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Hobart
Introduction
Mechanical Engineering Foundations introduces students to the principles of dynamics, thermal engineering, and fluid mechanics, which are essential for understanding mechanical systems. Students will explore particle and rigid body kinematics and kinetics, applying Newtonian mechanics to solve dynamic problems. In thermal engineering, students will analyse the thermal properties of substances and apply the zeroth and first laws of thermodynamics to solve energy balance problems. Fluid mechanics concepts are introduced, addressing both static fluids and fluids in motion. Students will engage in practical experimentation, comparing theoretical models with experimental data, and will participate in a design project that reinforces problem-solving and hands-on skills. This unit serves as the foundation for Dynamics and Vibrations, where students will expand their knowledge of rigid body dynamics, vibrations, and energy systems, and for Thermodynamics and Fluid Mechanics, where students will deepen their understanding of thermo-fluid systems. Additionally, students will explore the responsibilities of mechanical engineers across various industries while embedding climate-safe engineering practices. This unit encourages students to consider energy efficiency, sustainability, and system resilience to climate change impacts.
Summary
| Unit name | Mechanical Engineering Foundations |
| Unit code | ENG107 |
| Credit points | 12.5 |
| College/School | Sciences and Engineering School of Engineering |
| Discipline | Engineering |
| Coordinator | Doctor Sabrina Sequeira |
| Available as an elective? | Yes |
| Delivered By | University of Tasmania |
| Level | Introductory |
Sustainable Development Goals
The Unit Coordinator has identified that this unit aligns with the following UN Sustainable Development Goals. We welcome your thoughts and feedback on the alignment of the unit with these goals.
Availability
| Location | Study period | Attendance options | Available to | ||
|---|---|---|---|---|---|
| Hobart | Semester 2 |
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- Key:
On-campus
Off-Campus
International students
Domestic students
Note
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Units are offered in attending mode unless otherwise indicated (that is attendance is required at the campus identified). A unit identified as offered by distance, that is there is no requirement for attendance, is identified with a nominal enrolment campus. A unit offered to both attending students and by distance from the same campus is identified as having both modes of study.
Key Dates
| Study Period | Start date | Census date | WW date | End date |
|---|---|---|---|---|
| Semester 2 | 5/7/2026 | 27/7/2026 | 30/8/2026 | 24/10/2026 |
* The Final WW Date is the final date from which you can withdraw from the unit without academic penalty, however you will still incur a financial liability (refer to How do I withdraw from a unit? for more information).
Unit census dates currently displaying for 2026 are indicative and subject to change. Finalised census dates for 2026 will be available from the 1st October 2025. Note census date cutoff is 11.59pm AEST (AEDT during October to March).
Learning Outcomes
- Solve mechanical engineering dynamics problems related to particles and rigid bodies.
- Solve thermal engineering problems by applying and understanding of the principles of thermodynamics.
- Solve fluid mechanics problems by applying an understanding of the physical properties of fluids
- Conduct a hands-on activity by using engineering tools and techniques.
- Analyse mechanical engineering systems for energy efficiency and climate resilience.
Fee Information
| Field of Education | Commencing Student Contribution 1,3 | Grandfathered Student Contribution 1,3 | Approved Pathway Course Student Contribution 2,3 | Domestic Full Fee 4 |
|---|---|---|---|---|
| 030701 | $1,192.00 | $1,192.00 | not applicable | $3,401.00 |
- Available as a Commonwealth Supported Place
- HECS-HELP is available on this unit, depending on your eligibility3
- FEE-HELP is available on this unit, depending on your eligibility4
1 Please refer to more information on student contribution amounts.
2 Please refer to more information on eligibility and Approved Pathway courses.
3 Please refer to more information on eligibility for HECS-HELP.
4 Please refer to more information on eligibility for FEE-HELP.
If you have any questions in relation to the fees, please contact UniConnect or more information is available on StudyAssist.
Please note: international students should refer to What is an indicative Fee? to get an indicative course cost.
Teaching
| Teaching Pattern | Teaching is as follows:
Assessment are as follows:
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|---|---|
| Assessment | Laboratory Experiment (Practical Component and Report) (10%)|Examination (40%)|Project (Practical Component and Report) (50%) |
| Timetable | View the lecture timetable | View the full unit timetable |
Textbooks
| Required |
None |
|---|---|
| Recommended | Russell C. Hibbeler “Engineering Mechanics: Dynamics” 15th Edition, Pearson, 2022. Or any recent SI edition. Yunus A. Cengel, John M. Cimbala and Afshin J. Ghajar "Fundamentals of Thermal-Fluid Sciences", 6th Edition, McGraw-Hill. Or any recent SI edition. There are many comparable textbooks that follow a very similar sequence, and which would be suitable alternatives to the above. |
The University reserves the right to amend or remove courses and unit availabilities, as appropriate.