Unit of competency Outline
Date retreived
22/07/2026 1:09 AM AWST
22/07/2026 1:09 AM 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 calculus to engineering tasks
Apply calculus to engineering tasks
Unit of competency
National Code
MEM23007A
MEM23007A
State Code
WE920
WE920
TGA Status
Replaced
Replaced
DTWD Status
Replaced
Replaced
State Implementation and Classification
Approved Date
02/02/2015
Field of Education
010101 - Mathematics
Original Release Date
02/02/2015
Nominal Hours
40
Description
This unit of competency covers the application of calculus, including differentiation and integration techniques to engineering applications. It includes the use and application of standard differentiation and integration rules, finding maximum and minimum values of curves, application to rates of change and slope, finding definite integrals, using method of substitution, using trigonometric identities and finding areas under curves.
Notes
Elements and Performance Criteria
1 Determine scope of calculus techniques required for an engineering application
- 1.1 Analyse an engineering application for required calculus tasks
- 1.2 Develop systematic methods for layout and solution validation, including any required external sign-off of solution
- 1.3 Identify calculus technique and any software required for analysis and resolution of identified engineering application tasks
- 1.4 Identify sources for professional and technical assistance, if required
2 Apply differential techniques to engineering applications
- 2.1 Apply standard differentiation rules to solve engineering problems
- 2.2 Check solution is laid out correctly and is error free
- 2.3 Review solution to ensure it provides information relevant to resolution of engineering application task
- 2.4 Report results and document calculations, graphs and analysis
3 Apply integration techniques to engineering applications
- 3.1 Apply standard integration rules to solve engineering problems
- 3.2 Check solution is laid out correctly and is error free
- 3.3 Review solution to ensure it provides information relevant to resolution of engineering application task
- 3.4 Report results and document calculations, graphs and analysis
The range statement relates to the unit of competency as a whole. It allows for different work environments and situations that may affect performance. Bold italicised wording, if used in the performance criteria, is detailed below. Essential operating conditions that may be present with training and assessment (depending on the work situation, needs of the candidate, accessibility of the item, and local industry and regional contexts) may also be included.
Engineering applications related to calculus techniques in this unit
Most engineering disciplines will have applications supported by the calculus skills described in this unit, including mechanical, manufacturing, maintenance and mechatronics engineering. Examples of engineering or manufacturing applications requiring calculus skills described in this unit may include:
determining the point of maximum bending moment, slope and deflection for a beam
determining the depth of parabolic mirrors
determining moments of inertia of a range of engineering components
solving rectilinear motion problems
Scope of calculus techniques
The scope of calculus techniques required for an engineering or manufacturing application will vary and may include:
identification of appropriate limits
use of standard derivatives and rules
application of second and third derivatives
finding rates of change and slopes of curves
calculating maximum and minimum values of curves
solving first and second order differential equations
use of standard integrals and rules
finding constants of integration
finding areas under and between curves
integrating algebraic, trigonometric and exponential functions
the definite integral
identification of appropriate methods to solve more complex integration applications
Engineering applications related to calculus techniques in this unit
Most engineering disciplines will have applications supported by the calculus skills described in this unit, including mechanical, manufacturing, maintenance and mechatronics engineering. Examples of engineering or manufacturing applications requiring calculus skills described in this unit may include:
determining the point of maximum bending moment, slope and deflection for a beam
determining the depth of parabolic mirrors
determining moments of inertia of a range of engineering components
solving rectilinear motion problems
Scope of calculus techniques
The scope of calculus techniques required for an engineering or manufacturing application will vary and may include:
identification of appropriate limits
use of standard derivatives and rules
application of second and third derivatives
finding rates of change and slopes of curves
calculating maximum and minimum values of curves
solving first and second order differential equations
use of standard integrals and rules
finding constants of integration
finding areas under and between curves
integrating algebraic, trigonometric and exponential functions
the definite integral
identification of appropriate methods to solve more complex integration applications
The evidence guide provides advice on assessment and must be read in conjunction with the performance criteria, required skills and knowledge, range statement and the Assessment Guidelines for the Training Package.
Overview of assessment
A person who demonstrates competency in this unit must be able to apply calculus techniques to engineering and related problems within the context of specified engineering applications and solution validation and technical oversight procedures. The candidate may demonstrate competence through either working individually or as part of a team.
