BEngTech in Construction Engineering Management
Examine the coordination of construction work from project definition to delivery and review.
About the course
Examine the coordination of construction work from project definition to delivery and review. The proposed outline combines technical understanding with planning, cost, contracts and people management. Southern African cases should reflect local procurement arrangements, site conditions, resource availability and the responsibilities of clients, contractors and professional teams.
What you'll learn
Interpret construction information and identify project requirements.
Develop a coherent programme, resource plan and cost overview.
Evaluate procurement and contract issues in a defined teaching case.
Recommend a project-control response supported by progress and quality evidence.
Requirements
Recommended preparation includes strong mathematics, physical science, technical English and computer literacy. BMIT must publish its approved admissions and recognition-of-prior-learning rules before enrolment decisions. Comparator universities set their own thresholds. Their credits, module codes and duration have not been transferred to this outline.
Course content
The subjects are grouped by learning stage, from foundations to specialist study and supervised application. Complete earlier foundations before the related advanced work. Clinical, laboratory, field and workplace subjects use approved facilities and supervision appropriate to the programme.
4 learning stages 30 subjects
1Stage 1: Mathematical, scientific and professional foundations12 subjects
- Differential Calculus
- Integral Calculus and Differential Equations
- Linear Algebra
- Mechanics and General Physics
- Electricity, Magnetism and Waves
- General Chemistry
- Engineering Drawing and CAD
- Programming Fundamentals
- Engineering Materials
- Engineering Statics
- Academic and Professional Communication
- Engineering Professional Practice
2Stage 2: Core engineering subjects8 subjects
3Stage 3: Specialist and integrative subjects6 subjects
4Stage 4: Design, practice and final project4 subjects
Subjects in this programme
The subjects are grouped by learning stage, from foundations to specialist study and supervised application. Complete earlier foundations before the related advanced work. Clinical, laboratory, field and workplace subjects use approved facilities and supervision appropriate to the programme.
30 subjects are listed below with a short description of each. The Subject descriptions tab contains the learning outcomes, topics, practical tasks and assessments.
Stage 1: Mathematical, scientific and professional foundations
- Differential Calculus. Examine functions, limits and their relationship within differential calculus. The subject develops differentiation and rates of change, then examines optimisation and model assumptions. Analyse a measured change and compare graphical and algebraic solutions.
- Integral Calculus and Differential Equations. Develop your understanding of integral calculus and differential equations through integration and accumulated quantities. The subject develops first-order equations and second-order equations, then examines initial conditions and numerical checks. Model a simple accumulation process and check the solution against a numerical estimate.
- Linear Algebra. Study vectors and matrices as foundations for linear algebra. The subject develops linear systems and eigenvalues, then examines transformations and computational verification. Solve a small system using manual reasoning and a computational check.
- Mechanics and General Physics. Examine motion, forces and their relationship within mechanics and general physics. The subject develops energy and momentum, then examines oscillations and measurement uncertainty. Use a supervised teaching experiment to compare observation with a physical model.
- Electricity, Magnetism and Waves. Develop your understanding of electricity, magnetism and waves through electric fields and magnetic fields. The subject develops electromagnetic induction and wave behaviour, then examines optical principles and physical models. Interpret measurements from supervised electrical or optical teaching equipment.
- General Chemistry. Study atomic structure and bonding as foundations for general chemistry. The subject develops chemical quantities and solutions, then examines equilibrium and acids and bases. Analyse low-risk teaching data and complete approved laboratory exercises.
- Engineering Drawing and CAD. Examine orthographic views, sections and their relationship within engineering drawing and cad. The subject develops dimensions and tolerances, then examines assembly drawings and digital modelling. Produce drawings for a non-safety-critical teaching component.
- Programming Fundamentals. Develop your understanding of programming fundamentals through variables and control flow. The subject develops functions and data structures, then examines file handling and testing. Develop a small program which processes a defined teaching dataset.
- Engineering Materials. Study material classes and structure and properties as foundations for engineering materials. The subject develops mechanical behaviour and thermal behaviour, then examines corrosion and material selection. Compare material samples or published teaching data against a component brief.
