explore the nature of fluids and their fundamental properties. You will develop a solid understanding of how fluids behave at rest (fluid mechanics) and in motion (fluid dynamics), and you will test your understanding in the lab. You will also gain insight into mass transfer principles, including molecular diffusion, convective mass transfer, and interfacial transport. These concepts are crucial for designing efficient separation processes, optim

  • Nuclear Decommissioning and DisposalCore
    Module details

    In this module, you will explore the decommissioning of nuclear facilities and the ultimate disposal of radioactive material. You will cover subjects and areas including a general introduction to the nuclear decommissioning market and related organisations, facility characterisation and final survey, the planning and costing of decommissioning projects, radiation issues, relevant aspects of health and safety, shielding, the use of Monte Carlo code in decommissioning, worker and environmental protection, demolition techniques and technologies, the use of robotics and automation in decommissioning, waste decontamination, packaging, transport and disposal, illustrative case studies of internati

  • Nuclear EngineeringCore
    Module details

    This module begins with an exploration of nuclear engineering, tracing its history through key figures like Roentgen, the Curies, Otto Hahn, and Heisenberg. You'll examine pivotal events such as the Manhattan Project, enrichment challenges, and major accidents. Fundamentals of radioactivity, neutron properties, reaction modes, and reactor designs, including Captain Rickover, Pile 1 & 2, and Magnox, will also be covered, along with shielding physics. The second section delves into nuclear chemistry, focusing on electronic structure, bonding, and oxidation-reduction processes. You’ll study uranium’s chemistry, including its oxides and fluorides. By the end, you’ll grasp core nuclear engineering

  • Power EngineeringCore
    Module details

    In this module, you will explore the fundamental concepts of electrical machines, power electronic converters and power systems. You will dive into detailed studies on a range of DC and AC machines. This includes the operating principles and control methods of brushed DC motors, brushless DC motors and induction motors. It also covers power generation with synchronous generators and induction generators. Additionally, you will explore power electronic converters, focusing on their application in solar and wind energy systems, electric vehicles and industrial actuators. You will also learn about how electrical power systems work from generation to distribution, including traditional and smart

  • Thermodynamics and Heat TransferCore
    Module details

    The module provides an integrated understanding of energy exchange mechanisms in engineering systems, focusing on heat and work transfer across different states and phases of matter. The module emphasises analysing gas and steam systems, refrigeration cycles, heat pump technologies, and reciprocating engines, enabling a competitive edge in shaping the future of sustainable energy solutions. You will understand how to measure and calculate thermodynamic properties for ideal and real fluids, analyse gas and steam systems, evaluate refrigeration and heat pump cycles and master the methods for heat transfer analysis, optimisation of energy processes and systems in consideration of heat transfer,

Year 3 5 modules
  • Engineering Management and EntrepreneurshipCore
    Module details

    In this module, you will gain essential skills in engineering management, covering key areas such as scheduling, project risk management, quality management, and cost and resource management. You will also explore entrepreneurial topics, including business model generation, market segmentation, and effective communication of business proposals. At the heart of the module is a group business proposal, where you will apply management theory from lectures and entrepreneurial workshops. Through presentations, pitches, and valuable insights from industry experts, you will develop your business ideas with creativity, innovation, and an entrepreneurial mindset, focusing on idea generation, start-ups

  • Individual ProjectCore
    Module details

    In this individual project, you will deepen your understanding of a specific engineering topic of your choice. You will conduct a detailed review of the topic, which will serve as a foundation for enhancing the technical content of your project. Depending on the nature of your work, you may need to perform computer simulations, mathematical analyses, and/or practical experiments. You will be assigned a project supervisor who is an expert in your chosen field and will provide guidance on both the technical aspects and project management. Additionally, you will receive support from academic staff, postgraduate students, and technical personnel.

  • Nuclear MedicineCore
    Module details

    In this module, you will explore advanced concepts and practical applications of reaction engineering to clean chemical synthesis, environmental protection and manufacture of commodity chemicals. Through the study of established industrially relevant processes, you will develop a comprehensive understanding and practical competence in chemical and biochemical reactors of heterogeneous systems, enabling you to design and analyse effective processes. Beginning with the kinetics concept in homogeneous chemical and biochemical systems and progressing throughout the heterogeneous systems to the transport phenomena of heat, mass and flow, you will gain hands-on experience in designing, implementin

  • Nuclear Monitoring and ProtectionCore
    Module details

    In this module you will study a range of nuclear instrumentation applications. This includes radiation detection modalities; data analysis and interpretation; the detection and measurement of energy, count level, energy spectra and dose; safety issues associated with nuclear instrumentation. Furthermore, you are given the ability to design an entire radiation detection system dependent on the scenario and are introduced to the mathematical analysis required to convert the output you might encounter from set-up to real life radiological data.

