Electronic and Electrical Engineering students
Check eligibility →MEng (Hons) Aero-Mechanical Engineering Integrated Master's degree at Strathclyde
MEng (Hons) Aero-Mechanical Engineering at Strathclyde. Over five years of full-time study, you'll combine core theory with research methods, specialist options and an independent project, alongside professional skills development.
About this course
Aero-mechanical engineers are recognised for their knowledge and skills in conceiving, designing, implementing and operating devices, machines, engines and energy systems. From the provider’s course page.
MEng (Hons) Aero-Mechanical Engineering is an Integrated Master's degree (MEng (Hons)) at Strathclyde, based in John Anderson Campus. It runs 5 years, studied full-time.
For Mechanical engineering graduates from this provider, 95% were in work or further study 15 months after graduating, 95% in highly skilled roles, typical earnings around £32,500. (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)
Moderate evidence Published sample: 85; avoid reading small differences as meaningful. Cohort 2022-23. Graduate Outcomes work or further study 95% (2022-23; Discover Uni snapshot 2026-06-21)
Published threshold met Discover Uni suppresses continuation data below its publication threshold. Cohort 2022-23. Continuation 99% (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 7 modules
- Engineering Mechanics 1Compulsory
Module details
Knowledge of mechanics is a fundamental tool for a mechanical engineer. This introductory module aims to investigate classical mechanics - force, motion, energy, work and momentum – from a conceptual viewpoint to understand how these are connected and how they can be applied, through formal problem solving, to real-world engineering.
- Electrical CircuitsCompulsory
Module details
Mechanical systems rely upon electrical and electronic circuits for many reasons: the delivery of drive power; sensing temperature, pressure etc.; the delivery of sensor data for condition monitoring, control and operation. This module covers how external data is acquired, conditioned and used and will equip students with an understanding of the basic theories underlying electronics.
- Heat & Flow 1Compulsory
Module details
Knowledge of thermodynamics, heat and fluid flow are important for the understanding and design of thermal and hydraulic systems involving energy conversion and transmission, such as engines and turbines, pumps and compressors, and associated pipework. This module introduces the basic concepts and applications of thermodynamics and fluid mechanics, as a foundation for further studies.
- Mechanical Engineering DesignCompulsory
Module details
The aim of this module is to place the essential elements of design at the heart of courses for mechanical engineering students. It shows how the disparate elements of engineering science may be brought together and used to create a safe, durable and cost-effective solution to a perceived engineering need. This course theme continues in later years.
- Experimental & Laboratory SkillsCompulsory
Module details
This module introduces students to a range of experimental and laboratory-related skills appropriate to mechanical engineering. This includes elements of laboratory and workshop safety, including risk assessment. Students will develop an understanding of how to conduct experiments, record data, evaluate errors and write technical reports.
- Engineering Analysis & Numerical MethodsCompulsory
Module details
This module aims to teach the basic principles of programming (focused on MATLAB) and the solution of mathematical problems with numerical techniques, and to give a basic understanding of probability theory and statistics with applications and practical examples in the MATLAB environment.
- Mathematics 1MCompulsory
Module details
This module aims to review and extend the students' basic understanding of the concepts and applications of mathematical functions, differentiation, complex numbers, vectors, integration and matrices. Specifically: the mathematical foundations of algebra and geometry, vector algebra, further studies in complex numbers and fundamental calculus, including differentiation and integration. This topic continues into the second year of the programme.
Year 2 9 modules
- Flight & Spaceflight 1Compulsory
Module details
This module aims to give an introduction to aeronautical science by studying some fundamental concepts and disciplines behind the theory of flight and flying machines.
- Engineering Mechanics 2Compulsory
Module details
The second year of engineering mechanics aims to develop the skills to analyse more advanced dynamics problems associated with solid bodies and simple mechanisms and introductory knowledge in new topics of structural analysis and basic stress analysis: static equilibrium, shear force and bending moment diagrams, beams in bending, shear and torsion and 2D stress and strain.
- Electrical Machines & ControlCompulsory
Module details
Engineering students from non-electrical disciplines often require a working knowledge and appreciation of electrical power devices and their use. This module develops the theory underlying simple electrical circuit analysis, transformers and electrical motors, and seeks to develop an understanding of their application through example and laboratory work.
