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Engineering Dynamics unit (KAA111)

Introduction

In this unit you will develop knowledge and skills for solving problems in engineering dynamics based on fundamental theory developed using Newtonian Mechanics with an introductory focus on particle kinematics and kinetics. This leads to the development of problem solving skills to determine and identify various machine motions including the kinematics of rotating and translating rigid members and planar motion of machine components. In addition students will also develop practical engineering and teamwork skills by taking part in practical activities throughout the semester. The unit prepares students for all specialisations of the degree by providing a broader overview of dynamics relevant to all disciplines of engineering.

Summary

Unit name Engineering Dynamics
Unit code KAA111
Credit points 12.5
College/School Sciences and Engineering
Sciences and Engineering Office
Discipline National Centre for Maritime Engineering and Hydrodynamics|Engineering
Coordinator Associate Professor Damien Holloway
Available as an elective? No
Delivered By University of Tasmania
Level Introductory

Availability

Specific information on 2027 unit availability will be available in August

Learning Outcomes

  • Calculate 2D motions without reference to forces using principles of planar kinematics of particles and rigid bodies.
  • Solve problems of planar kinetics of particles and rigid bodies, including simple vibration problems, using concepts of forces, accelerations, work, energy, impulse, momentum and kinematics.
  • Collect, analyse and interpret experimental data relevant to motions of rigid bodies acquired safely as an individual or part of a team.
  • Set out calculations and experimental reports following engineering norms and conventions

Fee Information

2027 fee information will be available in August.

Requisites

Prerequisites

KMA152 or JEE103

Mutual Exclusions

You cannot enrol in this unit as well as the following:

ENG105|JEE136

Teaching

Teaching Pattern

Teaching is as follows:

  • 3 hours of workshops weekly, divided into 1 x 1-hour and 1 x 2-hour sessions
  • 1 x 1-hour tutorial weekly
  • 1 x 3-hour laboratory session (week 7 or 8)

Assessment are as follows:

  • 1 x 90-minute test (week 8)
  • 1 x 20-minute Rat trap student presentation (week 5 or 6)
  • 1 x 1-hour Rat trap scrutineering session (week 12)
  • 1 x 2.5-hour Rat trap testing session (week 12)
  • 1 x 3-hour exam during exam period
 
AssessmentLaboratory/practical and report. (10%)|Weekly tutorial problems (10%)|Mid-semester test (15%)|Rat Trap Boat project (25%)|Examination (invigilated - externally) (40%)
TimetableView the lecture timetable | View the full unit timetable

Textbooks

Required

Russell C. Hibbeler “Engineering Mechanics: Dynamics” 15th Edition, Pearson, 2022.

Engineering Mechanics: Dynamics, SI Edition | ISBN 9781292451947 | Dynamics | Engineering Mechanics | Engineering | Store (pearson.com)

(Or any recent SI edition)

Recommended

There are many comparable textbooks that follow a very similar sequence, and which would be suitable alternatives to the above. Some good examples are:

  • Beer FP, Johnston ER, and Eisenberg ER, “Vector Mechanics for Engineers”, Dynamics, 12th Edition, McGraw-Hill, 2019.
  • Bedford and Fowler “Engineering Mechanics: Dynamics”
  • Meriam, Kraige and Bolton “Engineering Mechanics: Dynamics”

The University reserves the right to amend or remove courses and unit availabilities, as appropriate.