- Engineering Statics. Examine force systems, equilibrium and their relationship within engineering statics. The subject develops free-body diagrams and structures, then examines friction and distributed loads. Analyse a simple structural model and check equilibrium experimentally.
- Academic and Professional Communication. Develop your understanding of academic and professional communication through reading strategies and evidence use. The subject develops report structure and presentations, then examines audience and referencing. Prepare a report and presentation for a defined professional audience.
- Engineering Professional Practice. Study professional responsibility and ethics as foundations for engineering professional practice. The subject develops technical communication and public welfare, then examines evidence integrity and continuing development. Analyse a regional engineering decision involving conflicting responsibilities.
Stage 2: Core engineering subjects
- Construction Technology. Examine building elements, materials and their relationship within construction technology. The subject develops construction sequences and groundworks, then examines building services and quality checks. Interpret drawings and document an authorised site or model-building exercise.
- Engineering Surveying. Develop your understanding of engineering surveying through measurement systems and levelling. The subject develops coordinates and traversing, then examines setting-out concepts and survey accuracy. Complete supervised measurements at an approved teaching site.
- Construction Measurement. Study drawing interpretation and measurement rules as foundations for construction measurement. The subject develops quantities and schedules, then examines checking and audit trails. Measure a defined teaching project using approved conventions.
- Estimating and Cost Planning. Examine resource rates, build-ups and their relationship within estimating and cost planning. The subject develops preliminaries and allowances, then examines cost plans and uncertainty. Prepare an estimate from permissioned drawings and teaching price data.
- Construction Planning. Develop your understanding of construction planning through work packages and productivity. The subject develops sequencing and resources, then examines programme control and delay analysis. Prepare and revise a programme for a teaching construction project.
- Construction Contracts and Procurement. Study contract roles and procurement routes as foundations for construction contracts and procurement. The subject develops obligations and payment, then examines variations and dispute avoidance. Analyse a simulated contract case using the applicable supplied contract terms.
- Strength of Materials. Examine stress and strain, elastic behaviour and their relationship within strength of materials. The subject develops bending and torsion, then examines deflection and failure criteria. Interpret supervised material-test results and relate them to a component model.
- Applied Statistics. Develop your understanding of applied statistics through descriptive measures and probability. The subject develops sampling and estimation, then examines hypothesis testing and regression. Analyse an approved dataset and distinguish uncertainty from systematic bias.
Stage 3: Specialist and integrative subjects
- Digital Construction and BIM. Study information models and model coordination as foundations for digital construction and bim. The subject develops data standards and quantities, then examines collaboration and information quality. Review a teaching model and document coordination issues.
- Commercial Project Administration. Examine valuations, variations and their relationship within commercial project administration. The subject develops cost reporting and cash flow, then examines final accounts and record keeping. Review a simulated project account and identify unresolved evidence.
- Project Planning and Management. Develop your understanding of project planning and management through scope and work breakdown. The subject develops scheduling and resources, then examines risk and progress control. Build and update a plan for a realistic technical or service project.
- Engineering Economics. Study time value of money and cost estimation as foundations for engineering economics. The subject develops lifecycle costs and investment appraisal, then examines sensitivity and resource decisions. Compare two feasible project options using transparent cost assumptions.
- Quality Management and Improvement. Examine quality criteria, process variation and their relationship within quality management and improvement. The subject develops traceability and nonconformity, then examines corrective action and improvement measures. Investigate a quality problem using permissioned records or teaching data.
- Research Methods. Develop your understanding of research methods through research questions and literature review. The subject develops study design and data collection, then examines ethics and interpretation. Prepare a feasible investigation proposal with a defined evidence need.
Stage 4: Design, practice and final project
- Engineering Design Methods. Study problem definition and requirements as foundations for engineering design methods. The subject develops concept comparison and constraints, then examines verification planning and design review. Develop and review alternatives for a defined civilian technical need.
- Project Development and Feasibility. Examine problem definition, evidence review and their relationship within project development and feasibility. The subject develops requirements and method selection, then examines feasibility and evaluation criteria. Develop an approved discipline-specific project proposal with a supervisor.
- Supervised Workplace Learning. Develop your understanding of supervised workplace learning through workplace roles and approved task planning. The subject develops professional conduct and technical records, then examines feedback and reflective learning. Complete an agreed placement task under an approved workplace supervisor.
