Monash University Master of Professional Engineering
Monash University · Faculty of Engineering · Melbourne, Australia- Full time
- Clayton campus
- 3 years
- CRICOS 102717C
Tuition baseline, living, visa and estimated OSHC.
57,900 per 48 points in 2026
full-time entry level used
Monash University Australia
course-specific restrictions apply
6.0 in each component
CRICOS 102717C
What is Monash University Master of Professional Engineering?
Monash University Master of Professional Engineering is a 3 years, full-time master’s based at Clayton and focused on engineering design, systems thinking and industry practice. The standard route uses 144 credit points. The official international guide lists a 2026 annual fee baseline of AUD 57,900, approximately INR 39.8 lakh, per 48 points.
Five named engineering awards combine foundation conversion study where needed with accredited professional formation, technical depth and project work. The page plans for the longest published full-time entry level so a family does not accidentally budget only for an advanced-standing route. Monash says tuition changes by commencement year and can be adjusted each January, so the 2026 figure isn’t a fixed 2027 quote.
How much does Monash Master of Professional Engineering cost?
The planning total is AUD 291,700, approximately INR 200.4 lakh. It combines the 2026 international tuition baseline, Monash’s published Melbourne living range, the AUD 2,500 Student visa charge from 1 July 2026 and an estimated OSHC allowance. Flights and housing deposits remain outside it.
| Item | INR | Local currency | When it is due |
|---|---|---|---|
| Tuition for the full programme | INR 119.3 lakh | AUD 173,700 | Monash payment schedule |
| Living costs for 3 years | INR 77.3 lakh | AUD 112,500 | Budgeted through study |
| Student visa application | INR 1.7 lakh | AUD 2,500 | At visa application |
| OSHC planning allowance | INR 2.1 lakh | AUD 3,000 | Before CoE issue |
| Full-programme planning total | INR 200.4 lakh | AUD 291,700 | Before flights and housing deposit |
OSHC is mandatory, but the final premium depends on provider, visa length and family composition. Flights, deposits, annual tuition increases and personal contingency remain outside this total. Australian dollar items use AUD 1 equal to INR 68.6849, the 9 September 2026 historical rate. The rupee total changes with the exchange rate.
“living costs can vary enormously”Monash University cost of living guide
Monash estimates AUD 30,000 to AUD 45,000 a year for a single international student. This plan uses the midpoint. The official guide says visa-length OSHC is required before the CoE can be issued.
Tuition uses AUD 57,900 per 48 credit points for 2026 and multiplies it across the 144-point route. Monash explicitly says the 2027 fee will differ and later years can rise, so AUD 173,700 isn’t a price guarantee.
Living costs use AUD 37,500 a year, the midpoint of Monash’s AUD 30,000 to AUD 45,000 range. Housing choice creates the largest movement, with shared accommodation and a private rental producing very different cash requirements.
At the dated rate, every AUD 10,000 is about INR 6.9 lakh. A five percent rupee fall adds roughly five percent to every unpaid Australian dollar item. Education loans should therefore include currency and annual-fee headroom.
Can an Indian applicant meet Monash Master of Professional Engineering entry rules?
The course-specific screen is a recognised bachelor degree at 65% with the mathematics and science prerequisites for the chosen specialisation, or a related four-year engineering degree for the two-year route. Monash assesses an Indian qualification for Australian equivalence, so an applicant should not convert the published Monash percentage into a universal Indian cut-off.
| Requirement | Published rule | What you do |
|---|---|---|
| Academic level (India) | a recognised bachelor degree at 65% with the mathematics and science prerequisites for the chosen specialisation, or a related four-year engineering degree for the two-year route | Provide the degree certificate, full transcript and grading scale |
| Pathway length (India) | The planning route is 144 points over 3 years | Request written credit assessment before using a shorter budget |
| English Level A (India) | IELTS 6.5 overall with 6.0 in listening, reading, writing and speaking, or an accepted equivalent | Check test validity against the intended commencement date |
| Identity and study evidence (India) | Certified academic records, English evidence and any course-specific supplement | Upload documents against course code E6011 |
An Indian transcript should make the a recognised bachelor degree at 65% with the mathematics and science prerequisites for the chosen specialisation, or a related four-year engineering degree for the two-year route test easy to audit. It shouldn’t force an assessor to infer subject coverage. When titles differ, attach unit descriptions that show topics, assessed work and credit weight rather than expecting the course name to explain everything.
English Level A means IELTS 6.5 overall with no component below 6.0. PTE Academic uses 58 overall and 50 in each skill. Monash may accept other evidence, but the live rule and the offer letter control the decision.
The central risk is pathway assumption. A student who budgets for advanced standing before assessment can be short by half a year or more of tuition and living costs. Written credit confirmation belongs beside the offer.
