Studying online

There are now 2 possible online modes for units:

Units with modes Online timetabled and Online flexible are available for any student to self-enrol and study online.

Click on an offering mode for more details.

Unit Overview

Description

This unit focuses upon the analysis and prediction of motion in engineering systems. Topics include system identification and modelling; conservation and accounting principles; and the application of these techniques to electrical circuits, particles, rigid bodies and fluids. Students learn to solve problems using a systems approach.

Credit
6 points
Details for undergraduate courses
  • Level 2 elective
Outcomes

Students are able to (1) define a suitable system and system boundary to allow engineering problems to be solved; (2) articulate the role of each component of a system in relation to the whole; (3) make appropriate assumptions to develop a system model; (4) draw schematics and free body diagrams to represent a model, and select a suitable reference frame and time scale to analyse behaviour; (5) apply conservation laws and accounting principles to simple electrical, fluid and mechanical systems; (6) evaluate differences between predicted and measured behaviour; (7) use discourse conventions relevant to the discipline; (8) locate and evaluate technical literature; (9) communicate working clearly and concisely in oral, written and visual forms; and (10) work effectively in a team and take responsibility for team outcomes.

Assessment

Indicative assessments in this unit are as follows: (1) readiness assurance; (2) project; and (3) examinations. Further information is available in the unit outline.



Student may be offered supplementary assessment in this unit if they meet the eligibility criteria.

Unit Coordinator(s)
Dr Paul Stanwix
Unit rules
Prerequisites
ENSC1002 Material Behaviour from Atoms to Bridges and (MATH1001 Mathematical Methods 1
or MATH1011 Multivariable Calculus)
Co-requisites
MATH1002 Mathematical Methods 2 (for students who have completed MATH1001 Mathematical Methods 1).
none (for students who have completed MATH1011 Multivariable Calculus)
Contact hours
lectures: 14 hours
information sessions: 2 hours per week
workshops: 2 hours per week
Recommended
reading

Beer, F. et al. Vector Mechanics for Engineers: Dynamics (SI): McGraw-Hill 2010

Cimbala, J. M. and Cengel, Y. A. Essentials of Fluid Mechanics: Fundamentals and Applications: McGraw-Hill 2007

Glover, C. et al. Conservation Principles and the Structure of Engineering: McGraw-Hill 1996

Rizzoni, G. Principles and Applications of Electrical Engineering, 5th edn: McGraw-Hill 2007

 

  • The availability of units in Semester 1, 2, etc. was correct at the time of publication but may be subject to change.
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  • Unit readings, including any essential textbooks, are listed in the unit outline for each unit, one week prior the commencement of study. The unit outline will be available via the LMS and the UWA Handbook one week prior the commencement of study. Reading lists and essential textbooks are subject to change each semester. Information on essential textbooks will also be made available on the Essential Textbooks. This website is updated regularly in the lead up to semester so content may change. It is recommended that students purchase essential textbooks for convenience due to the frequency with which they will be required during the unit. A limited number of textbooks will be made available from the Library in print and will also be made available online wherever possible. Essential textbooks can be purchased from the commercial vendors to secure the best deal. The Student Guild can provide assistance on where to purchase books if required. Books can be purchased second hand at the Guild Secondhand bookshop (second floor, Guild Village), which is located on campus.
  • Contact hours provide an indication of the type and extent of in-class activities this unit may contain. The total amount of student work (including contact hours, assessment time, and self-study) will approximate 150 hours per 6 credit points.