- Integrated Project and Technical Report. Study implementation and evidence collection as foundations for integrated project and technical report. The subject develops analysis and verification, then examines limitations and communication. Complete the approved project and maintain an auditable evidence record.
Assessment and practical learning
- Proposed assessment: mathematical problem sets and technical reports with calculations, units, assumptions and limitations made explicit.
- Supervised laboratory or workshop tasks assessed through observation, evidence records and an individual explanation of results.
- An integrated design or investigation portfolio, presentation and written assessment. BMIT must approve weighting and progression rules.
Practical application
Use supervised site visits, permissioned project documents and realistic planning exercises. Learners should compare planned and observed progress and explain the reasons for changes. Site access requires induction and an authorised supervisor. An educational management plan does not substitute for the statutory responsibilities of appointed construction professionals.
Subject descriptions
Select a subject to read its learning outcomes, main topics, practical task and assessment.
Stage 1: Mathematical, scientific and professional foundations
Differential Calculus
Examine functions, limits and their relationship within differential calculus. The subject develops differentiation and rates of change, then examines optimisation and model assumptions. Analyse a measured change and compare graphical and algebraic solutions.
Learning outcomes
- Explain functions and limits using an appropriate example.
- Analyse a subject-related problem involving differentiation and rates of change.
- Present reasoned evidence addressing optimisation and model assumptions.
Main topics
- Functions
- Limits
- Differentiation
- Rates of change
- Optimisation
- Model assumptions
Practical task
Analyse a measured change and compare graphical and algebraic solutions.
Assessment
Submit worked problems and a short interpretation of an optimisation case.
Integral Calculus and Differential Equations
Develop your understanding of integral calculus and differential equations through integration and accumulated quantities. The subject develops first-order equations and second-order equations, then examines initial conditions and numerical checks. Model a simple accumulation process and check the solution against a numerical estimate.
Learning outcomes
- Explain integration and accumulated quantities using an appropriate example.
- Analyse a subject-related problem involving first-order equations and second-order equations.
- Present reasoned evidence addressing initial conditions and numerical checks.
Main topics
- Integration
- Accumulated quantities
- First-order equations
- Second-order equations
- Initial conditions
- Numerical checks
Practical task
Model a simple accumulation process and check the solution against a numerical estimate.
Assessment
Complete an analytical assignment explaining initial conditions and solution limits.
Linear Algebra
Study vectors and matrices as foundations for linear algebra. The subject develops linear systems and eigenvalues, then examines transformations and computational verification. Solve a small system using manual reasoning and a computational check.
Learning outcomes
- Explain vectors and matrices using an appropriate example.
- Analyse a subject-related problem involving linear systems and eigenvalues.
- Present reasoned evidence addressing transformations and computational verification.
Main topics
- Vectors
- Matrices
- Linear systems
- Eigenvalues
- Transformations
- Computational verification
Practical task
Solve a small system using manual reasoning and a computational check.
Assessment
Submit calculations and an explanation of the meaning of the solution.
Mechanics and General Physics
Examine motion, forces and their relationship within mechanics and general physics. The subject develops energy and momentum, then examines oscillations and measurement uncertainty. Use a supervised teaching experiment to compare observation with a physical model.
Learning outcomes
- Explain motion and forces using an appropriate example.
- Analyse a subject-related problem involving energy and momentum.
- Present reasoned evidence addressing oscillations and measurement uncertainty.
Main topics
- Motion
- Forces
- Energy
- Momentum
- Oscillations
- Measurement uncertainty
Practical task
Use a supervised teaching experiment to compare observation with a physical model.
Assessment
Submit a laboratory report and quantitative problem set.
Electricity, Magnetism and Waves
Develop your understanding of electricity, magnetism and waves through electric fields and magnetic fields. The subject develops electromagnetic induction and wave behaviour, then examines optical principles and physical models. Interpret measurements from supervised electrical or optical teaching equipment.
Learning outcomes
- Explain electric fields and magnetic fields using an appropriate example.
- Analyse a subject-related problem involving electromagnetic induction and wave behaviour.