Critical aspects for assessment and evidence required to demonstrate competency in this unit
Assessors must be satisfied that the candidate can competently and consistently:
solve mathematical problems related to engineering and manufacturing using calculus techniques
validate results of mathematical problems using calculus either analytically and/or graphically
manipulate engineering and manufacturing-related mathematical functions and equations using calculus techniques
analyse mathematical problems by using appropriate calculus techniques to achieve engineering and manufacturing solutions.
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 then a simulated working environment 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.
Where applicable, reasonable adjustment must be made to work environments and training situations to accommodate ethnicity, age, gender, demographics and disability.
Access must be provided to appropriate learning and/or assessment support when required. Where applicable, physical resources should include equipment modified for people with disabilities.
Method of assessment
Assessment must satisfy the endorsed Assessment Guidelines of the MEM05 Metal and Engineering Training Package.
Assessment methods must confirm consistency and accuracy of performance (over time and in a range of workplace relevant contexts) together with application of underpinning knowledge.
Assessment methods must be by direct observation of tasks and include questioning on underpinning knowledge to ensure correct interpretation and application.
Assessment may be applied under project-related conditions (real or simulated) and require evidence of process.
Assessment must confirm a reasonable inference that competency is not only able to be satisfied under the particular circumstance, but is able to be transferred to other circumstances.
Assessment may be in conjunction with assessment of other units of competency where required.
Guidance information for assessment
Assessment processes and techniques must be culturally appropriate and appropriate to the language and literacy capacity of the candidate and the work being performed.
Overview of assessment
A person who demonstrates competency in this unit must be able to apply calculus techniques to engineering and related problems within the context of specified engineering applications and solution validation and technical oversight procedures. The candidate may demonstrate competence through either working individually or as part of a team.
Critical aspects for assessment and evidence required to demonstrate competency in this unit
Assessors must be satisfied that the candidate can competently and consistently:
solve mathematical problems related to engineering and manufacturing using calculus techniques
validate results of mathematical problems using calculus either analytically and/or graphically
manipulate engineering and manufacturing-related mathematical functions and equations using calculus techniques
analyse mathematical problems by using appropriate calculus techniques to achieve engineering and manufacturing solutions.
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 then a simulated working environment 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.
Where applicable, reasonable adjustment must be made to work environments and training situations to accommodate ethnicity, age, gender, demographics and disability.
Access must be provided to appropriate learning and/or assessment support when required. Where applicable, physical resources should include equipment modified for people with disabilities.
Method of assessment
Assessment must satisfy the endorsed Assessment Guidelines of the MEM05 Metal and Engineering Training Package.
Assessment methods must confirm consistency and accuracy of performance (over time and in a range of workplace relevant contexts) together with application of underpinning knowledge.
Assessment methods must be by direct observation of tasks and include questioning on underpinning knowledge to ensure correct interpretation and application.
Assessment may be applied under project-related conditions (real or simulated) and require evidence of process.
Assessment must confirm a reasonable inference that competency is not only able to be satisfied under the particular circumstance, but is able to be transferred to other circumstances.
Assessment may be in conjunction with assessment of other units of competency where required.
Guidance information for assessment
Assessment processes and techniques must be culturally appropriate and appropriate to the language and literacy capacity of the candidate and the work being performed.
Replaces
| State Code | National Code | Title | Type |
|---|---|---|---|
| W5681 | MEM23002A | Apply calculus in engineering situations | Unit of competency |
Replaced By
| State Code | National Code | Title | Type |
|---|---|---|---|
| OEW61 | MEM23007 | Apply calculus to engineering tasks | Unit of competency |
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|---|---|---|---|
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| BDV7 | MEA60418 | Advanced Diploma of Aeronautical Engineering | Qualification |
| BDX5 | MEA50718 | Diploma of Avionic Engineering | Qualification |
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| BGL3 | RII40820 | Certificate IV in Civil Construction Design | Qualification |
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| J368 | MEM60112 | Advanced Diploma of Engineering | Qualification |
| J367 | MEM50212 | Diploma of Engineering - Technical | Qualification |
| W528 | MSA60108 | Advanced Diploma of Manufacturing Technology | Qualification |
| W526 | MSA50108 | Diploma of Manufacturing Technology | Qualification |