  • Power Electronics and ApplicationsCore
    Module details

    This module introduces power electronic switching devices and their role in single-phase and three-phase converters and inverters. You'll learn to analyse power electronic circuits, calculate switching losses, and design snubbers and electricity grid stabilisers. You will also learn to design medium- and high-frequency transformers for isolated power converters. You'll also develop control systems and gate drivers for power electronic devices. Beyond theory, you'll explore real-world applications, including using converters and inverters to control motors and generators in industrial settings. You'll also see how these technologies drive green energy solutions, such as wind turbines and sola

Source: provider course page. Modules can change; required/optional status, credits, descriptions and assessment are shown only when explicitly published.

Course in depth

What this course covers, who it suits and where it leads.

What you'll study

This course equips you with the scientific and engineering knowledge to work in nuclear power generation, decommissioning and related industries. You'll usually begin with core engineering foundations, mathematics, mechanics, materials and design, supported by hands-on CAD and workshop experience. In your second year, you'll move into thermodynamics, fluids and systems relevant to nuclear engineering, alongside computing and simulation, culminating in a group design project. By year three, you'll specialise in areas such as mechanical engineering, electrical and electronic systems, civil and structural engineering, robotics and mechatronics, or energy and sustainability. Throughout, you'll study professional practice, safety, ethics and project management, and complete a substantial individual research or design project as your capstone.

Who it's for

You're drawn to the physics of energy generation and the engineering challenges of nuclear systems. You think carefully about safety, regulation and long-term consequences. You're comfortable with advanced mathematics and hands-on technical work, and you want a field where your expertise directly shapes critical infrastructure. Studying nuclear engineering means engaging with complex systems, real-world constraints and the responsibility that comes with energy security. You'll work alongside peers equally committed to understanding how nuclear technology fits into the energy landscape.

Careers & job market

Across engineering courses nationally, 90% of graduates are in work or further study 15 months after leaving, with 80% in highly skilled roles or pursuing further qualifications. Nationally, engineering graduates earn £29,000–£35,000 when they start work, rising to £33,150–£46,800 within five years. The nuclear sector values engineers with this qualification; roles range from reactor design and operation to regulatory compliance and decommissioning projects. Your specific earning potential and career path depend on your choices, employer and location.

University & format

Lancaster University is a public university founded in 1964 and based on the Bailrigg Campus in Lancaster. The BEng (Hons) Nuclear Engineering degree is a 3-year full-time programme taught in English. Lancaster is a nationally recognised UK degree-awarding body, and the university received a Silver award for teaching quality in the Office for Students' TEF 2023. The course is accredited under the UCAS code H820.

Student satisfaction

How students on this course answered the National Student Survey, by theme.

The teaching on my course
85%
Learning opportunities
81%
Assessment and feedback
74%
Academic Support
92%
Organisation and management
81%
Learning resources
87%
Student voice
78%

Share of students responding positively.

Published threshold met NSS publication requires sufficient responses; small differences are not a rank. NSS mean of 7 published themes (Discover Uni snapshot 2026-06-21)

Applicant information

The next application dates for this course, followed by facts the provider publishes.

Application timelineWhat happens next
  1. 2027 entryCompleted applications can be submitted

    Your application needs a reference before you can send it.

  2. 2026 entryFinal date for 2026 applications

    Applications must reach UCAS by 18:00 UK time.

  3. 2026 entryLast day to add a Clearing choice

    Check that this course still has a vacancy before adding it.

  4. 2027 entryEqual-consideration deadline

    18:00 UK time for most undergraduate courses.

Show 5 later dates
  1. 2027 entryUCAS Extra opens

    Applicants who used all five choices and hold no offer may be able to add another choice.

  2. 2027 entryLast day applications go directly to providers

    Applications received after 18:00 UK time are entered into Clearing.

  3. 2027 entryClearing opens

    Eligible applicants can see vacancies and release themselves into Clearing.

  4. 2027 entryFinal date for 2027 applications

    Applications must reach UCAS by 18:00 UK time.

  5. 2027 entryLast day to add a Clearing choice

    Check that this course still has a vacancy before adding it.