- Present reasoned evidence addressing optical principles and physical models.
Main topics
- Electric fields
- Magnetic fields
- Electromagnetic induction
- Wave behaviour
- Optical principles
- Physical models
Practical task
Interpret measurements from supervised electrical or optical teaching equipment.
Assessment
Complete calculations and a report explaining discrepancies from theory.
General Chemistry
Study atomic structure and bonding as foundations for general chemistry. The subject develops chemical quantities and solutions, then examines equilibrium and acids and bases. Analyse low-risk teaching data and complete approved laboratory exercises.
Learning outcomes
- Explain atomic structure and bonding using an appropriate example.
- Analyse a subject-related problem involving chemical quantities and solutions.
- Present reasoned evidence addressing equilibrium and acids and bases.
Main topics
- Atomic structure
- Bonding
- Chemical quantities
- Solutions
- Equilibrium
- Acids and bases
Practical task
Analyse low-risk teaching data and complete approved laboratory exercises.
Assessment
Submit a practical record and calculations with units and assumptions.
Engineering Drawing and CAD
Examine orthographic views, sections and their relationship within engineering drawing and cad. The subject develops dimensions and tolerances, then examines assembly drawings and digital modelling. Produce drawings for a non-safety-critical teaching component.
Learning outcomes
- Explain orthographic views and sections using an appropriate example.
- Analyse a subject-related problem involving dimensions and tolerances.
- Present reasoned evidence addressing assembly drawings and digital modelling.
Main topics
- Orthographic views
- Sections
- Dimensions
- Tolerances
- Assembly drawings
- Digital modelling
Practical task
Produce drawings for a non-safety-critical teaching component.
Assessment
Submit dimensioned drawings and explain design communication choices.
Programming Fundamentals
Develop your understanding of programming fundamentals through variables and control flow. The subject develops functions and data structures, then examines file handling and testing. Develop a small program which processes a defined teaching dataset.
Learning outcomes
- Explain variables and control flow using an appropriate example.
- Analyse a subject-related problem involving functions and data structures.
- Present reasoned evidence addressing file handling and testing.
Main topics
- Variables
- Control flow
- Functions
- Data structures
- File handling
- Testing
Practical task
Develop a small program which processes a defined teaching dataset.
Assessment
Submit working code, tests and a concise user explanation.
Engineering Materials
Study material classes and structure and properties as foundations for engineering materials. The subject develops mechanical behaviour and thermal behaviour, then examines corrosion and material selection. Compare material samples or published teaching data against a component brief.
Learning outcomes
- Explain material classes and structure and properties using an appropriate example.
- Analyse a subject-related problem involving mechanical behaviour and thermal behaviour.
- Present reasoned evidence addressing corrosion and material selection.
Main topics
- Material classes
- Structure and properties
- Mechanical behaviour
- Thermal behaviour
- Corrosion
- Material selection
Practical task
Compare material samples or published teaching data against a component brief.
Assessment
Submit a selection report explaining evidence and trade-offs.
Engineering Statics
Examine force systems, equilibrium and their relationship within engineering statics. The subject develops free-body diagrams and structures, then examines friction and distributed loads. Analyse a simple structural model and check equilibrium experimentally.
Learning outcomes
- Explain force systems and equilibrium using an appropriate example.
- Analyse a subject-related problem involving free-body diagrams and structures.
- Present reasoned evidence addressing friction and distributed loads.
Main topics
- Force systems
- Equilibrium
- Free-body diagrams
- Structures
- Friction
- Distributed loads
Practical task
Analyse a simple structural model and check equilibrium experimentally.
Assessment
Submit calculations, diagrams and a short validation report.
Academic and Professional Communication
Develop your understanding of academic and professional communication through reading strategies and evidence use. The subject develops report structure and presentations, then examines audience and referencing. Prepare a report and presentation for a defined professional audience.
Learning outcomes
- Explain reading strategies and evidence use using an appropriate example.
- Analyse a subject-related problem involving report structure and presentations.
- Present reasoned evidence addressing audience and referencing.
Main topics
- Reading strategies
- Evidence use
- Report structure
- Presentations
- Audience
- Referencing
Practical task
Prepare a report and presentation for a defined professional audience.