Admission planning for CIV3285 Engineering hydrology begins by testing the published screen of a recognised bachelor degree at 65% with the mathematics and science prerequisites for the chosen specialisation, or a related four-year engineering degree for the two-year route. For Engineering hydrology, the transcript should identify preparation in engineering design, systems thinking and industry practice, assessed work and credit weight. This admissions evidence helps separate genuine prerequisite coverage from a similar-sounding course title. Reading Engineering hydrology beside Structural design identifies the sequence an assessor may expect.
Admission planning for CIV3294 Structural design begins by testing the published screen of a recognised bachelor degree at 65% with the mathematics and science prerequisites for the chosen specialisation, or a related four-year engineering degree for the two-year route. For Structural design, the transcript should identify preparation in engineering design, systems thinking and industry practice, assessed work and credit weight. This admissions evidence helps separate genuine prerequisite coverage from a similar-sounding course title. Reading Structural design beside Project as a social system identifies the sequence an assessor may expect.
Admission planning for ENG5221 Project as a social system begins by testing the published screen of a recognised bachelor degree at 65% with the mathematics and science prerequisites for the chosen specialisation, or a related four-year engineering degree for the two-year route. For Project as a social system, the transcript should identify preparation in engineering design, systems thinking and industry practice, assessed work and credit weight. This admissions evidence helps separate genuine prerequisite coverage from a similar-sounding course title. Reading Project as a social system beside Digital systems identifies the sequence an assessor may expect.
Admission planning for ECE2072 Digital systems begins by testing the published screen of a recognised bachelor degree at 65% with the mathematics and science prerequisites for the chosen specialisation, or a related four-year engineering degree for the two-year route. For Digital systems, the transcript should identify preparation in engineering design, systems thinking and industry practice, assessed work and credit weight. This admissions evidence helps separate genuine prerequisite coverage from a similar-sounding course title. Reading Digital systems beside Signals and systems identifies the sequence an assessor may expect.
Admission planning for ECE2111 Signals and systems begins by testing the published screen of a recognised bachelor degree at 65% with the mathematics and science prerequisites for the chosen specialisation, or a related four-year engineering degree for the two-year route. For Signals and systems, the transcript should identify preparation in engineering design, systems thinking and industry practice, assessed work and credit weight. This admissions evidence helps separate genuine prerequisite coverage from a similar-sounding course title. Reading Signals and systems beside Electrical circuits identifies the sequence an assessor may expect.
Admission planning for ECE2131 Electrical circuits begins by testing the published screen of a recognised bachelor degree at 65% with the mathematics and science prerequisites for the chosen specialisation, or a related four-year engineering degree for the two-year route. For Electrical circuits, the transcript should identify preparation in engineering design, systems thinking and industry practice, assessed work and credit weight. This admissions evidence helps separate genuine prerequisite coverage from a similar-sounding course title. Reading Electrical circuits beside Electrical energy systems identifies the sequence an assessor may expect.
Admission planning for ECE3051 Electrical energy systems begins by testing the published screen of a recognised bachelor degree at 65% with the mathematics and science prerequisites for the chosen specialisation, or a related four-year engineering degree for the two-year route. For Electrical energy systems, the transcript should identify preparation in engineering design, systems thinking and industry practice, assessed work and credit weight. This admissions evidence helps separate genuine prerequisite coverage from a similar-sounding course title. Reading Electrical energy systems beside Engineering electromagnetics identifies the sequence an assessor may expect.
Admission planning for ECE3121 Engineering electromagnetics begins by testing the published screen of a recognised bachelor degree at 65% with the mathematics and science prerequisites for the chosen specialisation, or a related four-year engineering degree for the two-year route. For Engineering electromagnetics, the transcript should identify preparation in engineering design, systems thinking and industry practice, assessed work and credit weight. This admissions evidence helps separate genuine prerequisite coverage from a similar-sounding course title. Reading Engineering electromagnetics beside Information and networks identifies the sequence an assessor may expect.
Admission planning for ECE3141 Information and networks begins by testing the published screen of a recognised bachelor degree at 65% with the mathematics and science prerequisites for the chosen specialisation, or a related four-year engineering degree for the two-year route. For Information and networks, the transcript should identify preparation in engineering design, systems thinking and industry practice, assessed work and credit weight. This admissions evidence helps separate genuine prerequisite coverage from a similar-sounding course title. Reading Information and networks beside Analogue electronics identifies the sequence an assessor may expect.
Admission planning for ECE3161 Analogue electronics begins by testing the published screen of a recognised bachelor degree at 65% with the mathematics and science prerequisites for the chosen specialisation, or a related four-year engineering degree for the two-year route. For Analogue electronics, the transcript should identify preparation in engineering design, systems thinking and industry practice, assessed work and credit weight. This admissions evidence helps separate genuine prerequisite coverage from a similar-sounding course title. Reading Analogue electronics beside Control system design identifies the sequence an assessor may expect.
