Unit of Competency Mapping – Information for Teachers/Assessors – Information for Learners

MEM23109 Mapping and Delivery Guide
Apply engineering mechanics principles

Version 1.0
Issue Date: May 2024


Qualification -
Unit of Competency MEM23109 - Apply engineering mechanics principles
Description
Employability Skills
Learning Outcomes and Application
Duration and Setting X weeks, nominally xx hours, delivered in a classroom/online/blended learning setting.
Prerequisites/co-requisites
Competency Field
Development and validation strategy and guide for assessors and learners Student Learning Resources Handouts
Activities
Slides
PPT
Assessment 1 Assessment 2 Assessment 3 Assessment 4
Elements of Competency Performance Criteria              
Element: Identify scope of required analysis
  • Identify device, machine or system, and component parts for analysis
  • Assess engineering mechanics principles, skills and techniques required by tasks
  • Review functions and features of device, machine or system
  • Assess software techniques required for basic analysis and graphics required by the task
  • Identify stakeholders to be consulted on analysis tasks
  • Confirm work health and safety (WHS) and regulatory requirements, and risk management and organisational procedures
  • Review sustainability implications of tasks
  • Determine available sources for technical and professional assistance
       
Element: Apply engineering mechanics principles and techniques
  • Identify appropriate engineering mechanics principles and analytical, graphical and software-assisted techniques applicable to task
  • Validate software results using analytical and graphical methods
  • Ensure clear and logical process of analysis and compatibility of units in calculations
  • Apply resultant loads and reactions on machines, support frames and beams due to parallel and oblique, concentrated and distributed loads and moments
  • Apply the torque and power required to drive translation screws and winding drums against inclined and vertically suspended loads subject to gravitation, acceleration and friction resistance loads
  • Select standard hardware to meet specifications
  • Analyse bending and shear stresses in beams subject to static point and distributed loads
  • Record results of investigation, evaluation and application
  • Provide documentation including calculations, diagrams, programs and files
       

Submission Requirements

List each assessment task's title, type (eg project, observation/demonstration, essay, assignment, checklist) and due date here

Assessment task 1: [title]      Due date:

(add new lines for each of the assessment tasks)


Assessment Tasks

Copy and paste from the following data to produce each assessment task. Write these in plain English and spell out how, when and where the task is to be carried out, under what conditions, and what resources are needed. Include guidelines about how well the candidate has to perform a task for it to be judged satisfactory.
Copy and paste from the following performance criteria to create an observation checklist for each task. When you have finished writing your assessment tool every one of these must have been addressed, preferably several times in a variety of contexts. To ensure this occurs download the assessment matrix for the unit; enter each assessment task as a column header and place check marks against each performance criteria that task addresses.

Observation Checklist

Tasks to be observed according to workplace/college/TAFE policy and procedures, relevant legislation and Codes of Practice Yes No Comments/feedback
Identify device, machine or system, and component parts for analysis 
Assess engineering mechanics principles, skills and techniques required by tasks 
Review functions and features of device, machine or system 
Assess software techniques required for basic analysis and graphics required by the task 
Identify stakeholders to be consulted on analysis tasks 
Confirm work health and safety (WHS) and regulatory requirements, and risk management and organisational procedures 
Review sustainability implications of tasks 
Determine available sources for technical and professional assistance 
Identify appropriate engineering mechanics principles and analytical, graphical and software-assisted techniques applicable to task 
Validate software results using analytical and graphical methods 
Ensure clear and logical process of analysis and compatibility of units in calculations 
Apply resultant loads and reactions on machines, support frames and beams due to parallel and oblique, concentrated and distributed loads and moments 
Apply the torque and power required to drive translation screws and winding drums against inclined and vertically suspended loads subject to gravitation, acceleration and friction resistance loads 
Select standard hardware to meet specifications 
Analyse bending and shear stresses in beams subject to static point and distributed loads 
Record results of investigation, evaluation and application 
Provide documentation including calculations, diagrams, programs and files 

Forms

Assessment Cover Sheet

MEM23109 - Apply engineering mechanics principles
Assessment task 1: [title]

Student name:

Student ID:

I declare that the assessment tasks submitted for this unit are my own work.

Student signature:

Result: Competent Not yet competent

Feedback to student

 

 

 

 

 

 

 

 

Assessor name:

Signature:

Date:


Assessment Record Sheet

MEM23109 - Apply engineering mechanics principles

Student name:

Student ID:

Assessment task 1: [title] Result: Competent Not yet competent

(add lines for each task)

Feedback to student:

 

 

 

 

 

 

 

 

Overall assessment result: Competent Not yet competent

Assessor name:

Signature:

Date:

Student signature:

Date: