ENN541 Research Methods for Engineers


To view more information for this unit, select Unit Outline from the list below. Please note the teaching period for which the Unit Outline is relevant.


Unit Outline: Semester 1 2026, Gardens Point, Internal

Unit code:ENN541
Credit points:12
Equivalent:ENQ541, EGH404
Assumed Knowledge:

Basic engineering maths is assumed knowledge.

Anti-requisite:IFN600, INN700, INN701
Coordinators:Dhammika Jayalath | dhammika.jayalath@qut.edu.au
Disclaimer - Offer of some units is subject to viability, and information in these Unit Outlines is subject to change prior to commencement of the teaching period.

Overview

 

Problem identification, research planning, literature evaluation, data collection, collaboration, and professional communication are fundamental capabilities of engineers across all disciplines. Engineers are increasingly required to undertake practice-based research to address complex, real-world challenges through the application of appropriate research methodologies, while demonstrating ethical responsibility, cultural awareness, and consideration of Indigenous perspectives. The ability to critically evaluate scholarly literature, develop evidence-based research proposals, collaborate effectively with peers, and communicate research methods and outcomes clearly through written and oral formats is essential for contemporary engineering practice. The ethical and responsible use of emerging technologies, including generative AI tools, further supports effective engineering research and professional decision-making.

 

 

Learning Outcomes

On successful completion of this unit you will be able to:

  1. Demonstrate independence in planning, scoping and conducting engineering research, including selection and justification of appropriate research methodologies, with consideration to Indigenous perspectives and ethical research practices.
  2. Identify, analyse and critically evaluate scholarly literature relevant to an engineering research questions to inform the development of a structured research proposal.
  3. Demonstrate advanced professional communication skills through discipline‑specific analytical documentation and presentations, incorporating ethical and responsible use of generative AI tools.
  4. Apply effective teamwork, peer discussions, and peer review practices in engineering research context demonstrating professionalism, cultural awareness and ethical responsibility.

Content

 

You will undertake an engineering research project that develops the knowledge and skills required to investigate and solve discipline-specific engineering problems. The unit covers the key stages of the research process, including problem identification and scoping, critical evaluation of scholarly literature, development of a structured research proposal, selection and justification of appropriate research methodologies, experimental design, and data collection and analysis using qualitative and quantitative methods. You will also develop skills in professional communication through the preparation of analytical reports, research documentation, and oral presentations. The unit emphasises ethical research practice, cultural awareness, consideration of Indigenous perspectives, responsible use of generative AI tools, peer collaboration and review, and the management of intellectual property. Through these activities, you will gain practical experience in conducting and communicating engineering research in a professional and responsible manner.

 

 

Learning Approaches

Teaching and learning approaches in this unit are centred on a systematic, evidence-based engineering research process, supported by interactive lectures, discussions, and engagement with professional and industry speakers. Through a combination of guided and self-directed learning activities, you will develop the skills required to plan, scope, and conduct engineering research, critically evaluate scholarly literature, and design appropriate research methodologies to address discipline-specific engineering challenges.

The unit incorporates lectures on information literacy, literature searching, referencing, and the use of QUT library resources and research databases. Lectures will also provide opportunities to explore qualitative and quantitative research methods, research design, data analysis techniques, and the ethical and responsible use of generative AI tools in engineering research and communication.

Collaborative learning is a key feature of the unit. You will participate in peer discussions, group activities, and peer review processes that promote the exchange of ideas, critical reflection, and constructive feedback. These activities are designed to develop teamwork, professionalism, cultural awareness, and ethical responsibility within engineering research contexts. Guided interactions with peers will support your ability to work effectively in diverse teams and contribute to a positive and inclusive learning environment.

The unit also emphasises culturally responsive and ethical engineering research practice, including consideration of Indigenous perspectives and the broader social, cultural, and ethical implications of engineering research. Through research activities and discussions, you will develop an understanding of the responsibilities of engineers in conducting research that is respectful, inclusive, and socially responsible.

Throughout the semester, you will progressively develop and communicate your research through a structured research proposal, an evidence-based research report and professional presentations. These activities will strengthen your ability to communicate engineering research effectively to a range of audiences and prepare you for professional engineering practice and future research endeavours.

 

 

Feedback on Learning and Assessment

You will receive feedback in various forms throughout the semester which may include:

1. Rubrics provided to show the expected standard for each criteria in an assessment item.
2. Comments returned to you via Canvas.
3. Lecture / consultation sessions may be available for group and individual feedback prior to assessment due dates and on completion of assessments. You are encouraged to view your team as a learning community and to share and discuss ideas in the research process and your understandings of culturally responsible professional engineering practice.
4. Generic comments provided via QUT Canvas and in class.

Assessment

Overview

All three assessments are formulated around a group project. Each group will choose a professional project of interest and write a project proposal with a number of relevant references. Individually, you will also critically evaluate selected publications and submit a annotated bibliography. At the end of the semester each group will submit and present a project report. Each group member will peer review and rate their own as well as other members' contributions and this may impact individual grade for group work. You will also demonstrate your developing critical communication skills and capacity for professional dialogue through your participation in peer group discussion exercises throughout the semester.

Unit Grading Scheme

7- point scale

Assessment Tasks

Assessment: Annotated bibliography

You will compile an annotated bibliography of scholarly sources related to an engineering research project by critically summarising each source’s purpose, methodology, key findings, and relevance to the project (20%). You will also demonstrate your developing critical communication skills and capacity for professional dialogue through your participation in peer group discussion exercises throughout the semester (5%).


The ethical and responsible use of generative artificial intelligence (GenAI) tools is authorised in this assessment. See the relevant assessment details in Canvas for specific guidelines.

This assignment is eligible for the 48-hour late submission period and assignment extensions.