Published entryABB typical offer

Provider-published requirement; check the linked course page before applying.

AccreditationIET, IMechE

Names detected beside accreditation or recognition copy on the provider course page; verify the route and intake.

PlacementPublished placement option

Placement year. Availability, selection and pay can vary.

Open daysOpen days and tours

See and book current events. Dates can fill or change.

Entry & how to get in

Typical offer (from the provider)The university’s course page lists a typical A-level offer of ABB. Always check the provider for the current offer and subject requirements.
Most entrants held A-levels or equivalent90% of accepted students came in with A-levels or equivalent (entrants over recent years).
Typical UCAS tariff: 112 - 127 pointsThe most common UCAS tariff band among accepted students. This is what entrants had, not a stated requirement.
Entry requirements are set by the universityGrades, subjects and contextual offers vary. Check Lancaster University's official course page for the current offer.

Who gets in

What recently admitted students actually held, official admissions data, not a stated requirement.

UCAS tariff of entrants

Grades are the A-level equivalent of each points band. Tap a band to check your own chances below.

Qualifications held on entry

QualificationShare
A-levels or equivalent90%
a foundation course10%

Entry & your chances

An honest read from the official entry data, plus your personal match.

Offer-based entry

Entry is set by the university and based on your offer. Use your predicted grades to see how you compare, then check the university's stated requirements.

Will you get in? Plot your grades

Pick your predicted A-levels and watch your UCAS points land on the real spread of students admitted to this course.

Each bar is the share of admitted students in that UCAS-points band (lower → higher). Grades show the A-level equivalent.

Add your grades to see where you land

Your points will drop onto the distribution above, with an honest above / within / below read.

Based on the official admitted-student tariff distribution. Many universities make contextual (reduced-grade) offers, so a result below the range doesn’t rule you out.

How to apply

Undergraduate applications go through UCAS. Here’s what matters for this course, the right deadline, the grades to aim for, and the steps in order.

Apply by13 January 2027, 18:00 UK timefor this course
Typical gradesBBBA-level equivalent admitted students held
UCAS codeH820quote this on your application
  1. 1
    Register on UCAS Hub

    Create your UCAS application and add this course (code H820). One application covers up to five choices.

  2. 2
    Write your personal statement

    A single statement covers all your choices, so keep it broad enough for similar courses while showing genuine interest in this subject.

  3. 3
    Submit by 13 January 2027, 18:00 UK time

    UCAS equal-consideration deadline for most undergraduate courses. Source: UCAS 2027 dates.

  4. 4
    Reply to your offers

    When decisions are in, pick a firm (first) choice and an insurance (back-up) choice with slightly lower grades.

  5. 5
    Results day & confirmation

    On results day (mid-August) your place is confirmed if you meet the offer. Just missed? Talk to the university, or find a place through Clearing.

💡 Many universities make a contextual (reduced-grade) offer, for example based on your school’s results, time in care, or where you live. Ask Lancaster University whether you’re eligible before you apply; it can lower the grades you need.

Fees & funding

What this course costs and how UK student finance covers it.

Tuition per year

Homeup to £9,790 / yr
International£33,000 / yr

Provider fee page (England 2026/27 cap where not stated).

Check fees at Lancaster University →

For students who normally live in England

illustrative Maintenance Loan per year
£9,790tuition used per year, illustrative full-time England fee-cap scenario
illustrative borrowing over 3 years

2026/27 Student Finance England figures. Maintenance support is means-tested and this two-point view is not an entitlement calculator. The course total uses its published length and home fee where both are available; a missing full-time fee uses the clearly labelled England-cap scenario, while part-time fees and unknown lengths are never guessed. Use the official calculator. Scotland, Wales and Northern Ireland use separate systems: SAAS, Student Finance Wales, and Student Finance NI.

Starting on or after 1 January 2027?

The Lifelong Learning Entitlement is a separate system. A new learner’s tuition entitlement is currently stated as £39,160 (about 480 credits at 2026/27 fee levels), subject to prior study and eligibility. Check the official LLE guide.

Paying for it

  • Tuition Fee Loan: can cover eligible tuition up to the applicable limit and is paid straight to the provider.
  • Maintenance Loan: up to £10,830/yr away from home outside London (England, 2026/27), means-tested on household income.
  • Repayment: 9% of income above £25,000, nothing below it; written off after 40 years.
  • Earn alongside: most students work part-time in term, part-time roles on the StudySmarter job board.

