Unit of competency Outline
Date retreived
22/07/2026 4:57 PM AWST
22/07/2026 4:57 PM AWST
Whilst all efforts are made to provide accurate and timely information from the relevant source/documentation, please be aware that the information supplied may not be the most current version. The accuracy of the detail has not been confirmed by the Department and therefore should not be relied upon without first confirming the contents.
Apply advanced scientific principles and techniques in avionic engineering situations
Apply advanced scientific principles and techniques in avionic engineering situations
Unit of competency
National Code
MEA725
MEA725
State Code
AUE28
AUE28
TGA Status
Current
Current
DTWD Status
Approved
Approved
State Implementation and Classification
Approved Date
22/07/2015
Field of Education
031501 - Aerospace Engineering
Original Release Date
22/07/2015
Nominal Hours
55
Description
This unit of competency applies to selecting and applying advanced avionic scientific principles and techniques.Computer techniques, graphical methods and mathematical calculations should complement scientific principles chosen and include unit analysis, appropriate precision and accuracy and use conservative estimations.This unit is used in workplaces that operate under the airworthiness regulatory systems of the Australian Defence Force (ADF) and the Civil Aviation Safety Authority (CASA).
Notes
Elements and Performance Criteria
1. Identify the range of scientific principles and techniques relevant to avionic engineering
- 1.1 Identify the scientific principles relating to avionic engineering
- 1.2 Research and report on avionic scientific principles using appropriate sources of information
- 1.3 Identify the techniques and associated technologies, software and hardware associated with implementing scientific principles relating to avionic engineering applications
- 1.4 Research and report on avionic techniques using appropriate sources of information
2. Select scientific principles and techniques
- 2.1 Select relevant scientific principles for specific avionic engineering situations
- 2.2 Select relevant avionic techniques and associated technologies, software and hardware for specific avionic engineering situations
3. Apply the relevant scientific principles and techniques
- 3.1 Apply applicable scientific principles in a consistent and appropriate manner to obtain any required solution
- 3.2 Use appropriate calculations and correct units to establish quantities
- 3.3 Use coherent units in equations in a systematic manner to ensure meaningful solutions
- 3.4 Use significant figures in engineering calculations
- 3.5 Obtain required solutions by applying chosen techniques and associated technologies, software and hardware in a consistent and appropriate manner
4. Document the results of the application of the avionic scientific principles and techniques
- 4.1 Document solutions involving engineering calculations in an appropriate style
- 4.2 Document solutions not involving engineering calculations in an appropriate style
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| State Code | National Code | Title | Type |
|---|---|---|---|
| BDX9 | MEA60518 | Advanced Diploma of Avionic Engineering | Qualification |
| AVO8 | MEA60515 | Advanced Diploma of Avionic Engineering | Qualification |
| BIW5 | MEM60122 | Advanced Diploma of Engineering | Qualification |