SEM202 - Thermodynamics

Unit details

Year:

2024 unit information

Offering information:

Available at the Burwood (Melbourne) campus from 2025

Enrolment modes:Trimester 2: Waurn Ponds (Geelong), Online
Credit point(s):1
EFTSL value:0.125
Previously coded as:SEM314
Unit Chair:Trimester 2: Subrat Das
Prerequisite:

SIT199 and SIT194; and one unit from SEB101 or SEP101

Corequisite:

SEE010 or SEJ010

Incompatible with: SEM314
Typical study commitment:

Students will on average spend 150 hours over the teaching period undertaking the teaching, learning and assessment activities for this unit.

This will include educator guided online learning activities within the unit site.

Educator-facilitated (scheduled) learning activities - on-campus unit enrolment:

1 x 2 hour seminar per week, 1 x 5 hour practical experience (laboratory) per trimester. All students are required to attend and participate in practical activities for this unit at scheduled sessions during the trimester.

Educator-facilitated (scheduled) learning activities - online unit enrolment:

Online independent and collaborative learning including 1 x 2 hour seminar per week, 1 x 5 hour practical experience (laboratory) per trimester. Students are required to attend and participate in practical experience (laboratory) activities at the Waurn Ponds (Geelong) Campus for the scheduled sessions during the trimester as detailed in the unit site.

Content

This unit introduces fundamental concepts, laws and definitions relevant to thermodynamics. Case studies will be used to demonstrate how to apply equations and tools commonly used in this field to practical problems, such as engines and steam power plants. Students will learn experimental techniques to determine important thermodynamic measurements and reinforce fundamental concepts.

ULO These are the Learning Outcomes (ULO) for this unit. At the completion of this unit, successful students can: Deakin Graduate Learning Outcomes
ULO1

Develop a clear understanding of thermodynamic systems, principles and laws.

GLO1: Discipline-specific knowledge and capabilities

ULO2

Demonstrate an ability to use thermodynamic cycles and specialist tools such as steam tables and charts.

GLO1: Discipline-specific knowledge and capabilities
GLO4: Critical thinking
GLO5: Problem solving

ULO3

Apply conservation principles to both closed and open systems (IC engines, gas and steam cycles and refrigeration system etc.).

GLO4: Critical thinking
GLO5: Problem solving
GLO6: Self-management
GLO7: Teamwork

ULO4

Interpret and communicate experimental data in a technical format.

GLO1: Discipline-specific knowledge and capabilities
GLO4: Critical thinking

Assessment

Assessment Description Student output Grading and weighting
(% total mark for unit)
Indicative due week

Assessment 1
Problem solving tasks 1 and 2

Two written reports and sketches 20% (2 x 10%) Weeks 4 and 7

Assessment 2
Online quiz

Online multiple choice quiz 10% Week 10

Assessment 3
Laboratory work

Laboratory work and individual written report 20% Week 11
End-of-Unit Assessment  Timed online test 50% End-of-Unit Assessment Period

The assessment due weeks provided may change. The Unit Chair will clarify the exact assessment requirements, including the due date, at the start of the teaching period.

Hurdle requirement

To be eligible to obtain a pass in this unit, students must achieve an overall mark of at least 40% in the End-of-Unit assessment, and a mark of at least 40% in the practical experience (laboratory) work and report.

Learning Resource

Prescribed text(s): Cengel & Boles, 2023, Thermodynamics: An Engineering Approach, 10th ISE edition (or 9th edition), McGraw-Hill.

The texts and reading list for the unit can be found on the University Library via the link below: SEM202 Note: Select the relevant trimester reading list. Please note that a future teaching period's reading list may not be available until a month prior to the start of that teaching period so you may wish to use the relevant trimester's prior year reading list as a guide only.

Unit Fee Information

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