Admission planning for ECE4132 Control system design begins by testing the published screen of a recognised bachelor degree at 65% with the mathematics and science prerequisites for the chosen specialisation, or a related four-year engineering degree for the two-year route. For Control system design, the transcript should identify preparation in engineering design, systems thinking and industry practice, assessed work and credit weight. This admissions evidence helps separate genuine prerequisite coverage from a similar-sounding course title. Reading Control system design beside Phase equilibria and phase transformations identifies the sequence an assessor may expect.
Admission planning for MTE2102 Phase equilibria and phase transformations begins by testing the published screen of a recognised bachelor degree at 65% with the mathematics and science prerequisites for the chosen specialisation, or a related four-year engineering degree for the two-year route. For Phase equilibria and phase transformations, the transcript should identify preparation in engineering design, systems thinking and industry practice, assessed work and credit weight. This admissions evidence helps separate genuine prerequisite coverage from a similar-sounding course title. Reading Phase equilibria and phase transformations beside Mechanical properties of materials identifies the sequence an assessor may expect.
Admission planning for MTE2103 Mechanical properties of materials begins by testing the published screen of a recognised bachelor degree at 65% with the mathematics and science prerequisites for the chosen specialisation, or a related four-year engineering degree for the two-year route. For Mechanical properties of materials, the transcript should identify preparation in engineering design, systems thinking and industry practice, assessed work and credit weight. This admissions evidence helps separate genuine prerequisite coverage from a similar-sounding course title. Reading Mechanical properties of materials beside Electronic and photonic materials identifies the sequence an assessor may expect.
Where a Master of Professional Engineering application can fail
The exact pathway rule
“a recognised bachelor degree at 65% with the mathematics and science prerequisites for the chosen specialisation, or a related four-year engineering degree for the two-year route”Monash course entry rule
The admissions team applies this to the complete record.A Monash percentage is not an Indian conversion table
The published 60% or 65% is on Monash’s grading scale. Institution recognition, qualification level, marks and subject evidence are assessed together.
Advanced standing changes the financial plan
A shorter Master of Professional Engineering pathway should enter the budget only after Monash confirms it. The conservative plan here covers all 144 points.
How should an Indian applicant apply for Monash Master of Professional Engineering?
Apply through the Monash international application route using course code E6011. Most course pages do not publish a fixed international closing date, so the plan is sequence-led and the live page must be checked before submission. Allow time to assemble subject evidence.
Select E6011, upload verified academic and English evidence, complete every course supplement, monitor the application, accept the exact offer and arrange OSHC before CoE issue.
| Step | Task | Allowance | Why it matters |
|---|---|---|---|
| 01 | Map the academic route | 14 days | Test the transcript against the 144-point and any shorter pathways. |
| 02 | Complete English evidence | 70 days | Secure an accepted result with every component threshold met. |
| 03 | Build the course file | 28 days | Connect prior work to engineering design, systems thinking and industry practice and complete any supplement. |
| 04 | Submit the complete application | 1 day | Use course code E6011 and retain the receipt. |
| 05 | Accept, arrange OSHC and file visa | 42 days | Use the final offer and CoE, not planning figures, for the visa file. |
The allowances are preparation estimates, not deadlines or processing times published by Monash University. Start dates remain unconfirmed.
Start with academic mapping because the Master of Professional Engineering pathway determines both workload and cost. The application should state the exact course code, intended campus and intake. It shouldn’t rely on a broad subject label.
The Genuine Student response should explain why engineering design, systems thinking and industry practice follows from prior study and career evidence. Home Affairs asks four responses with a 150-word limit each and expects supporting evidence for the claims made.
After an offer, confirm duration, tuition deposit, conditions and credit in writing. Monash requires visa-length OSHC or approved evidence before issuing the CoE, and the CoE is needed for the Student visa application.
What jobs can follow Monash Master of Professional Engineering?
Plausible directions include chemical, civil, electrical, materials or mechanical engineering practice and technical consulting. These are curriculum-based role families, not placement promises. An eligible Indian master’s graduate may receive a three-year Post-Higher Education Work stay under current Australia-India arrangements. Visa eligibility is assessed separately.
| Measure | Figure | Basis |
|---|---|---|
| Role direction | Chemical, civil, electrical, materials or mechanical engineering practice and technical consulting | Programme curriculum and assessed work |
| Portfolio target | An engineering design with requirements, calculations, safety constraints, verification and professional accountability | Inspectable programme output |
| Post-study stay for eligible Indian nationals | 3 years | Current Home Affairs AI-ECTA arrangement |
| Guaranteed job or sponsorship | None published | Employers and visa rules decide separately |
No programme-specific salary or placement rate is used for Master of Professional Engineering. Role direction depends on skills, portfolio quality, prior experience, labour demand and employer visa decisions.
The strongest employment evidence is a course project tied directly to chemical. It should expose the method, result and individual contribution rather than ask a reviewer to infer ability from Monash’s name or a list of software tools.
Students should choose units that build a coherent line from engineering design, systems thinking and industry practice to the final project, paper or placement. A scattered elective set won’t leave a clear claim to the role families listed above.
The Temporary Graduate visa is a time-limited work route, not employer sponsorship or permanent residence. Applicants must meet age, completion, health, character, insurance and application timing rules that apply when they graduate.
For the published directions of chemical, civil, electrical, materials or mechanical engineering practice and technical consulting, MTE3104 Electronic and photonic materials contributes most clearly to civil. Employers can inspect a portfolio built from Electronic and photonic materials; they can’t infer individual skill from the degree name. The assessment should record decisions, results and personal responsibility. A portfolio connecting Electronic and photonic materials to Plastics and the planet: Health, impact and sustainability gives that evidence a programme-specific sequence.
For the published directions of chemical, civil, electrical, materials or mechanical engineering practice and technical consulting, MTE2201 Plastics and the planet: Health, impact and sustainability contributes most clearly to electrical. Employers can inspect a portfolio built from Plastics and the planet: Health, impact and sustainability; they can’t infer individual skill from the degree name. The assessment should record decisions, results and personal responsibility. A portfolio connecting Plastics and the planet: Health, impact and sustainability to Plasticity of metals and alloys gives that evidence a programme-specific sequence.
For the published directions of chemical, civil, electrical, materials or mechanical engineering practice and technical consulting, MTE3102 Plasticity of metals and alloys contributes most clearly to materials or mechanical engineering practice. Employers can inspect a portfolio built from Plasticity of metals and alloys; they can’t infer individual skill from the degree name. The assessment should record decisions, results and personal responsibility. A portfolio connecting Plasticity of metals and alloys to Magnetic and spintronic materials gives that evidence a programme-specific sequence.
For the published directions of chemical, civil, electrical, materials or mechanical engineering practice and technical consulting, MTE3202 Magnetic and spintronic materials contributes most clearly to technical consulting. Employers can inspect a portfolio built from Magnetic and spintronic materials; they can’t infer individual skill from the degree name. The assessment should record decisions, results and personal responsibility. A portfolio connecting Magnetic and spintronic materials to Introduction to ceramics: Properties, processing and applications gives that evidence a programme-specific sequence.
For the published directions of chemical, civil, electrical, materials or mechanical engineering practice and technical consulting, MTE3203 Introduction to ceramics: Properties, processing and applications contributes most clearly to chemical. Employers can inspect a portfolio built from Introduction to ceramics: Properties, processing and applications; they can’t infer individual skill from the degree name. The assessment should record decisions, results and personal responsibility. A portfolio connecting Introduction to ceramics: Properties, processing and applications to Advanced materials processing and manufacturing gives that evidence a programme-specific sequence.
For the published directions of chemical, civil, electrical, materials or mechanical engineering practice and technical consulting, MTE4102 Advanced materials processing and manufacturing contributes most clearly to civil. Employers can inspect a portfolio built from Advanced materials processing and manufacturing; they can’t infer individual skill from the degree name. The assessment should record decisions, results and personal responsibility. A portfolio connecting Advanced materials processing and manufacturing to Biomaterials 2 gives that evidence a programme-specific sequence.
For the published directions of chemical, civil, electrical, materials or mechanical engineering practice and technical consulting, MTE4596 Biomaterials 2 contributes most clearly to electrical. Employers can inspect a portfolio built from Biomaterials 2; they can’t infer individual skill from the degree name. The assessment should record decisions, results and personal responsibility. A portfolio connecting Biomaterials 2 to Design 1 gives that evidence a programme-specific sequence.
For the published directions of chemical, civil, electrical, materials or mechanical engineering practice and technical consulting, MMA2001 Design 1 contributes most clearly to materials or mechanical engineering practice. Employers can inspect a portfolio built from Design 1; they can’t infer individual skill from the degree name. The assessment should record decisions, results and personal responsibility. A portfolio connecting Design 1 to Solid mechanics 1 gives that evidence a programme-specific sequence.
For the published directions of chemical, civil, electrical, materials or mechanical engineering practice and technical consulting, MMA2002 Solid mechanics 1 contributes most clearly to technical consulting. Employers can inspect a portfolio built from Solid mechanics 1; they can’t infer individual skill from the degree name. The assessment should record decisions, results and personal responsibility. A portfolio connecting Solid mechanics 1 to Thermofluids 1 gives that evidence a programme-specific sequence.
For the published directions of chemical, civil, electrical, materials or mechanical engineering practice and technical consulting, MMA2003 Thermofluids 1 contributes most clearly to chemical. Employers can inspect a portfolio built from Thermofluids 1; they can’t infer individual skill from the degree name. The assessment should record decisions, results and personal responsibility. A portfolio connecting Thermofluids 1 to Dynamics 1 gives that evidence a programme-specific sequence.
For the published directions of chemical, civil, electrical, materials or mechanical engineering practice and technical consulting, MMA2004 Dynamics 1 contributes most clearly to civil. Employers can inspect a portfolio built from Dynamics 1; they can’t infer individual skill from the degree name. The assessment should record decisions, results and personal responsibility. A portfolio connecting Dynamics 1 to Modelling and control gives that evidence a programme-specific sequence.
For the published directions of chemical, civil, electrical, materials or mechanical engineering practice and technical consulting, MMA2005 Modelling and control contributes most clearly to electrical. Employers can inspect a portfolio built from Modelling and control; they can’t infer individual skill from the degree name. The assessment should record decisions, results and personal responsibility. A portfolio connecting Modelling and control to Mechanical design 2 gives that evidence a programme-specific sequence.
How is Monash ranked for Master of Professional Engineering?
Monash is 31st overall in QS 2027. The closest published subject signal for this course is Engineering and Technology at #4 in Australia in QS 2026. Rankings compare institutions or broad subjects and do not predict admission, teaching fit, salary or migration outcomes.
| Publisher | Position | Table and year |
|---|---|---|
| QS World University Rankings | 31 | Overall 2027 |
| Relevant subject ranking | #4 in Australia in QS 2026 | Engineering and Technology |
Who is Monash Master of Professional Engineering actually for?
It suits applicants who clear the exact pathway screen, can turn engineering design, systems thinking and industry practice into assessed evidence and can fund INR 200.4 lakh without assumed earnings. It is a weak fit when a guaranteed job, scholarship or advanced-standing decision is essential to affordability.
| Verdict | Your background | Why |
|---|---|---|
| Strong fit | Direct academic match | The transcript visibly satisfies a recognised bachelor degree at 65% with the mathematics and science prerequisites for the chosen specialisation, or a related four-year engineering degree for the two-year route. |
| Strong fit | Evidence-led applicant | The planned output is an engineering design with requirements, calculations, safety constraints, verification and professional accountability. |
| Needs evidence | Adjacent degree holder | Unit descriptions and the full route may be needed before eligibility is clear. |
| Needs evidence | Funding-dependent applicant | International study grants are automatic-assessment awards, not guaranteed discounts. |
| Do not shortlist | Pathway mismatch | The default conversion route is three years and materially more expensive. Chemical and civil engineering do not offer July entry for that route, and accreditation does not remove employer licensing or experience requirements. |
| Do not shortlist | Job-dependent borrower | No guaranteed placement, salary or sponsorship supports repayment. |
Good fit joins preparation, output and finance. The transcript supports the early units, the later curriculum produces an inspectable assessment matched to a chosen career direction, and the cash plan survives the full published route.
A negative decision is sensible when the pathway screen conflicts with the applicant’s evidence or when the desired role has little connection to engineering design, systems thinking and industry practice. Reputation doesn’t remove either problem.
Applicants from India are automatically considered for eligible Monash international study grants, currently described in AUD 5,000, 10,000 or 15,000 tiers. The INR 200.4 lakh plan assumes no award until it appears in writing.
The fit decision can include MEC3416 Mechanical design 2 for a 3-year Clayton plan priced from AUD 57,900 per 48 points. The unit earns its place when it advances engineering design, systems thinking and industry practice towards materials or mechanical engineering practice. A plan dependent on unconfirmed credit or employment is not financially resilient. The cost case for Mechanical design 2 is stronger when Fluid mechanics 2 supports the same role direction.
The fit decision can include MEC3451 Fluid mechanics 2 for a 3-year Clayton plan priced from AUD 57,900 per 48 points. The unit earns its place when it advances engineering design, systems thinking and industry practice towards technical consulting. A plan dependent on unconfirmed credit or employment is not financially resilient. The cost case for Fluid mechanics 2 is stronger when Thermodynamics 2 and heat transfer supports the same role direction.
The fit decision can include MEC4408 Thermodynamics 2 and heat transfer for a 3-year Clayton plan priced from AUD 57,900 per 48 points. The unit earns its place when it advances engineering design, systems thinking and industry practice towards chemical. A plan dependent on unconfirmed credit or employment is not financially resilient. The cost case for Thermodynamics 2 and heat transfer is stronger when Advanced thermodynamics supports the same role direction.
The fit decision can include CHE5110 Advanced thermodynamics for a 3-year Clayton plan priced from AUD 57,900 per 48 points. The unit earns its place when it advances engineering design, systems thinking and industry practice towards civil. A plan dependent on unconfirmed credit or employment is not financially resilient. The cost case for Advanced thermodynamics is stronger when Advanced fluid dynamics supports the same role direction.
The fit decision can include CHE5112 Advanced fluid dynamics for a 3-year Clayton plan priced from AUD 57,900 per 48 points. The unit earns its place when it advances engineering design, systems thinking and industry practice towards electrical. A plan dependent on unconfirmed credit or employment is not financially resilient. The cost case for Advanced fluid dynamics is stronger when Advanced separation processes supports the same role direction.
The fit decision can include CHE5113 Advanced separation processes for a 3-year Clayton plan priced from AUD 57,900 per 48 points. The unit earns its place when it advances engineering design, systems thinking and industry practice towards materials or mechanical engineering practice. A plan dependent on unconfirmed credit or employment is not financially resilient. The cost case for Advanced separation processes is stronger when Advanced reaction engineering supports the same role direction.