Assessment
Submit revised written work and an individual presentation.
Engineering Professional Practice
Study professional responsibility and ethics as foundations for engineering professional practice. The subject develops technical communication and public welfare, then examines evidence integrity and continuing development. Analyse a regional engineering decision involving conflicting responsibilities.
Learning outcomes
- Explain professional responsibility and ethics using an appropriate example.
- Analyse a subject-related problem involving technical communication and public welfare.
- Present reasoned evidence addressing evidence integrity and continuing development.
Main topics
- Professional responsibility
- Ethics
- Technical communication
- Public welfare
- Evidence integrity
- Continuing development
Practical task
Analyse a regional engineering decision involving conflicting responsibilities.
Assessment
Submit an ethical decision brief and a professional communication exercise.
Stage 2: Core engineering subjects
Construction Technology
Examine building elements, materials and their relationship within construction technology. The subject develops construction sequences and groundworks, then examines building services and quality checks. Interpret drawings and document an authorised site or model-building exercise.
Learning outcomes
- Explain building elements and materials using an appropriate example.
- Analyse a subject-related problem involving construction sequences and groundworks.
- Present reasoned evidence addressing building services and quality checks.
Main topics
- Building elements
- Materials
- Construction sequences
- Groundworks
- Building services
- Quality checks
Practical task
Interpret drawings and document an authorised site or model-building exercise.
Assessment
Submit a construction-method and inspection report.
Engineering Surveying
Develop your understanding of engineering surveying through measurement systems and levelling. The subject develops coordinates and traversing, then examines setting-out concepts and survey accuracy. Complete supervised measurements at an approved teaching site.
Learning outcomes
- Explain measurement systems and levelling using an appropriate example.
- Analyse a subject-related problem involving coordinates and traversing.
- Present reasoned evidence addressing setting-out concepts and survey accuracy.
Main topics
- Measurement systems
- Levelling
- Coordinates
- Traversing
- Setting-out concepts
- Survey accuracy
Practical task
Complete supervised measurements at an approved teaching site.
Assessment
Submit field notes, calculations and an accuracy assessment.
Construction Measurement
Study drawing interpretation and measurement rules as foundations for construction measurement. The subject develops quantities and schedules, then examines checking and audit trails. Measure a defined teaching project using approved conventions.
Learning outcomes
- Explain drawing interpretation and measurement rules using an appropriate example.
- Analyse a subject-related problem involving quantities and schedules.
- Present reasoned evidence addressing checking and audit trails.
Main topics
- Drawing interpretation
- Measurement rules
- Quantities
- Schedules
- Checking
- Audit trails
Practical task
Measure a defined teaching project using approved conventions.
Assessment
Submit checked quantities and a transparent measurement record.
Estimating and Cost Planning
Examine resource rates, build-ups and their relationship within estimating and cost planning. The subject develops preliminaries and allowances, then examines cost plans and uncertainty. Prepare an estimate from permissioned drawings and teaching price data.
Learning outcomes
- Explain resource rates and build-ups using an appropriate example.
- Analyse a subject-related problem involving preliminaries and allowances.
- Present reasoned evidence addressing cost plans and uncertainty.
Main topics
- Resource rates
- Build-ups
- Preliminaries
- Allowances
- Cost plans
- Uncertainty
Practical task
Prepare an estimate from permissioned drawings and teaching price data.
Assessment
Submit a cost plan with assumptions and sensitivity checks.
Construction Planning
Develop your understanding of construction planning through work packages and productivity. The subject develops sequencing and resources, then examines programme control and delay analysis. Prepare and revise a programme for a teaching construction project.
Learning outcomes
- Explain work packages and productivity using an appropriate example.
- Analyse a subject-related problem involving sequencing and resources.
- Present reasoned evidence addressing programme control and delay analysis.
Main topics
- Work packages
- Productivity
- Sequencing
- Resources
- Programme control
- Delay analysis
Practical task
Prepare and revise a programme for a teaching construction project.
Assessment
Submit a resource-loaded plan and progress-review analysis.
Construction Contracts and Procurement
Study contract roles and procurement routes as foundations for construction contracts and procurement. The subject develops obligations and payment, then examines variations and dispute avoidance. Analyse a simulated contract case using the applicable supplied contract terms.
