For more information please visit RMIT CSIRO Masters by Research
For more information please visit RMIT CSIRO Masters by Research
Expand all sections
Value and duration
This CSIRO-RMIT co-funded scholarship provides a stipend of $32,841 per annum (pro-rata) for two years and successful applicants will also be awarded a Tuition Fee Scholarship.
Opening date
16/02/2023
Closing date
24/12/2023
Number of scholarships available
One scholarship available
Eligibility
To be eligible for this scholarship you must: Have a first-class Honours or 2A Honours or equivalent degree in a relevant discipline of engineering/science be an Australian citizen, Australian permanent resident or an international student meeting the minimum English language requirements provide evidence of adequate oral and written communication skills demonstrate the ability to work as part of a multi-disciplinary research team meet RMIT’s entry requirements for the master by research degree
How to apply
Interested candidates should contact the RMIT supervisor by email at petros.lapp@@rmit.edu.au. Please provide the following documentation to the RMIT supervisor in your email:
- a statement to outline your interest
- an electronic copy of your academic transcripts
- a CV that includes any publications and the contact details of 2 referees.
Upon response and approval from the supervisor, you should then submit an application for ‘Admission Only’ via the Online application service.
Scholarship contact
petros.lapp@@rmit.edu.au.
Further information
A strong background in compressible flow, chemical reaction kinetics and thermodynamics is favoured.
This CSIRO-RMIT co-funded scholarship provides a stipend of $32,841 per annum (pro-rata) for two years and successful applicants will also be awarded a Tuition Fee Scholarship.
This CSIRO-RMIT co-funded scholarship provides a stipend of $32,841 per annum (pro-rata) for two years and successful applicants will also be awarded a Tuition Fee Scholarship.
16/02/2023
16/02/2023
24/12/2023
24/12/2023
One scholarship available
One scholarship available
To be eligible for this scholarship you must: Have a first-class Honours or 2A Honours or equivalent degree in a relevant discipline of engineering/science be an Australian citizen, Australian permanent resident or an international student meeting the minimum English language requirements provide evidence of adequate oral and written communication skills demonstrate the ability to work as part of a multi-disciplinary research team meet RMIT’s entry requirements for the master by research degree
To be eligible for this scholarship you must: Have a first-class Honours or 2A Honours or equivalent degree in a relevant discipline of engineering/science be an Australian citizen, Australian permanent resident or an international student meeting the minimum English language requirements provide evidence of adequate oral and written communication skills demonstrate the ability to work as part of a multi-disciplinary research team meet RMIT’s entry requirements for the master by research degree
Interested candidates should contact the RMIT supervisor by email at petros.lapp@@rmit.edu.au. Please provide the following documentation to the RMIT supervisor in your email:
- a statement to outline your interest
- an electronic copy of your academic transcripts
- a CV that includes any publications and the contact details of 2 referees.
Upon response and approval from the supervisor, you should then submit an application for ‘Admission Only’ via the Online application service.
Interested candidates should contact the RMIT supervisor by email at petros.lapp@@rmit.edu.au. Please provide the following documentation to the RMIT supervisor in your email:
- a statement to outline your interest
- an electronic copy of your academic transcripts
- a CV that includes any publications and the contact details of 2 referees.
Upon response and approval from the supervisor, you should then submit an application for ‘Admission Only’ via the Online application service.
petros.lapp@@rmit.edu.au.
petros.lapp@@rmit.edu.au.
A strong background in compressible flow, chemical reaction kinetics and thermodynamics is favoured.
A strong background in compressible flow, chemical reaction kinetics and thermodynamics is favoured.
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