The fit decision can include CHE5881 Advanced reaction engineering for a 3-year Clayton plan priced from AUD 57,900 per 48 points. The unit earns its place when it advances engineering design, systems thinking and industry practice towards technical consulting. A plan dependent on unconfirmed credit or employment is not financially resilient. The cost case for Advanced reaction engineering is stronger when Biomass and biorefineries supports the same role direction.
The fit decision can include CHE5882 Biomass and biorefineries for a 3-year Clayton plan priced from AUD 57,900 per 48 points. The unit earns its place when it advances engineering design, systems thinking and industry practice towards chemical. A plan dependent on unconfirmed credit or employment is not financially resilient. The cost case for Biomass and biorefineries is stronger when Process modelling and optimisation supports the same role direction.
The fit decision can include CHE5884 Process modelling and optimisation for a 3-year Clayton plan priced from AUD 57,900 per 48 points. The unit earns its place when it advances engineering design, systems thinking and industry practice towards civil. A plan dependent on unconfirmed credit or employment is not financially resilient. The cost case for Process modelling and optimisation is stronger when Food engineering and processing supports the same role direction.
The fit decision can include CHE5889 Food engineering and processing for a 3-year Clayton plan priced from AUD 57,900 per 48 points. The unit earns its place when it advances engineering design, systems thinking and industry practice towards electrical. A plan dependent on unconfirmed credit or employment is not financially resilient. The cost case for Food engineering and processing is stronger when Integrated design supports the same role direction.
The fit decision can include ENG5105 Integrated design for a 3-year Clayton plan priced from AUD 57,900 per 48 points. The unit earns its place when it advances engineering design, systems thinking and industry practice towards materials or mechanical engineering practice. A plan dependent on unconfirmed credit or employment is not financially resilient. The cost case for Integrated design is stronger when Sustainability and innovation supports the same role direction.
The fit decision can include CHE5888 Sustainability and innovation for a 3-year Clayton plan priced from AUD 57,900 per 48 points. The unit earns its place when it advances engineering design, systems thinking and industry practice towards technical consulting. A plan dependent on unconfirmed credit or employment is not financially resilient. The cost case for Sustainability and innovation is stronger when Integrated design project supports the same role direction.
What does Monash Master of Professional Engineering cover?
The current Monash Handbook publishes the units below across foundation, core, specialist, project and elective choices. The table includes every coded unit named in the course requirements, not a sample shortlist. It is a catalogue rather than one student’s study plan.
| Code | Component | Credit points | Where it sits |
|---|---|---|---|
| CHE2161 | Mechanics of fluids | 6 | |
| CHE2162 | Materials and energy balance | 6 | |
| CHE2163 | Heat and mass transfer | 6 | |
| CHE3161 | Chemistry and chemical thermodynamics | 6 | |
| CHE3162 | Process control | 6 | |
| CHE3164 | Reaction engineering | 6 | |
| CHE3165 | Separations processes | 6 | |
| CHE3166 | Process design | 6 | |
| CIV2206 | Structural mechanics | 6 | |
| CIV2242 | Geomechanics 1 | 6 | |
| CIV2263 | Water systems | 6 | |
| CIV2282 | Transport and traffic engineering | 6 | |
| CIV2235 | Structural materials | 6 | |
| CIV3285 | Engineering hydrology | 6 | |
| CIV3294 | Structural design | 6 | |
| ENG5221 | Project as a social system | 6 | |
| ECE2072 | Digital systems | 6 | |
| ECE2111 | Signals and systems | 6 | |
| ECE2131 | Electrical circuits | 6 | |
| ECE3051 | Electrical energy systems | 6 | |
| ECE3121 | Engineering electromagnetics | 6 | |
| ECE3141 | Information and networks | 6 | |
| ECE3161 | Analogue electronics | 6 | |
| ECE4132 | Control system design | 6 | |
| MTE2102 | Phase equilibria and phase transformations | 6 | |
| MTE2103 | Mechanical properties of materials | 6 | |
| MTE3104 | Electronic and photonic materials | 6 | |
| MTE2201 | Plastics and the planet: Health, impact and sustainability | 6 | |
| MTE3102 | Plasticity of metals and alloys | 6 | |
| MTE3202 | Magnetic and spintronic materials | 6 | |
