BEng (Hons) Aerospace Engineering including an Industrial Year Bachelor's degree at the University of Nottingham
BEng (Hons) Aerospace Engineering including an Industrial Year at University of Nottingham. Taught by researchers active in aeronautics and space, this BEng Aerospace Engineering with an Industrial Year is built around giving you both the technical depth and the sector-specific exposure needed to move confidently into aerospace…
About this course
Leading researchers in aeronautics and space teach our BEng Aerospace Engineering including an Industrial Year to provide you with the skills and advanced knowledge needed to work in this exciting sector. From the provider’s course page.
BEng (Hons) Aerospace Engineering including an Industrial Year is a Bachelor's degree (BEng (Hons)) at the University of Nottingham. It runs 4 years, studied full-time.
For Engineering graduates from this provider, 87% were in work or further study 15 months after graduating, 90% in highly skilled roles, typical earnings around £33,000. (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.
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)
Stronger evidence Published sample: 205. Cohort 2022-23. Graduate Outcomes work or further study 87% (2022-23; Discover Uni snapshot 2026-06-21)
Published threshold met Discover Uni suppresses continuation data below its publication threshold. Cohort 2022-23. Continuation 90% (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 one 6 modules
- Aerospace Design and MaterialsCore
Module details
This year long module introduces students on the Aerospace Engineering courses to the basic concepts and practices of design and manufacture in an aerospace context and includes the following topics: The process of concept generation through to detail design in an aerospace context The use of computer aided engineering tools in the design processes Part and assembly design using CATIA Basic machine elements and their function How materials, stress analysis and manufacturing disciplines fit withi
- Aerospace Electronic Engineering and ComputingCore
Module details
This year-long module provides a basic introduction to electrical and electronic devices in an aerospace engineering context. It will also introduce essential computation and programming skills to enable you to solve engineering problems. The module provides a comprehensive introduction to both analogue and digital electronics, covering topics such as electronic fundamentals, Ohm's Law and Kirchhoff's Laws. It explores the role of diodes and their applications, the operation of transistors as sw
- Aerospace Statics and DynamicsCore
Module details
This year-long module introduces students on the Aerospace Engineering courses to the fundamental concepts and principles of solid mechanics and dynamics. It covers their application to simple engineering scenarios in an aerospace context. Topics include: Review of basic mechanics: vectors, units, forces and moments, Newton's laws Static equilibrium: force and moment analysis in design; frictional forces Free body diagrams and Pin-jointed structures Stress, strain and elasticity Multi-axial str
- Aircraft Design and PerformanceCore
Module details
This year-long module introduces students on the Aerospace Engineering courses to the basic concepts and practices of aircraft design and flight mechanics. It covers the following topics: Aircraft classification and configurations Aircraft design procedures Aircraft characteristics and performance Preliminary aerodynamics analysis Flight envelopes Steady flight conditions Static stability
- Fluid Mechanics and Aircraft AerodynamicsCore
Module details
This year-long module will give you with the knowledge, concepts and principles of fluid mechanics and aerodynamics. Topics covered are: atmospheric physics standard atmosphere static pressure hydrostatics inviscid flows – conservation of mass and momentum Euler and Bernoulli equations Introduction to compressible conservation of viscous flows Introduction to shock waves lifting surfaces – aerofoil and wings basic forces pressure distributions fluid structure interaction phenomena
- Integrating Project and Maths 1Core
Module details
This year-long module comprises a number of elements and these are: Engineering maths Introduction to systems engineering Essential professional engineering elements: report writing, information searching and data analysis Essential engineering study/career support elements: Using MS Excel, Word and PowerPoint Essential project skills: team working, project management and MS Project These elements and skills will be covered to a level appropriate to first-year aerospace engineering students. In
Year two 6 modules
- Aerospace Design and ManufactureCore
Module details
This year long foundational module is a direct continuation of first year aerospace design, incorporating new information and methods as well as enabling practice of previously learned concepts. The module includes the following topics: Sustainability issues in design Design for manufacture considerations and cost Machine elements function and correct selection CNC processes Group design project with manufacture of the finished design in the January workshop slot Individual design and analysis p
- Aerospace Electrical Engineering and ApplicationsCore
Module details
This year-long module will build on basic understanding of AC and DC power and circuits to develop students' knowledge of electric drives and electrical systems for aerospace applications with awareness of security implications. We will learn how to simplify complex circuits using Thevenin's theorem, making it easier to analyse electrical systems. We'll also study nodal analysis and examples, focusing on solving circuits by determining voltages at various nodes, a key technique in circuit analys
- Aerospace Structures and DynamicsCore
Module details
The module extends and deepens knowledge of structures and dynamics with application to aerospace structures. Topics covered include: dynamics of rigid bodies vibration of single degree of freedom systems natural frequencies, transient and steady-state harmonic responses and force transmissibility Aerospace structures topics covered include: introduction to airframe, semi-monocoque structures beam bending deflection and conditions column buckling, static failure, shear stress beams shear centre,
- Flight Dynamics and ControlCore
Module details
