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full-time employment. You can apply to join
companies within Australia or overseas.
In the final year of your studies you will
undertake a major project that is either
industry based or simulates an industrial
situation.
What you’ll study
The program offers specialisations centred on
the following:
»» computer-aided engineering and design
»» industrial aerodynamics and
computational fluid dynamics
»» energy conservation and renewable energy
»» mechatronics, dynamics and control.
The degree has strong design and analysis
elements, applied to real-world industry
problems. There are specialised course areas
in engineering design, computational
engineering, dynamics, CAD, heat transfer,
renewable energy, mechatronics and control
engineering. The degree has a common core
with the automotive engineering degree for
the first four semesters and shares some
specialist electives.
Professional practice courses integrate
design and build activities, computing skills,
industrial practice, ethics studies,
sustainability considerations, report writing
and other communication skills with
development of organisational, personal and
interpersonal skills. You will work together in
groups, which will require organisational,
planning and reporting skills.
The major project, normally undertaken in
final year, and some engineering design
courses are frequently linked with industry.
Career outlook
Job opportunities exist in the design,
manufacture and testing of Australian-built
cars; the design, specification and installation
of large air conditioning systems; the design
of materials handling systems in the
packaging and mining industries; power
generation; construction and maintenance in
the petrochemical industry; the design of
Victoria’s trains; computerised control in the
pharmaceutical industry; the aeronautical
industry; the implementation of new
manufacturing methods in the electronics
industry; the development of engineering
computer software; research and
development in industry and other technical
institutions; technical sales in the marketing
divisions of engineering companies; and
engineering management in large and small
organisations, both in Australia and overseas.
Professional recognition
The RMIT degree satisfies the requirements
for graduate membership of Engineers
Australia. Graduates are therefore recognised
as professional engineers in all member
countries of the Washington Accord.
Corporate membership may be gained after
a period of approved professional experience.
As a graduate of this degree, you may also
be eligible to join professional bodies relevant
to your area of specialisation.
www.engineersaustralia.org.au
www.washingtonaccord.org
Application and entrance procedures
Application procedure
VTAC application
Entrance requirements
Current Year 12
2010 ENTER/ATAR: 85.55
Prerequisites: units 3 and 4—English (any)
and mathematical methods (either).
Non-Year 12
Prerequisite: none.
Please refer to page 57 for more details.
Extra requirements
Non-Year 12 applicants must complete and
submit a VTAC Pi form, available online at
www.vtac.edu.au , if they wish other
information to be considered.
Please refer to the 2011 VTAC Guide for
full details on extra requirements.
Pathway
Graduates of the following programs may
be eligible to apply for exemptions of up to
two years:
»» Associate Degree in Engineering
Technology (Mechanical)
»» Advanced Diploma of Engineering
Technology (Mechanical)
You may also be interested in…
»» Aerospace engineering (page 3)
»» Automotive engineering (page 12)
»» Manufacturing and mechantronics
(page 42)
»» Mechanical engineering and management
(page 45)
44 RMIT | 2011 Degree and Diploma | Engineering
Mechanical engineering
and management D
BP068 Bachelor of Engineering
(Mechanical Engineering) and
Bachelor of Business
(Management) double degree
Duration: 5 yrs FT
Years one, two and three are conducted at the City
campus, and years four and five are conducted at
the Bundoora and City campuses. The business
(management) component is studied at the City
campus for all five years.
City and Bundoora
Mechanical engineering involves the conversion
and control of energy and motion in machinery
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