England figures shown; Scotland, Wales & NI run their own schemes, check gov.uk.

Funding matched to this course

Scholarships & bursaries you could qualify for

All Lancaster University funding →
No verified named award is shown for this provider yet.

That does not mean no funding exists. Check the university directory for current amounts, eligibility and application dates.

We only display a named award when its provider source identifies the award and who it is for.

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Career quizApplication walkthroughSalary & CV check

Careers & earnings

What Engineering graduates actually earn, from real outcome data, 15 months, 3 years and 5 years after graduating.

Graduate earnings: this course

WhenMedianTypical rangeGraduates
15 months after£30,000£30,000 – £34,50010
3 years after£30,000£25,500 – £36,50025
5 years after£37,000£33,500 – £44,00025

Nominal earnings for graduates of this course/subject at this provider. Limited evidence. Published sample: 10; treat comparisons cautiously. Cohort 2022-23.

Graduate outcomes, 15 months on: this course

85%
in work or further study 15 months on
90%
in highly skilled work or study
100%
continue past their first year
90%
find their work meaningful
75%
say work fits their future plans
  1. 1Graduate roleFirst role after the degree · 0–2 yrs
  2. 2Specialist / PractitionerWorking in engineering · 2–5 yrs
  3. 3Senior / LeadLeading work and people · 5–10 yrs
  4. 4Head of / ExpertSenior leadership or deep expertise · 10+ yrs

How pay grows: this course vs Engineering nationally

Starting (15 months) HESA GO
£30,000
£29,000 – £35,000
After 3 years LEO
£30,000
£26,775 – £37,800
After 5 years LEO
£37,000
£33,150 – £46,800
national rangethis course’s medianaxis £25,000 – £48,500

National figures for Engineering graduates, HESA Graduate Outcomes (15 months) and the Longitudinal Education Outcomes (LEO) dataset (3 & 5 years). These are national, not university-specific; actual pay varies by employer, region, role and experience. Different cohorts, so the bars are not one group over time.

Work out your pay

Headline figures hide a lot. Calculate realistic take-home pay for this field by role, region and experience, then check your CV before you apply.

What happened to 100 students?

Choose an outcome to translate the published percentage into a simple 100-person view. Each dot represents one percentage point, not an individual tracked student.

85 of 100

were in work or further study

15 months after graduation

55% working15% working and studying15% in further study90% in highly skilled work or study

Source: Discover Uni, using Graduate Outcomes and continuation data. Cohorts: 2022-23. Limited evidence. Published sample: 10; treat comparisons cautiously. Cohort 2022-23. Each tab is a separate published measure; categories can overlap and should not be added together.

Value compared with similar courses

How this course’s 5-year median earnings compare with Engineering courses at the same study level.

This course £37,000Peer median £38,500Middle 50% £35,500–£42,500
34th percentile

Compared with 2,256 courses with compatible official earnings data. This is a course-value comparison, not a quality ranking.

UK occupations graduates enter

Published graduate destinations, joined conservatively to UK SOC 2020, ONS pay and Skills England demand.

  • Engineering professionalsSOC 2020 212 · 45% of published destinations · ASHE median £50,325
  • Information Technology ProfessionalsSOC 2020 213 · 15% of published destinations · ASHE median £55,357
  • Conservation and environment professionalsSOC 2020 215 · 10% of published destinations · ASHE median £40,520
  • Research and Development (RandD) and Other Research ProfessionalsSOC 2020 216 · 10% of published destinations · ASHE median £52,694
  • Quality and Regulatory ProfessionalsSOC 2020 248 · 10% of published destinations · ASHE median £46,058
  • Science, engineering and technology associate professionalsSOC 2020 31 · 10% of published destinations · ASHE median £34,828

Discover Uni JOBLIST/JOBTYPE; ONS ASHE 2025 provisional, all employee jobs; Skills England Occupations in Demand 2025. SOC is shown only for an exact normalised label match; demand is shown only at exact four-digit SOC. Published sample: 35; response rate: 75%. Pay describes the occupation across workers, not a guaranteed graduate salary.

Job market & outlook

How Engineering graduates fare in the labour market, and how AI is reshaping the work.

90%
in work or further study 15 months after graduating, across Engineering courses nationally.
Graduate Outcomes
80%
of working graduates are in highly skilled work or further study.
highly skilled
88%
of students continue past their first year (still enrolled or completed).
continuation

How AI is changing the work

AI doesn't replace the profession, it shifts it: routine tasks get automated, while judgement, working with people and using AI well become more valuable.