| MTE3203 | Introduction to ceramics: Properties, processing and applications | 6 | |
| MTE4102 | Advanced materials processing and manufacturing | 6 | |
| MTE4596 | Biomaterials 2 | 6 | |
| MMA2001 | Design 1 | 6 | |
| MMA2002 | Solid mechanics 1 | 6 | |
| MMA2003 | Thermofluids 1 | 6 | |
| MMA2004 | Dynamics 1 | 6 | |
| MMA2005 | Modelling and control | 6 | |
| MEC3416 | Mechanical design 2 | 6 | |
| MEC3451 | Fluid mechanics 2 | 6 | |
| MEC4408 | Thermodynamics 2 and heat transfer | 6 | |
| CHE5110 | Advanced thermodynamics | 6 | |
| CHE5112 | Advanced fluid dynamics | 6 | |
| CHE5113 | Advanced separation processes | 6 | |
| CHE5881 | Advanced reaction engineering | 6 | |
| CHE5882 | Biomass and biorefineries | 6 | |
| CHE5884 | Process modelling and optimisation | 6 | |
| CHE5889 | Food engineering and processing | 6 | |
| ENG5105 | Integrated design | 6 | |
| CHE5888 | Sustainability and innovation | 6 | |
| ENG5106 | Integrated design project | 12 | |
| CHE5111 | Computer simulations for chemical engineering | 6 | |
| CHE5114 | Advanced transport processes | 6 | |
| CHE5115 | Surface phenomena | 6 | |
| CIV5121 | Building structures and technology | 6 | |
| CIV5147 | Advanced geomechanics | 6 | |
| CIV5170 | Bridge design and assessment | 6 | |
| CIV5177 | Advanced road engineering | 6 | |
| CIV5178 | Advanced water treatment | 6 | |
| CIV5888 | Advanced computational methods | 6 | |
| ENG5200 | Engineering project risk management | 6 | |
| ECE5122 | Advanced electromagnetics | 6 | |
| ECE5143 | Optical communications | 6 | |
| ECE5145 | Network performance | 6 | |
| ECE5155 | Power electronic converters | 6 | |
| ECE5882 | Advanced electronics design | 6 | |
| ECE5883 | Advanced signal processing | 6 | |
| ECE5884 | Wireless communications | 6 | |
| ECE5886 | Smart grids | 6 | |
| MTE5881 | Applied crystallography in advanced materials characterisation | 6 | |
| MTE5882 | Advanced polymeric materials | 6 | |
| MTE5883 | Environmental durability and protection of metals and engineering materials | 6 | |
| MTE5884 | Advanced photovoltaics and energy storage | 6 | |
| MTE5885 | Biomaterials and biomechanics | 6 | |
| MTE5886 | Additive manufacturing of metallic materials | 6 | |
| MTE5887 | Additive manufacturing of polymers and functional materials | 6 | |
| MEC5156 | Advanced robotics in manufacturing | 6 | |
| MEC5881 | Engineering systems performance analysis | 6 | |
| MEC5882 | Instrumentation, sensing and monitoring | 6 | |
| MEC5883 | Mechanical systems design | 6 | |
| MEC5884 | Sustainable engineering systems | 6 | |
| MEC5885 | Energy efficiency and sustainability engineering | 6 | |
| MEC5888 | Renewable energy systems | 6 | |
| ENG5002 | Engineering entrepreneurship | 6 | |
| CHE5321 | Advanced bioprocess technology | 6 | |
| CHE5322 | Advanced biochemical engineering | 6 | |
| CHE5883 | Nanostructured membranes for separation and energy production | 6 | |
| CHE5886 | Advanced biopolymers | 6 | |
| ENG5008 | Industry experience | 6 | |
| MON5750 | Monash Innovation Guarantee | 6 | |
| CIV5136 | Structural analysis | 6 | |
| CIV5302 | Traffic engineering and management | 6 | |
| CIV5305 | Travel demand modelling | 6 | |
| CIV5314 | Planning urban transport systems | 6 | |
| CIV5883 | Surface water hydrology | 6 | |
| CIV5884 | Water sensitive stormwater design | 6 | |
| CIV5885 | Infrastructure dynamics | 6 | |
| CIV5887 | Infrastructure rehabilitation and monitoring | 6 | |
| CIV5899 | Infrastructure information management | 6 | |
| ENE5043 | Quantifying sustainability in urban systems | 6 | |
| ENE5044 | AI applications for civil and environmental engineers | 6 | |
| ENG5331 | Railway engineering | 6 | |
| ECE5146 | Multimedia technologies | 6 | |
| ECE5153 | Power system analysis | 6 | |
| ECE5156 | Advanced power electronics | 6 | |
| ECE5176 | Computer vision | 6 | |
| ECE5178 | Intelligent robotics | 6 | |
| ECE5179 | Neural networks and deep learning | 6 | |
| MEC5891 | Design for additive manufacturing | 6 | |
| MEC5897 | Lean manufacturing | 6 | |
| MTE5190 | Advanced materials modelling | 6 | |
| MTE5193 | Materials and sustainability | 6 | |
| MTE5194 | Engineering alloy design, processing and selection | 6 | |
| MTE5197 | Engineering with nanomaterials | 6 | |
| ENG5001 | Advanced data analytics for engineers | 6 | |
| ENG5005 | Research methods | 6 | |
| ENG5006 | Research practice | 6 | |
| ENG5100 | Professional engineer in organisation and society | 6 | |
| ENG0003 | Continuous Professional Development | 0 | |
| Total | 144 |
The note “Published core, option or project unit” applies to 119 components in this table.
