Unit of competency Outline

Date retreived
22/07/2026 1:08 AM AWST

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Apply basic electro and control scientific principles and techniques in aeronautical engineering

Apply basic electro and control scientific principles and techniques in aeronautical engineering

Unit of competency
National Code
MEM23052A
State Code
D7547
TGA Status
Replaced
DTWD Status
Replaced
Current Release Number
1.00
Current Release Date
16/07/2011
State Implementation and Classification
Approved Date
30/06/2011
Field of Education
031503 - Aircraft Maintenance Engineering
Original Release Date
30/06/2011
Nominal Hours
54
Description
This unit of competency covers applying basic electro and control scientific principles and techniques to aeronautical engineering situations.
Notes
Elements and Performance Criteria
1 Research and identify the range of basic electro and control scientific principles and techniques relevant to aeronautical engineering
  • 1.1 Research and report on basic electro and control scientific principles relating to aeronautical engineering from appropriate sources of information and examination of applications
  • 1.2 Identify basic electro and control techniques and associated technologies, software and hardware required to implement scientific principles relating to aeronautical engineering situations
2 Select basic electro and control scientific principles and techniques relevant to particular aeronautical engineering applications
  • 2.1 Select the relevant basic electro and control scientific principles for particular aeronautical engineering situations
  • 2.2 Select the relevant basic electro and control techniques and associated technologies, software and hardware for particular aeronautical engineering situations
3 Apply the relevant basic electro and control scientific principles and techniques appropriately
  • 3.1 Apply basic electro and control scientific principles in a consistent and appropriate manner to obtain any required solution
  • 3.2 Use appropriate calculations and coherent units in the solution of engineering calculations
  • 3.3 Use significant figures in engineering calculations
  • 3.4 Apply basic electro and control techniques and associated technologies, software and hardware in a consistent and appropriate manner to obtain required solutions
4 Quote the results of the application of the basic electro and control scientific principles and techniques correctly
  • 4.1 Quote solutions for applications involving engineering calculations in an appropriate style
  • 4.2 Quote solutions for applications not involving engineering calculations in an appropriate style
Aeronautical engineering
Aeronautical engineering refers to:
the engineering discipline concerned with the conceptual development, research, design, manufacture, implementation, installation, commissioning and maintenance of aerospace mechanical, hydraulic, pneumatic, fuel and fire products, processes, systems or services for civil and military applications
Sources of information
Sources of information may include:
reference texts
manufacturer catalogues and industrial magazines
websites
use of phone, email and fax information gathering
Basic scientific techniques and principles
Basic scientific techniques and principles refers to calculations and the use of coherent units in the completion of tasks, and may include:
basic hand and power tool operations
machining
fitting
welding
moulding
fabricating
wiring
programming
Aeronautical engineering situations
Aeronautical engineering situations may include:
electro-hydraulic and electro-pneumatic systems
fuel storage and distribution systems
engine control systems
propeller control systems
flight control systems
Overview of assessment
A person who demonstrates competency in this unit must be able to apply basic electro and control scientific principles and techniques in aeronautical engineering situations. Competency in this unit cannot be claimed until all prerequisites have been satisfied.
Critical aspects for assessment and evidence required to demonstrate competency in this unit
Assessors must be satisfied that the candidate can competently and consistently perform all elements of the unit as specified by the criteria, including required knowledge, and be capable of applying the competency in new and different situations and contexts.
Assessors should gather a range of evidence that is valid, sufficient, current and authentic. Evidence can be gathered through a variety of ways including direct observation, supervisor’s reports, project work, samples and questioning. Questioning techniques should not require language, literacy and numeracy skills beyond those required in this unit of competency.
Context of and specific resources for assessment
This unit may be assessed on the job, off the job or a combination of both on and off the job. Where assessment occurs off the job, that is the candidate is not in productive work, then an appropriate simulation must be used where the range of conditions reflects realistic workplace situations. The competencies covered by this unit would be demonstrated by an individual working alone or as part of a team. The assessment environment should not disadvantage the candidate.
The candidate must have access to all tools, equipment, materials and documentation required. The candidate must be permitted to refer to any relevant workplace procedures, product and manufacturing specifications, codes, standards, manuals and reference materials.
Method of assessment
This unit could be assessed in conjunction with any other units addressing the safety, quality, communication, materials handling, recording and reporting associated with applying basic electro and control scientific principles and techniques in mechanical and manufacturing engineering situations or other units requiring the exercise of the skills and knowledge covered by this unit.
Guidance information for assessment
State Code National Code Title Type
J368 MEM60112 Advanced Diploma of Engineering Qualification
J367 MEM50212 Diploma of Engineering - Technical Qualification