This module extends and deepens knowledge of flight mechanics through the development of equations of motion for rigid aircraft. Ideas of equilibrium and trim are captured by determining the steady control inputs needed to fly simple steady trajectories. Based on the nonlinear equations, linearisation about a trimmed point are considered, as well as the linear dynamic response of an aircraft and basic flight control. Further, this year-long module introduces key principles of aerospace systems c
- Integrating Project and Maths 2Core
Module details
This module encompasses a number of elements including: maths, essential professional engineering skills, IT skills and essential project skills. These skills will be covered to a level appropriate to second-year aerospace engineering students. This module includes an integrating group project that draws on knowledge from the other modules delivered in this year of the course. The project goes through an entire project lifecycle from statement of requirements through concept, detail design, manu
- Thermodynamics and Aerospace PropulsionCore
Module details
You will learn fundamental thermodynamics including key underlying equation sets such as the first and second law of thermodynamics, perfect gas relationships and analysis of relevant cycles for Aerospace propulsion such as the Brayton cycle. The principles of aircraft propulsion are further developed with a focus on: jet engines including the principles of gas turbine engines layout and the application of compressible flow and turbomachinery principles Factors influencing design and choice of e
Year four 1 modules
- Year in industryCore
Module details
Subject to you meeting the relevant requirements, this year will be spent in industry. The placement year opportunity enables you to take what you've learned and apply it to real projects in a professional working environment. You will be supported by a placement tutor in securing a position and they will keep in touch during the year to see how you are getting on. The placement year can provide you with a source of income and can even lead to a job offer before you've graduated.
Year five 2 modules
- Major Individual ProjectCore
Module details
This module is a significant part of the year and provides you with the opportunity to scope, plan, manage, execute and report an individual engineering project. You will work with a project supervisor who will provide guidance and support. Module taught content supports the scoping and planning stage of the project including the development of project context and background, the development of an aim and objectives for the work proposed, project methodology, project planning and associated Gant
- Computer Modelling TechniquesCore
Module details
This module aims to provide students with a basic knowledge and understanding of the main stream computer modelling techniques used in modern engineering practice, including Finite Element, Finite Difference and Finite Volume methods. Topics covered will include: Introduction to numerical methods in engineer
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
Across the degree you'll build up through core theory and research methods, moving into applied practice as your understanding deepens. Specialist options let you focus on particular interests within aerospace engineering, such as areas connected to aeronautics and space systems, while professional skills modules run alongside the technical content to prepare you for workplace expectations. The degree culminates in an independent project, where you take ownership of a substantial piece of engineering work from start to finish, and the industrial year sits within this structure as a distinct, extended period of workplace learning rather than an add-on. Together these elements are intended to take you from foundational engineering principles through to practice that mirrors real industrial problem-solving.
Who it's for
This course suits someone who enjoys working through problems methodically, has a genuine curiosity about how aircraft and spacecraft systems are designed and behave, and doesn't mind sitting with technical detail until it makes sense. You'll likely be someone who wants to test their learning against real work rather than staying purely in an academic bubble, since the industrial year asks you to step outside university life for an extended stretch and adapt to a professional setting with its own pace and expectations. It suits people who are comfortable with a long-term commitment: four years is a bigger stretch than a standard degree, and you should be prepared for the shift between structured study and workplace responsibility that the industrial year brings. If you're drawn to precise, applied engineering work and want a clearer sense of what the aerospace sector actually involves before you graduate, this kind of course structure is likely to feel purposeful rather than daunting.
Careers & job market
Across Engineering courses nationally, 90% of graduates are in work or further study 15 months after finishing, and 80% of those working are in highly skilled roles or further study, according to Graduate Outcomes data. National LEO figures show engineering graduates typically earning between £29,000 and £35,000 at the 15-month stage, £26,775 to £37,800 after three years, and £33,150 to £46,800 after five years, these are national figures across the sector rather than salaries specific to this university or guaranteed outcomes for any individual. Nationally, 88% of students on comparable courses continue past their first year, either still enrolled or having completed their studies. An industrial year is intended to give you a head start in understanding workplace expectations in aerospace before you finish your degree, which may be relevant when you come to apply for graduate roles.
University & format
The University of Nottingham was founded in 1881 and is a member of the Russell Group of research-intensive universities. It holds a Silver award for teaching quality in the Office for Students' TEF 2023 and was. The course is studied full-time over four years, including the industrial year, and is taught in English at the University of Nottingham. Most accepted students previously held A-levels or equivalent qualifications (around 90% of entrants), with the most common UCAS tariff among accepted students falling between 144 and 159 points, this reflects typical entrant profiles rather than a stated minimum requirement.
Student satisfaction
How students on this course answered the National Student Survey, by theme.