- The conservative route contains 144 credit points over 3 years full time.
- Most units carry 6 points unless the Handbook states otherwise.
- Elective availability, prerequisites, sequencing and campus delivery remain controlled by the current Handbook and timetable.
The structure should be read as a set of routes rather than a promise that every listed option can fit one study plan. Prerequisites, specialisation rules and the choice between industry and research components narrow the actual enrolment set.
A coherent Master of Professional Engineering plan begins with the target output and works backwards. Units should combine into a defensible final project for the chosen role direction while satisfying all compulsory points and progression rules.
Should an Indian applicant shortlist Monash Master of Professional Engineering?
Shortlist Master of Professional Engineering when prior study clears its exact academic screen and the planned output is an engineering design with requirements, calculations, safety constraints, verification and professional accountability. The full-programme budget here is INR 200.4 lakh with no scholarship or part-time earnings assumed.
The decision should turn on fit between prior evidence and engineering design, systems thinking and industry practice. Monash publishes a flexible route, but the degree doesn't create value unless unit choices lead to a coherent assessed output that an employer or later researcher can inspect.
The strongest reason not to apply is specific. The default conversion route is three years and materially more expensive. Chemical and civil engineering do not offer July entry for that route, and accreditation does not remove employer licensing or experience requirements. A ranking can't repair that mismatch or make an unaffordable plan safe.
- Monash Master of Professional Engineering is planned here as a 3 years, full-time course with 144 points.
- The official 2026 international fee baseline is AUD 57,900 per 48 credit points.
- The full-programme planning total is AUD 291,700, approximately INR 200.4 lakh.
- English Level A means IELTS 6.5 overall with no component below 6.0.
- The course code is E6011 and the CRICOS code is 102717C.
- An eligible Indian master's graduate may receive a three-year post-study work stay under current rules.
Frequently asked questions
How much is Monash Master of Professional Engineering for Indian students?
The conservative plan is AUD 291,700, about INR 200.4 lakh. It includes AUD 173,700 tuition using the 2026 annual baseline, AUD 112,500 living costs, the AUD 2,500 visa charge and an AUD 3,000 OSHC allowance. Flights, deposits and future fee rises are extra.
Is Monash Master of Professional Engineering full time?
Yes. This page covers the full-time Clayton route and budgets for 3 years with 144 credit points. Monash may award a shorter pathway after assessing prior qualifications, but an applicant should not reduce the budget until that decision appears in the formal offer or credit outcome.
What are the entry requirements for Monash Master of Professional Engineering?
The published screen is a recognised bachelor degree at 65% with the mathematics and science prerequisites for the chosen specialisation, or a related four-year engineering degree for the two-year route. The percentage is expressed on Monash's grading scale, so Indian marks are assessed with the awarding institution, qualification level, transcript and subject evidence. A direct percentage conversion should not be assumed before Monash reviews the file.
What IELTS score does Monash Master of Professional Engineering require?
The course uses Monash English Level A. IELTS Academic requires 6.5 overall and at least 6.0 in listening, reading, writing and speaking. PTE Academic requires 58 overall and at least 50 in every skill. Test validity and accepted alternatives must be checked for the actual start date.
When does Monash Master of Professional Engineering start?
The published intake pattern is February and July with restrictions. This guide treats 2027 as the planning cycle but does not invent a general closing date. Capacity and pathway restrictions can affect availability, so submit a complete file early and verify the live course page before paying or booking travel.
Can I work in Australia after Monash Master of Professional Engineering?
An eligible Indian national completing an Australian master's may receive a three-year Post-Higher Education Work stay under current Australia-India arrangements. This is a temporary visa, not a job, sponsorship or permanent residence guarantee. The graduate must satisfy the rules in force when applying.
Sources
These sources support the programme, admission, cost, experience and immigration information used on this page.
Sources checked on September 11, 2026. This page uses February and July with restrictions 2027 only as a planning cycle. The university has not published dates for that cycle.
| No. | Source | Evidence role |
|---|---|---|
| 01 | Monash University Master of Professional Engineering course page | Core programme evidence |
| 02 | Monash Handbook E6011 course requirements | Core programme evidence |
| 03 | Monash 2027 international graduate course guide with 2026 fee baselines | Core programme evidence |
| 04 | Monash University rankings | Core programme evidence |
| 05 | Monash University Melbourne cost of living guide | Core programme evidence |
| 06 | Monash international study grants | Core programme evidence |
| 07 | Monash international application process | Core programme evidence |
| 08 | Australian Home Affairs Genuine Student requirement | Core programme evidence |
| 09 | Australian Home Affairs Student visa | Core programme evidence |
| 10 | Study Australia Student visa application charge | Core programme evidence |
| 11 | Australian Home Affairs Temporary Graduate visa | Core programme evidence |
| 12 | ExchangeRates.org.uk AUD to INR historical rate | Core programme evidence |
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