Learning outcomes
- Explain contract roles and procurement routes using an appropriate example.
- Analyse a subject-related problem involving obligations and payment.
- Present reasoned evidence addressing variations and dispute avoidance.
Main topics
- Contract roles
- Procurement routes
- Obligations
- Payment
- Variations
- Dispute avoidance
Practical task
Analyse a simulated contract case using the applicable supplied contract terms.
Assessment
Submit a reasoned commercial decision brief.
Strength of Materials
Examine stress and strain, elastic behaviour and their relationship within strength of materials. The subject develops bending and torsion, then examines deflection and failure criteria. Interpret supervised material-test results and relate them to a component model.
Learning outcomes
- Explain stress and strain and elastic behaviour using an appropriate example.
- Analyse a subject-related problem involving bending and torsion.
- Present reasoned evidence addressing deflection and failure criteria.
Main topics
- Stress and strain
- Elastic behaviour
- Bending
- Torsion
- Deflection
- Failure criteria
Practical task
Interpret supervised material-test results and relate them to a component model.
Assessment
Submit a test report and justified calculations.
Applied Statistics
Develop your understanding of applied statistics through descriptive measures and probability. The subject develops sampling and estimation, then examines hypothesis testing and regression. Analyse an approved dataset and distinguish uncertainty from systematic bias.
Learning outcomes
- Explain descriptive measures and probability using an appropriate example.
- Analyse a subject-related problem involving sampling and estimation.
- Present reasoned evidence addressing hypothesis testing and regression.
Main topics
- Descriptive measures
- Probability
- Sampling
- Estimation
- Hypothesis testing
- Regression
Practical task
Analyse an approved dataset and distinguish uncertainty from systematic bias.
Assessment
Submit a reproducible analysis with justified methods and interpretation.
Stage 3: Specialist and integrative subjects
Digital Construction and BIM
Study information models and model coordination as foundations for digital construction and bim. The subject develops data standards and quantities, then examines collaboration and information quality. Review a teaching model and document coordination issues.
Learning outcomes
- Explain information models and model coordination using an appropriate example.
- Analyse a subject-related problem involving data standards and quantities.
- Present reasoned evidence addressing collaboration and information quality.
Main topics
- Information models
- Model coordination
- Data standards
- Quantities
- Collaboration
- Information quality
Practical task
Review a teaching model and document coordination issues.
Assessment
Submit a model review and information-management plan.
Commercial Project Administration
Examine valuations, variations and their relationship within commercial project administration. The subject develops cost reporting and cash flow, then examines final accounts and record keeping. Review a simulated project account and identify unresolved evidence.
Learning outcomes
- Explain valuations and variations using an appropriate example.
- Analyse a subject-related problem involving cost reporting and cash flow.
- Present reasoned evidence addressing final accounts and record keeping.
Main topics
- Valuations
- Variations
- Cost reporting
- Cash flow
- Final accounts
- Record keeping
Practical task
Review a simulated project account and identify unresolved evidence.
Assessment
Submit a commercial report and supported recommendations.
Project Planning and Management
Develop your understanding of project planning and management through scope and work breakdown. The subject develops scheduling and resources, then examines risk and progress control. Build and update a plan for a realistic technical or service project.
Learning outcomes
- Explain scope and work breakdown using an appropriate example.
- Analyse a subject-related problem involving scheduling and resources.
- Present reasoned evidence addressing risk and progress control.
Main topics
- Scope
- Work breakdown
- Scheduling
- Resources
- Risk
- Progress control
Practical task
Build and update a plan for a realistic technical or service project.
Assessment
Submit a project plan, risk register and progress-review case.
Engineering Economics
Study time value of money and cost estimation as foundations for engineering economics. The subject develops lifecycle costs and investment appraisal, then examines sensitivity and resource decisions. Compare two feasible project options using transparent cost assumptions.
Learning outcomes
- Explain time value of money and cost estimation using an appropriate example.
- Analyse a subject-related problem involving lifecycle costs and investment appraisal.
- Present reasoned evidence addressing sensitivity and resource decisions.