What AI takes off your plate

  • Routine information gathering
  • First-draft writing and summaries
  • Standard analysis and admin
  • Repetitive processing tasks

More human than ever

  • Judgement and original thinking
  • Working with and leading people
  • Owning and sense-checking AI output
  • Ethics and accountability

The strongest graduates pair subject depth with the ability to use AI tools critically.

Roles & employers

Where Engineering graduates typically go, indicative destinations from graduate career data. Each role links to live openings on the StudySmarter job board.

Where they work

  • Engineering & manufacturing firms
  • Automotive & aerospace
  • Energy & utilities
  • Defence & consultancies

Is this course right for you?

The essentials UK applicants ask about: finance, outcomes, entry and quality.

💷

Student finance

For comparison, the standard full-time England tuition cap is up to £9,790 per year in 2026/27; the actual fee varies by course and provider. If you normally live in England, eligible students can apply for a Tuition Fee Loan, plus a Maintenance Loan for living costs. Under Plan 5 you repay 9% of income above £25,000, nothing below that, and the balance is written off after 40 years.

📈

Where graduates go

85% were in work or further study 15 months after graduating, with a median salary of £30,000. See the full breakdown in Careers & earnings above.

🎯

Your entry chances

Use the UCAS points calculator above to see how your predicted grades compare with admitted students, and whether a contextual offer could apply.

Official-data snapshot

Averaging the official measures published for it, this course scores 8.9 out of 10: NSS 82.6% · in work or study 85% · continued 100%.

Who studies here and in this subject?

Provider- and UK subject-level context.

The University of Lancaster

All students18,620
International22.4%
Aged 25+16.7%

Engineering and technology across the UK

Students176,530
Aged 25+23%

HESA student record 2024/25. Counts are rounded.

Local crime-data context

A neutral snapshot around the published teaching location.

Around Bailrigg Campus, Lancaster

28 street-level reports returned within roughly one mile across 2026-04 to 2026-06.

Other Theft 9Violent Crime 4Bicycle Theft 3Anti Social Behaviour 2Burglary 2

Police.uk street-level API. Approximate locations, not confined to campus. England, Wales and Northern Ireland; not Scotland.

Is Engineering right for you?

Tick what applies to you and see how good a fit it is.

International students

What applying to Lancaster University from outside the UK involves: fees, English, visa, funding and living costs.

Tuition fees

International tuition is £33,000 / year for this course (from the provider’s fee page). You’re not eligible for UK Tuition Fee or Maintenance Loans, so plan for fees plus living costs upfront.

English language

Most UK undergraduate courses ask for around IELTS 6.0–6.5 (no band below 5.5–6.0), or an accepted equivalent. If you’re just short, most universities run a pre-sessional English course that counts towards the requirement.

Student visa

You’ll usually need a Student visa (Student Route). After you accept an offer the university issues a CAS; you then show funds for fees plus about £1,023–£1,334/month living costs and pay the Immigration Health Surcharge for NHS access.

Scholarships & funding

Many universities offer international/global scholarships (often £2,000–£6,000/yr), check Lancaster University’s funding pages.

Living costs

Budget roughly £1,100–£1,400/month outside London and £1,400–£1,800/month in London for rent, food and travel; the figure also matters for your visa.

Working while you study

A Student visa usually allows up to 20 hours/week in term time and full-time in holidays, useful alongside study, though not something to rely on for fees.

Visa rules and fees change. Always confirm the current requirements with Lancaster University and gov.uk before you apply.

Common questions

Entry is offer-based and set by the university. The most common tariff band among recent entrants was 112 - 127 UCAS points. Use the calculator on this page to see where your predicted grades would put you; many universities also make lower contextual offers.
Set by Lancaster University. Most accepted students held A-levels or equivalent. Check the university's course page for the exact offer.
For Chemical, process and energy engineering graduates from this provider, 85% were in work or further study 15 months after graduating, 90% in highly skilled roles, typical earnings around £30,000. (HESA Graduate Outcomes / LEO, via Discover Uni.)
For comparison, the standard full-time England tuition cap is up to £9,790 per year in 2026/27; the actual fee varies by course and provider. If you normally live in England, eligible students can apply for a Tuition Fee Loan, plus a Maintenance Loan for living costs. Under Plan 5 you repay 9% of income above £25,000, nothing below that, and the balance is written off after 40 years. See Fees & funding on this page to work out your numbers.
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