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Dynamics and Vibrations unit (ENG217)

Introduction

This unit builds upon the particle kinematics and kinetics concepts introduced in Introduction to Mechanical Engineering, extending them to rigid body dynamics, vibrations, and system modelling. Students will explore Newtonian mechanics, energy and impulse methods, and experimental validation to analyse real-world mechanical systems. Through laboratory experiments, theoretical problem-solving, and mathematical modelling, students will develop proficiency in analysing transmission systems, impact mechanisms, and oscillatory motion. 

Consideration is made on the efficiency and sustainability of dynamic systems, where students will evaluate energy losses and propose strategies to improve energy efficiency. The climate-safe engineering approach introduced in Introduction to Mechanical Engineering is reinforced here, emphasising how mechanical engineers can reduce the carbon footprint of moving systems. 

This unit provides a foundation for advanced mechanics, preparing students for Mechanical Vibrations and Advanced Dynamics in later years, where concepts will extend to three-dimensional motion, complex oscillatory systems, and vibration control. Additionally, this unit develops essential report writing and analysis skills, which will be critical in design-focused units in Years 3 and 4. 

Summary

Unit name Dynamics and Vibrations
Unit code ENG217
Credit points 12.5
College/School Sciences and Engineering
School of Engineering
Discipline Engineering
Coordinator Doctor Jason Ali-Lavroff
Available as an elective? Yes
Delivered By University of Tasmania
Level Intermediate

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

Specific information on 2027 unit availability will be available in August

Learning Outcomes

  • Solve mechanical engineering problems in two-dimensional mechanical systems involving rigid body kinematics, kinetics and vibration using principles of Newtonian mechanics.
  • Interpret experimental data from dynamic systems and compare it to theoretical models to evaluate system performance and accuracy.
  • Evaluate mechanical engineering systems and propose strategies for improved energy efficiency for reducing carbon footprint and reducing climate impact.

Fee Information

2027 fee information will be available in August.

Requisites

Prerequisites

ENG107 Mechanical Engineering Foundations AND KMA154

Teaching

Teaching Pattern

3 x 1 hour Seminar per week

1 x 1 hour Tutorial per week

3 x 2 hour Labs per semester

AssessmentTests (x2) (20%)|Examination (40%)|Laboratory / Practical Report (40%)
TimetableView the lecture timetable | View the full unit timetable

Textbooks

Required

Required readings will be listed in the unit outline prior to the start of classes.

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