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Mar 5 2018

Mechanical Engineering degree: Curtin University

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Mechanical Engineering

Course overview

Mechanical engineers analyse and develop technological systems that involve motion. They help society to harness the energy and forces that exist in nature. The conception, design, manufacturing, maintenance and management of systems, ranging from micromechanical devices through to massive power-generating turbines, are all within the scope of mechanical engineering.

Modern air and ground transport systems, and thermal power generation are a few key examples of mechanical engineering accomplishments.

This course may lead to a career in the design and specification of components or entire systems, design and planning of manufacturing processes, plant operation and maintenance, consulting, project management, research and development, or management within a wide range of industries such as power generation, air conditioning, mining, mineral and material processing, transport, water supply and their support industries.

Mechanical engineers are sought for their wide breadth of skills and knowledge across a range of engineering enterprises from small companies to consultancies and large multinational corporations. Curtin s mechanical engineering graduates have the knowledge, skills and adaptability to be successful in the workplace.

What the course involves

In your first year you will completed the Engineering Foundation Year (EFY). The EFY builds a solid base of the fundamental concepts common to all areas of engineering. The EFY was developed in partnership with industry to create a curriculum that is reflective of engineering practice. After completing this common year you can select to major in mechanical engineering.

This course is fundamentally oriented to provide learning and skills development opportunities with hands-on experience. In your final year you will undertake an individual design/research project.

You will also need to complete at least 480 hours of engineering work experience in order to graduate.

As part of a double degree program, you can study Bachelor of Engineering (Mechanical Engineering) with Bachelor of Commerce (majoring in Accounting, Economics, Finance or Management)

Entry requirements for Australian and New Zealand students

Commonwealth supported What is a Commonwealth supported place (CSP)? – A CSP is subsidised by the Australian Government. They pay part of the course fees directly to Curtin and then the student pays the remainder. The student can defer this fee to their HECS-HELP loan.

All Australian students studying an undergraduate degree are automatically awarded a Commonwealth supported place.

Learn more about CSPs and whether you’re eligible by visiting the Australian Government’s StudyAssist website.

Fees are indicative first year only.

*The indicative first-year fee is calculated on 200 credit points, which is the typical full-time study load per year, however some courses require additional study to be completed, in which case the fee will be higher than that shown.

This fee is a guide only. It may vary depending on the units you choose and do not include incidental fees (such as lab coats or art supplies) or the cost of your textbooks – visit other fees and charges for more information. For more information on fees and to determine your eligibility for HECS-HELP or FEE-HELP, please visit fee basics or the Study Assist website

If you’re not an Australian citizen, permanent resident or New Zealand citizen, please see information for international students.

Graduates fulfill the stage 1 competencies stipulated by Engineers Australia (EAust) as the pathway to chartered-engineer status (CPEng).

If you have previously worked or studied in this field, you are encouraged to contact the Faculty of Science and Engineering to discuss eligibility for recognition of prior learning.

This course can help you become a:

  • Mechatronic Engineer
  • Mechanical Engineer

This study may lead to opportunities in design and specification of components or entire systems, design and planning of manufacturing processes, plant operation and maintenance, consulting, research and development, and management.

  • The course is highly directed towards developing fundamental knowledge and a generic skills-base necessary for a wide range of career opportunities in the engineering industry, management, and research and development.
  • It has a well-maintained balance between theoretical skills and practical experience with up-to-date facilities for demonstrating concepts and their applications.
  • Instruction is by highly qualified, enthusiastic and caring teaching staff with both international academic experience and industry exposure.

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