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ENEG11009 - Fundamentals of Energy and Electricity

General Information

Unit Synopsis

In this unit, you will learn how to apply fundamental laws of physics related to energy and electricity using authentic engineering problems. You will be introduced to the concepts of heat, energy, work, energy conversion and laws of thermodynamics. You will apply energy principles of rotational motion, simple harmonic motion and oscillations. You will learn the concepts of voltage and current and use Kirchhoff’s laws to analyse simple direct current (DC) and alternating current (AC) electrical circuits. You will also learn the operation of electrical machines such as motors and generators and how to select a machine for a given application. Throughout this unit, you will be using experimental and measurement techniques to investigate relevant physical phenomena and learn how they can be used in practice to solve engineering problems. This unit will also provide you with opportunities to develop communication skills through collaborative teamwork and opportunities to create professional documentation through laboratory reports. In this unit, you must complete compulsory practical activities. Refer to the Engineering Undergraduate Course Moodle site for proposed dates.

Details

Level Undergraduate
Unit Level 1
Credit Points 6
Student Contribution Band SCA Band 2
Fraction of Full-Time Student Load 0.125
Pre-requisites or Co-requisites There are no pre-requisites for the unit.

Important note: Students enrolled in a subsequent unit who failed their pre-requisite unit, should drop the subsequent unit before the census date or within 10 working days of Fail grade notification. Students who do not drop the unit in this timeframe cannot later drop the unit without academic and financial liability. See details in the Assessment Policy and Procedure (Higher Education Coursework).

Class Timetable View Unit Timetable
Residential School No Residential School

Unit Availabilities from Term 1 - 2022

Term 2 - 2022 Profile
Bundaberg
Cairns
Gladstone
Mackay
Mixed Mode
Rockhampton
Term 3 - 2022 Profile
Mixed Mode
Term 2 - 2023 Profile
Bundaberg
Cairns
Gladstone
Mackay
Online
Rockhampton
Term 3 - 2023 Profile
Online
Term 2 - 2024 Profile
Bundaberg
Cairns
Gladstone
Mackay
Online
Rockhampton
Term 3 - 2024 Profile
Online

Attendance Requirements

All on-campus students are expected to attend scheduled classes – in some units, these classes are identified as a mandatory (pass/fail) component and attendance is compulsory. International students, on a student visa, must maintain a full time study load and meet both attendance and academic progress requirements in each study period (satisfactory attendance for International students is defined as maintaining at least an 80% attendance record).

Assessment Overview

Recommended Student Time Commitment

Each 6-credit Undergraduate unit at CQUniversity requires an overall time commitment of an average of 12.5 hours of study per week, making a total of 150 hours for the unit.

Assessment Tasks

Assessment Task Weighting
1. Online Test 25%
2. Practical and Written Assessment 25%
3. Online Quiz(zes) 10%
4. Take Home Exam 40%

This is a graded unit: your overall grade will be calculated from the marks or grades for each assessment task, based on the relative weightings shown in the table above. You must obtain an overall mark for the unit of at least 50%, or an overall grade of ‘pass’ in order to pass the unit. If any ‘pass/fail’ tasks are shown in the table above they must also be completed successfully (‘pass’ grade). You must also meet any minimum mark requirements specified for a particular assessment task, as detailed in the ‘assessment task’ section (note that in some instances, the minimum mark for a task may be greater than 50%).

Consult the University’s Grades and Results Policy for more details of interim results and final grades

Past Exams

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Previous Feedback

Term 2 - 2022 : The overall satisfaction for students in the last offering of this course was 68.75% (`Agree` and `Strongly Agree` responses), based on a 18.82% response rate.

Feedback, Recommendations and Responses

Every unit is reviewed for enhancement each year. At the most recent review, the following staff and student feedback items were identified and recommendations were made.

