NTISthis.com

Evidence Guide: MEM23091A - Apply mechanical system design principles and techniques in mechanical engineering situations

Student: __________________________________________________

Signature: _________________________________________________

Tips for gathering evidence to demonstrate your skills

The important thing to remember when gathering evidence is that the more evidence the better - that is, the more evidence you gather to demonstrate your skills, the more confident an assessor can be that you have learned the skills not just at one point in time, but are continuing to apply and develop those skills (as opposed to just learning for the test!). Furthermore, one piece of evidence that you collect will not usualy demonstrate all the required criteria for a unit of competency, whereas multiple overlapping pieces of evidence will usually do the trick!

From the Wiki University

 

MEM23091A - Apply mechanical system design principles and techniques in mechanical engineering situations

What evidence can you provide to prove your understanding of each of the following citeria?

Identify the range of mechanical system design principles and techniques relevant to mechanical engineering

  1. Research and report on mechanical system design principles using appropriate sources of information. The mechanical system design principles relating to mechanical engineering applications.
  2. Research and report on mechanical system design techniques using appropriate sources of information. The mechanical system design techniques and associated technologies, software and hardware associated with implementing scientific principles relating to mechanical engineering applications.
Research and report on mechanical system design principles using appropriate sources of information. The mechanical system design principles relating to mechanical engineering applications.

Completed
Date:

Teacher:
Evidence:

 

 

 

 

 

 

 

Research and report on mechanical system design techniques using appropriate sources of information. The mechanical system design techniques and associated technologies, software and hardware associated with implementing scientific principles relating to mechanical engineering applications.

Completed
Date:

Teacher:
Evidence:

 

 

 

 

 

 

 

Select mechanical system design principles and techniques relevant to mechanical engineering applications

  1. For particular mechanical engineering situations the relevant mechanical system design principles can be selected.
  2. For particular mechanical engineering situations, the relevant mechanical system design techniques and associated technologies, software and hardware can be selected.
For particular mechanical engineering situations the relevant mechanical system design principles can be selected.

Completed
Date:

Teacher:
Evidence:

 

 

 

 

 

 

 

For particular mechanical engineering situations, the relevant mechanical system design techniques and associated technologies, software and hardware can be selected.

Completed
Date:

Teacher:
Evidence:

 

 

 

 

 

 

 

Apply the relevant mechanical system design principles and techniques appropriately

  1. The mechanical system design principles are applied in a consistent and appropriate manner to obtain any required solution.
  2. Appropriate calculations and correct units are used to establish quantities. Coherent units are used in equations in a systematic manner to ensure meaningful solutions.
  3. Significant figures are used in engineering calculations.
  4. The mechanical system design techniques and associated technologies, software and hardware are applied in a consistent and appropriate manner to obtain required solutions.
The mechanical system design principles are applied in a consistent and appropriate manner to obtain any required solution.

Completed
Date:

Teacher:
Evidence:

 

 

 

 

 

 

 

Appropriate calculations and correct units are used to establish quantities. Coherent units are used in equations in a systematic manner to ensure meaningful solutions.

Completed
Date:

Teacher:
Evidence:

 

 

 

 

 

 

 

Significant figures are used in engineering calculations.

Completed
Date:

Teacher:
Evidence:

 

 

 

 

 

 

 

The mechanical system design techniques and associated technologies, software and hardware are applied in a consistent and appropriate manner to obtain required solutions.

Completed
Date:

Teacher:
Evidence:

 

 

 

 

 

 

 

Quote the results of the application of the mechanical system design principles and techniques correctly

  1. For applications involving engineering calculations the solution is quoted in an appropriate style.
  2. For applications not involving engineering calculations the solution is quoted in an appropriate style.
For applications involving engineering calculations the solution is quoted in an appropriate style.

Completed
Date:

Teacher:
Evidence:

 

 

 

 

 

 

 

For applications not involving engineering calculations the solution is quoted in an appropriate style.

Completed
Date:

Teacher:
Evidence:

 

 

 

 

 

 

 

Assessed

Teacher: ___________________________________ Date: _________

Signature: ________________________________________________

Comments:

 

 

 

 

 

 

 

 

Instructions to Assessors

Evidence Guide

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 mechanical system design principles and techniques in mechanical 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.

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.

This unit could be assessed in conjunction with any other units addressing the safety, quality, communication, materials handling, recording and reporting associated with applying mechanical system design principles and techniques in mechanical engineering situations or other units requiring the exercise of the skills and knowledge covered by this unit.

Method of assessment

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. 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.

Guidance information for assessment

Required Skills and Knowledge

Required skills

Look for evidence that confirms skills in:

applying advanced scientific principles relevant to mechanical engineering

analysing the given situation to determine what is required in the manner of a solution

analysing the given situation to determine which mechanical engineering scientific principles are selected

selecting appropriate mechanical engineering techniques and associated technologies, software and hardware to suit the application/s

applying appropriate mechanical engineering principles in determining the required solution

applying and manipulating formulas and calculations for engineering applications

using the correct units to solve engineering calculations

checking the validity of equations using a systematic method for ensuring coherent units

applying mechanical engineering techniques and associated technologies, software and hardware in a manner appropriate to the application and identified scientific principles

referring solutions to the original aim of the application

quoting solutions in appropriate units and using appropriate significant figures

presenting solutions referring to the original aim of the application

Required knowledge

Look for evidence that confirms knowledge of:

mechanical engineering techniques and related technologies, software and hardware associated with implementing scientific principles in engineering solutions and related to appropriate engineering applications

the limitations of mechanical engineering techniques and associated technologies, software and hardware

the relevance of scientific principles to mechanical engineering

the applicability and limitations of an extensive range of mechanical engineering techniques and associated technologies, software and hardware

the choice of mechanical engineering scientific principles for particular applications

the applicability of particular mechanical engineering techniques and associated technologies, software and hardware to specific applications

the choice of mechanical engineering techniques and associated technologies, software and hardware for particular applications

the method of application of the scientific principles

fundamental and derived quantities and explained

common systems of units

the procedure for converting between systems of units

common prefixes used with units and their values

the procedure for ensuring coherent units for meaningful solutions to equations

the concept of significant figures

the uncertainty of computations based on experimental data

the procedures for determining the significance of figures in calculations

the procedures for estimating errors in derived quantities

the method of application of the mechanical engineering techniques and associated technologies, software and hardware

the significance of the calculation solution style in relation to the original task

the significance of the non calculation solution style in relation to the original task

Range Statement

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.

Sources of information

Includes reference texts, manufacturer's catalogues and industrial magazines, websites, use of phone, email and fax information gathering.

Mechanical engineering

The engineering discipline concerned with the conceptual development, research, design, manufacture, implementation, installation, commissioning and maintenance of mechanical products, processes, systems or services for converting energy into power and motion, materials into product and components into machines and systems for domestic, industrial, public or private services, entertainment and military applications.