- Aero Design & Flight TestCompulsory
Module details
This module builds on the initial study carried out in Flight & Spaceflight 1. The taught part of the class is reinforced by flight experience and flight test. This module aims to provide an introduction to the mechanics of flight of fixed winged aircraft. Using a combination of lectures, practical simulations, and assignments, students will develop a comprehensive understanding of flight mechanics principles and their application to real-world scenarios. The module includes the mandatory flight
- Heat & Flow 2Compulsory
Module details
This module continues the study of fluid mechanics and thermodynamics. The behaviour of fluids is an important aspect in the performance of engineering systems: the underlying physics of fluid flow and its application to simple systems is presented. Thermodynamics is the science that is devoted to understanding energy in all its forms and how energy changes form; the aim of is to supply the necessary analytical tools to study these changes when applied in engineering situations, in particular fo
- Mathematical Modelling & AnalysisCompulsory
Module details
This module aims to develop the general approach to the solution of engineering problems and involves mathematical modelling, numerical methods and the application of computer software. A wide range of engineering topics is presented and includes problems in structures, dynamics, fluids and heat transfer to emphasise the general applicability of the solution processes. The integration of mathematical techniques and the use of the computer as an essential tool in the modelling, simulation and sol
- Materials Engineering & DesignCompulsory
Module details
The module aims to provide basic concepts of material science and engineering for mechanical design and materials selection. Topics include: the structure of solids, strength and stiffness of engineering materials, metals and alloys, strengthening mechanisms and heat treatment. The module also addresses non-metallic materials (ceramics, polymers and composites) and sustainability and environmental considerations in the selection of materials and the design of engineering systems.
- Mechanical Engineering Design 2Compulsory
Module details
The study of engineering design continues to develop understanding of the design process and effective design procedures. This module aims to cover two aspects of mechanical design. Firstly, to develop competency in mechanism design using the SOLIDWORKS software suite, including part creation, assembly and drawing creation competencies. Secondly, to develop competency in materials selection for engineering design, using the Ansys Granta EduPack. As part of this module, students undertake the Cer
- Mathematics 2MCompulsory
Module details
This module aims to provide students with further mathematical tools relevant to analysis of engineering systems. This includes ordinary differential equations, partial differentiation, double integration and Laplace transforms.
Year 3 6 modules
- Structural MechanicsCompulsory
Module details
This module is a continuation of the structures element of the second year module. Topics include: two-dimensional stress and strain; multi-axial elastic constitutive relations and yield criteria; general equations of elasticity leading to classic solutions for thick and thin cylindrical structures; further analysis of beams; energy methods of analysis; instability and buckling.
- Dynamics & ControlCompulsory
Module details
The first part of this module is a continuation of the dynamics element of the second year module, including principles of the kinematics of rigid bodies; equations of plane motion; angular momentum; vibration of mechanical systems with laboratory practice and demonstrations. The second part aims to introduce control theory and the modelling of linearised physical systems and design of feedback control systems.
- Engineering Analysis 3Compulsory
Module details
This continuing module aims to introduce the theory and application of the two most widely used numerical methods in engineering analysis: Finite Element Analysis (Structural & stress analysis and the commercial FEA program ANSYS) and Computational Fluid Dynamics (Analysis of flow field; recirculation zones/stagnation points; boundary layers and an introduction to the commercial CFD program FLUENT).
- Heat & Flow 3Compulsory
Module details
This module builds on the students' previous study of thermodynamics and heat transfer to cover: mixtures, psychrometry, exergy and its applications; conduction, convection and radiation in heat exchanger design. The study of the laws of conservation of mass, energy and momentum moves to a more advanced level and knowledge of fluid flow is extended to provide an appreciation of boundary layers and fluid flow in rotating machinery.
- Business Analysis in EngineeringCompulsory
Module details
This module aims to provide students with an introduction to the concept of the conscious pursuit of competitive Advantage in business, and considerations required beyond technical merit in both project level and business level decisions and their impact on engineering decisions.
- Professional ResponsibilitiesCompulsory
Module details
This module aims to create awareness of and develop skills expected in graduate professional engineers.
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
Aero-mechanical engineers develop knowledge and skills in conceiving, designing, implementing and operating devices, machines, engines and energy systems. A course like this typically begins with foundations in engineering mathematics, mechanics and materials, and practical design skills including CAD. Year 2 normally moves into thermodynamics, fluids and systems analysis, alongside group design projects and computing for simulation. From Year 3 onwards, you'll usually select from specialist options such as mechanical, electrical and electronic, civil and structural, robotics and mechatronics, energy and sustainability, or the chartered (CEng) pathway. Throughout, you'll progress toward a substantial individual project in your final year alongside professional engineering practice in safety, ethics and project management.
Who it's for
You're drawn to problems that sit at the intersection of mechanics and flight: how engines work, how structures fail, how systems perform under real-world conditions. You're comfortable with rigorous mathematics and physics, and you want to understand not just the 'what' but the 'why'. You'll thrive if you enjoy hands-on design work alongside theoretical study, and if you're prepared for sustained, challenging coursework across five years. This course suits you if you're aiming for a career in aerospace, automotive, energy or advanced manufacturing, fields where dual expertise in mechanical and aeronautical engineering opens doors.
Careers & job market
Across engineering courses nationally, 90% of graduates are in work or further study within 15 months of qualifying. Of those working, 80% are in highly skilled roles. Graduate earnings data across engineering show starting salaries of £29,000–£35,000 (15 months after graduation), rising to £33,150–£46,800 within five years, though individual outcomes vary with employer, location and specialism.
University & format
This MEng (Hons) Integrated Master's degree is studied full-time over 5 years at the University of Strathclyde, a public university founded in 1796, located at the John Anderson Campus in Glasgow. Instruction is in English. The course is recognised by the UK degree-awarding body, and degrees are nationally recognised. As an Integrated Master's, it positions you toward chartered (CEng) professional status in engineering. The university's funding pages outline bursaries and scholarships.
Student satisfaction
How students on this course answered the National Student Survey, by theme.
Share of students responding positively. Overall student satisfaction: 85%.
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.
Names detected beside accreditation or recognition copy on the provider course page; verify the route and intake.
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 | 94% |
| another higher-education qualification | 6% |
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 H421). 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. Set under Scotland's student-finance system; the provider's page is authoritative.
Check fees at Strathclyde →If you normally live in Scotland
For eligible Scottish-domiciled students at an eligible Scottish provider, SAAS can pay tuition directly. Living-cost support can combine bursary and loan and depends on household income and student circumstances. Students from elsewhere use their home funding body.
Check the current amounts with SAAS →Paying for it
- SAAS tuition payment: paid directly to the university for eligible Scottish-domiciled students, applied for through SAAS.
- Living-cost support: a mix of bursary and loan from SAAS, depending on household income.
- Repayment: only above the Scottish repayment threshold, and written off at the end of the plan term.
- Earn alongside: most students work part-time in term, part-time roles on the StudySmarter job board.
Scotland runs its own system through SAAS; check saas.gov.uk for current rates.
Scholarships & bursaries you could qualify for
Named awards published by the university. Compare the eligibility and application route before budgeting for one.
self-funded, international (non-EU) undergraduate students beginning September 2026
Check eligibility →Amounts, exclusions and deadlines can change. An award is not guaranteed unless the university confirms it.
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 | £32,500 | £30,000 – £35,500 | 85 |
| 3 years after | £34,500 | £29,500 – £40,500 | 200 |
| 5 years after | £42,500 | £36,000 – £53,000 | 210 |
Nominal earnings for graduates of this course/subject at this provider. Moderate evidence. Published sample: 85; avoid reading small differences as meaningful. 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. Moderate evidence. Published sample: 85; avoid reading small differences as meaningful. 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 · 70% of published destinations · ASHE median £50,325
- Information Technology ProfessionalsSOC 2020 213 · 10% of published destinations · ASHE median £55,357
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: 60; response rate: 55%. 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
Fees for this course are set under Scotland's own student-finance system, not the England cap; check the provider's course page for the exact figure. Tuition for eligible Scottish-domiciled students is paid by SAAS directly to the university, applied for through SAAS and not Student Finance England. Living-cost support is a mix of bursary and loan, and you repay only above the Scottish threshold.
Where graduates go
95% were in work or further study 15 months after graduating, with a median salary of £32,500. 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 9.1 out of 10: NSS 77.6% · in work or study 95% · continued 99%.
Who studies here and in this subject?
Provider- and UK subject-level context.
The University of Strathclyde
Engineering and technology across the UK
HESA student record 2024/25. Counts are rounded.
Is Engineering right for you?
Tick what applies to you and see how good a fit it is.
International students
What applying to Strathclyde from outside the UK involves: fees, English, visa, funding and living costs.
Tuition fees
International tuition is £30,950 / 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
Strathclyde offers the Faculty of Engineering International Scholarship (15% reduction in tuition fees) for international students, see Scholarships above.
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 Strathclyde and gov.uk before you apply.
Related courses
More at Strathclyde
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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