Main topics
- Time value of money
- Cost estimation
- Lifecycle costs
- Investment appraisal
- Sensitivity
- Resource decisions
Practical task
Compare two feasible project options using transparent cost assumptions.
Assessment
Submit an economic appraisal and sensitivity analysis.
Quality Management and Improvement
Examine quality criteria, process variation and their relationship within quality management and improvement. The subject develops traceability and nonconformity, then examines corrective action and improvement measures. Investigate a quality problem using permissioned records or teaching data.
Learning outcomes
- Explain quality criteria and process variation using an appropriate example.
- Analyse a subject-related problem involving traceability and nonconformity.
- Present reasoned evidence addressing corrective action and improvement measures.
Main topics
- Quality criteria
- Process variation
- Traceability
- Nonconformity
- Corrective action
- Improvement measures
Practical task
Investigate a quality problem using permissioned records or teaching data.
Assessment
Submit a quality review and a measurable improvement proposal.
Research Methods
Develop your understanding of research methods through research questions and literature review. The subject develops study design and data collection, then examines ethics and interpretation. Prepare a feasible investigation proposal with a defined evidence need.
Learning outcomes
- Explain research questions and literature review using an appropriate example.
- Analyse a subject-related problem involving study design and data collection.
- Present reasoned evidence addressing ethics and interpretation.
Main topics
- Research questions
- Literature review
- Study design
- Data collection
- Ethics
- Interpretation
Practical task
Prepare a feasible investigation proposal with a defined evidence need.
Assessment
Submit a proposal, methods rationale and ethics considerations.
Stage 4: Design, practice and final project
Engineering Design Methods
Study problem definition and requirements as foundations for engineering design methods. The subject develops concept comparison and constraints, then examines verification planning and design review. Develop and review alternatives for a defined civilian technical need.
Learning outcomes
- Explain problem definition and requirements using an appropriate example.
- Analyse a subject-related problem involving concept comparison and constraints.
- Present reasoned evidence addressing verification planning and design review.
Main topics
- Problem definition
- Requirements
- Concept comparison
- Constraints
- Verification planning
- Design review
Practical task
Develop and review alternatives for a defined civilian technical need.
Assessment
Submit a requirements-led design dossier with review responses.
Project Development and Feasibility
Examine problem definition, evidence review and their relationship within project development and feasibility. The subject develops requirements and method selection, then examines feasibility and evaluation criteria. Develop an approved discipline-specific project proposal with a supervisor.
Learning outcomes
- Explain problem definition and evidence review using an appropriate example.
- Analyse a subject-related problem involving requirements and method selection.
- Present reasoned evidence addressing feasibility and evaluation criteria.
Main topics
- Problem definition
- Evidence review
- Requirements
- Method selection
- Feasibility
- Evaluation criteria
Practical task
Develop an approved discipline-specific project proposal with a supervisor.
Assessment
Submit a proposal, evidence review and evaluation plan.
Supervised Workplace Learning
Develop your understanding of supervised workplace learning through workplace roles and approved task planning. The subject develops professional conduct and technical records, then examines feedback and reflective learning. Complete an agreed placement task under an approved workplace supervisor.
Learning outcomes
- Explain workplace roles and approved task planning using an appropriate example.
- Analyse a subject-related problem involving professional conduct and technical records.
- Present reasoned evidence addressing feedback and reflective learning.
Main topics
- Workplace roles
- Approved task planning
- Professional conduct
- Technical records
- Feedback
- Reflective learning
Practical task
Complete an agreed placement task under an approved workplace supervisor.
Assessment
Submit an authenticated work portfolio and reflective presentation.
Integrated Project and Technical Report
Study implementation and evidence collection as foundations for integrated project and technical report. The subject develops analysis and verification, then examines limitations and communication. Complete the approved project and maintain an auditable evidence record.
Learning outcomes
- Explain implementation and evidence collection using an appropriate example.
- Analyse a subject-related problem involving analysis and verification.
- Present reasoned evidence addressing limitations and communication.
Main topics
- Implementation
- Evidence collection
- Analysis
- Verification
- Limitations
- Communication
Practical task
Complete the approved project and maintain an auditable evidence record.
Assessment
Submit the final project, report and individual oral defence.
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