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.
- 2027 entryCompleted applications can be submitted
Your application needs a reference before you can send it.
- 2026 entryFinal date for 2026 applications
Applications must reach UCAS by 18:00 UK time.
- 2026 entryLast day to add a Clearing choice
Check that this course still has a vacancy before adding it.
- 2027 entryEqual-consideration deadline
18:00 UK time for most undergraduate courses.
Show 5 later dates
- 2027 entryUCAS Extra opens
Applicants who used all five choices and hold no offer may be able to add another choice.
- 2027 entryLast day applications go directly to providers
Applications received after 18:00 UK time are entered into Clearing.
- 2027 entryClearing opens
Eligible applicants can see vacancies and release themselves into Clearing.
- 2027 entryFinal date for 2027 applications
Applications must reach UCAS by 18:00 UK time.
- 2027 entryLast day to add a Clearing choice
Check that this course still has a vacancy before adding it.
Provider-published requirement; check the linked course page before applying.
The provider publishes contextual-offer information. Eligibility and any reduced offer are applicant-specific.
Names detected beside accreditation or recognition copy on the provider course page; verify the route and intake.
Year in industry. Availability, selection and pay can vary.
See and book current events. Dates can fill or change.
Entry & how to get in
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
| Qualification | Share |
|---|---|
| A-levels or equivalent | 90% |
| another higher-education qualification | 10% |
| No / unknown prior qualifications | 5% |
Entry & your chances
An honest read from the official entry data, plus your personal match.
Accepted students typically held strong UCAS tariffs. Check how your predicted grades compare and whether a contextual offer applies.
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.
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.
- 1Register on UCAS Hub
Create your UCAS application and add this course (code H40A). One application covers up to five choices.
- 2Write 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.
- 3Submit by 13 January 2027, 18:00 UK time
UCAS equal-consideration deadline for most undergraduate courses. Source: UCAS 2027 dates.
- 4Reply to your offers
When decisions are in, pick a firm (first) choice and an insurance (back-up) choice with slightly lower grades.
- 5Results 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.
Fees & funding
What this course costs and how UK student finance covers it.
Tuition per year
Provider fee page (England 2026/27 cap where not stated).
Check fees at University of Nottingham →For students who normally live in England
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.
Scholarships & bursaries you could qualify for
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.
Still deciding what to study?
StudyKit brings course choice, applications and funding together in one place, with a personal AI assistant. Find what really fits you and start your UCAS application step by step.
Careers & earnings
What Engineering graduates actually earn, from real outcome data, 15 months, 3 years and 5 years after graduating.
Graduate earnings: this course
| When | Median | Typical range | Graduates |
|---|---|---|---|
| 15 months after | £33,000 | £30,000 – £36,000 | 205 |
| 3 years after | £33,500 | £29,000 – £38,000 | 445 |
| 5 years after | £41,500 | £34,500 – £52,000 | 465 |
Nominal earnings for graduates of this course/subject at this provider. Stronger evidence. Published sample: 205. Cohort 2022-23.
Graduate outcomes, 15 months on: this course
- 1Graduate roleFirst role after the degree · 0–2 yrs
- 2Specialist / PractitionerWorking in engineering · 2–5 yrs
- 3Senior / LeadLeading work and people · 5–10 yrs
- 4Head of / ExpertSenior leadership or deep expertise · 10+ yrs
How pay grows: this course vs Engineering nationally
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.
were in work or further study
15 months after graduation
Source: Discover Uni, using Graduate Outcomes and continuation data. Cohorts: 2022-23. Stronger evidence. Published sample: 205. 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.
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 · 60% of published destinations · ASHE median £50,325
- Business and public service associate professionalsSOC 2020 35 · 10% of published destinations · ASHE median £38,760
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: 100; response rate: 70%. 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.
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.
Roles graduates go into
Where they work
- Engineering & manufacturing firms
- Automotive & aerospace
- Energy & utilities
- Defence & consultancies
Jobs after this course
Current roles from the StudySmarter job board that suit Engineering graduates.
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
87% were in work or further study 15 months after graduating, with a median salary of £33,000. 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 8.7 out of 10: NSS 85.1% · in work or study 87% · continued 90%.
Who studies here and in this subject?
Provider- and UK subject-level context.
University of Nottingham
Engineering and technology across the UK
HESA student record 2024/25. Counts are rounded.
Local crime-data context
A neutral snapshot around the published teaching location.
Around The University of Nottingham
844 street-level reports returned within roughly one mile across 2026-04 to 2026-06.
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 University of Nottingham from outside the UK involves: fees, English, visa, funding and living costs.
Tuition fees
International tuition is £32,726 / 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 University of Nottingham’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 University of Nottingham and gov.uk before you apply.
Related courses
More at University of Nottingham
Common questions
How competitive is entry?
What are the entry requirements?
What do graduates go on to do?
What will it cost me?
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