Source: Student Evaluation
Feedback
Students appreciated sending assessment deadline reminders and providing sample exam papers & solutions.
Recommendation
Continue the same practice.
Action Taken
Assessment deadlines were reminded during lectures as well as through forum posts.
Source: Student Evaluation
Feedback
Students found Mid-term exams reduced the workload to a manageable level at the end of term.
Recommendation
Continue the same practice.
Action Taken
The mid-term exam was replaced by an individual case-study analysis in this offering,
Source: Student Evaluation
Feedback
Students felt comfortable and easy to communicate with teaching staff.
Recommendation
Maintain the same practice.
Action Taken
Maintained a friendly atmosphere so that students could reach academics without hesitation.
Source: Student Evaluation
Feedback
Some students reported too much content taught within this unit.
Recommendation
This unit is under review and during this process content will be revamped.
Action Taken
The unit was reviewed and the content was revamped.
Source: Unit Coordinator Reflection
Feedback
Too much contents were condensed in the first 3 weeks.
Recommendation
Unit contents should be distributed across all weeks.
Action Taken
Nil.
Source: Unit Coordinator Reflection
Feedback
Some students found some contents taught within this unit too hard to comprehend.
Recommendation
Contents should be reviewed to suit a first-year introductory unit.
Action Taken
Nil.
Source: Unit evaluation
Feedback
Students found usefulness of unit learning materials were little bit low
Recommendation
Learning resources should be reviewed.
Action Taken
Nil.
Unit learning Outcomes

On successful completion of this unit, you will be able to:

  1. Solve well defined engineering problems in work, energy, and heat transfer
  2. Apply physical and circuit laws to find electric fields, electric potentials, and currents in Direct Current (DC) circuits
  3. Calculate simple capacitor and inductor dimensions and transient behaviour of Resistor-Capacitor (RC) and Resistor-Inductor (RL) circuits
  4. Analyse simple Alternating Current (AC) circuits
  5. Solve problems related to rotational motion and electrical machines
  6. Conduct scientific experiments to investigate physical phenomena using safe work practices
  7. Work individually and collaboratively in a team to produce professional laboratory documentation including error analyses.

The Learning Outcomes for this unit are linked with the Engineers Australia Stage 1 Competency Standards for Professional Engineers in the areas of 1. Knowledge and Skill Base, 2. Engineering Application Ability and 3. Professional and Personal Attributes at the following levels:

Introductory
1.1 Comprehensive, theory-based understanding of the underpinning natural and physical sciences and the engineering fundamentals applicable to the engineering discipline. (LO: 1N 2N 4N )
1.5 Knowledge of engineering design practice and contextual factors impacting the engineering discipline. (LO: 1N 2N 6N )
1.6 Understanding of the scope, principles, norms, accountabilities and bounds of sustainable engineering practice in the specific discipline. (LO: 6N )
2.2 Fluent application of engineering techniques, tools and resources. (LO: 7N )
1.2 Conceptual understanding of the mathematics, numerical analysis, statistics, and computer and information sciences which underpin the engineering discipline. (LO: 2I 3N 4N 5N )
1.3 In-depth understanding of specialist bodies of knowledge within the engineering discipline. (LO: 1N 2I 3N 4N 7N )
2.1 Application of established engineering methods to complex engineering problem solving. (LO: 1N 2I 3N 4N 5N )
3.2 Effective oral and written communication in professional and lay domains. (LO: 6I 7I )
3.6 Effective team membership and team leadership. (LO: 6I 7I )

Note: LO refers to the Learning Outcome number(s) which link to the competency and the levels: N – Introductory, I – Intermediate and A - Advanced.

Refer to the Engineering Undergraduate Course Moodle site for further information on the Engineers Australia's Stage 1 Competency Standard for Professional Engineers and course level mapping information
https://moodle.cqu.edu.au/course/view.php?id=1511


Alignment of Assessment Tasks to Learning Outcomes
Assessment Tasks Learning Outcomes
1 2 3 4 5 6 7
1 - Online Test
2 - Practical and Written Assessment
3 - Online Quiz(zes)
4 - Take Home Exam
Alignment of Graduate Attributes to Learning Outcomes
Introductory Level
Intermediate Level
Graduate Level
Graduate Attributes Learning Outcomes
1 2 3 4 5 6 7
1 - Communication
2 - Problem Solving
3 - Critical Thinking
5 - Team Work
6 - Information Technology Competence
Alignment of Assessment Tasks to Graduate Attributes
Introductory Level
Intermediate Level
Graduate Level
Assessment Tasks Graduate Attributes
1 2 3 4 5 6 7 8 9 10
2 - Practical and Written Assessment
1 - Online Test
3 - Online Quiz(zes)
4 - Take Home Exam