Weight: 25
Length: 1000 words report
Individual/Group: Individual
Due (indicative): Week 4
Related Unit learning outcomes: 2, 3

Assessment: Project Proposal

As a group, you will submit a proposal (10%) for the project with evidence showing effective information literacy skills. Individuals will also be assessed through scaffolded peer review and an interview (20%) to discuss your contributions, demonstrate your understanding, and receive feedback. You will also complete and submit a team charter document demonstrating effective teamwork skills (5%).

The ethical and responsible use of generative artificial intelligence (GenAI) tools is authorised in this assessment. See the relevant assessment details in Canvas for specific guidelines.

The proposal report submission and team charter submission are eligible for the 48-hour late submission period and assignment extensions.

Weight: 35
Length: 1500 words report, 4-page team charter and a 5-minute interview.
Individual/Group: Individual and group
Due (indicative): Week 7
Related Unit learning outcomes: 1, 2, 4

Assessment: Report

As a group, you will prepare and submit a report (20%) that clearly defines the project problem, outlines the research methodology (including consideration of Indigenous research methodologies where appropriate), critically reviews relevant literature, presents findings, and provides evidence-based recommendations. You will also deliver a presentation (15%) to the teaching team on your preliminary findings and project progress. In addition, you will complete a peer review assessment (5%) evaluating the contributions and collaborative engagement of other project teams.

The ethical and responsible use of generative artificial intelligence (GenAI) tools is authorised in this assessment. See the relevant assessment details in Canvas for specific guidelines

The report component of the assignment is eligible for the 48-hour late submission period and assignment extensions.

Weight: 40
Length: 4500 words report and 10 minutes presentation
Individual/Group: Individual and group
Due (indicative): Week 13
Related Unit learning outcomes: 1, 3, 4

Academic Integrity

Academic integrity is a commitment to undertaking academic work and assessment in a manner that is ethical, fair, honest, respectful and accountable.

The Academic Integrity Policy sets out the range of conduct that can be a failure to maintain the standards of academic integrity. This includes, cheating in exams, plagiarism, self-plagiarism, collusion and contract cheating. It also includes providing fraudulent or altered documentation in support of an academic concession application, for example an assignment extension or a deferred exam.

You are encouraged to make use of QUT’s learning support services, resources and tools to assure the academic integrity of your assessment. This includes the use of text matching software that may be available to assist with self-assessing your academic integrity as part of the assessment submission process.

Breaching QUT’s Academic Integrity Policy or engaging in conduct that may defeat or compromise the purpose of assessment can lead to a finding of student misconduct (Code of Conduct – Student) and result in the imposition of penalties under the Management of Student Misconduct Policy, ranging from a grade reduction to exclusion from QUT.

Resources

Resource Materials

Recommended text(s)

Paul D. Leedy and Jeanne Ellis Ormrod, Practical Research: Planning and Design, 7th edition, published by Prentice Hall, Inc.

Other

You are also required to use the following:

  • The unit website on QUT's Canvas
  • QUT Library Databases:
  • QUT Cite| Write: You can access QUT cite/write online (Free download from QUT library)

Risk Assessment Statement

All commencing Faculty of Engineering students are required to complete the Mandatory Safety Induction

There are no extraordinary risks associated with the classroom/lecture activities in this unit.

Course Learning Outcomes

This unit is designed to support your development of the following course/study area learning outcomes.

BN87 Master of Engineering Management

  1. Apply advanced engineering management knowledge, concepts and practices in managing engineering systems and assets
    Relates to: ULO1, Annotated bibliography, Project Proposal
  2. Critically analyse and evaluate complex engineering management problems to achieve research informed solutions
    Relates to: ULO1, ULO2, ULO3, Annotated bibliography, Project Proposal
  3. Communicate complex information effectively and succinctly, presenting high level reports, arguments and justifications in oral, written and visual forms to professional and non-specialist audiences.
    Relates to: ULO3, ULO4, Annotated bibliography, Project Proposal, Report
  4. Organise and manage time, tasks and projects independently, and collaboratively demonstrating the values and principles that shape engineering management decision making and professional accountability .
    Relates to: ULO4, Project Proposal, Report

EN50 Master of Engineering

  1. Apply advanced discipline knowledge, concepts and practices in engineering systems and processes.
    Relates to: Annotated bibliography, Project Proposal
  2. Critically analyse and evaluate complex engineering problems to achieve research informed solutions.
    Relates to: Project Proposal, Report
  3. Apply systematic approaches to plan, design, execute and manage an engineering project.
    Relates to: Project Proposal, Report
  4. Communicate complex information effectively and succinctly, presenting high level reports, arguments and justifications in oral, written and visual forms to professional and non-specialist audiences.
    Relates to: Annotated bibliography, Project Proposal, Report
  5. Organise and manage time, tasks and projects independently, and collaboratively demonstrating the values and principles that shape engineering decision making and professional accountability.
    Relates to: Annotated bibliography, Report

EN51 Master of Sustainable Infrastructure

  1. Demonstrate and apply advanced and specialist discipline knowledge, concepts and practices as they relate to contemporary practice in Sustainable Infrastructure
    Relates to: Report
  2. Analyse and evaluate Sustainable Infrastructure problems using technical approaches informed by contemporary practice and leading edge research to achieve innovative, critically informed solutions 
    Relates to: Annotated bibliography, Report
  3. Apply innovative, systematic approaches to plan, design, deliver and manage projects in Sustainable Infrastructure in a way that assures sustainable outcomes over their whole lifecycle
    Relates to: Project Proposal, Report
  4. Effectively communicate Sustainable Infrastructure problems, related complex data and information, and solutions in contemporary professional formats for diverse purposes and audiences
    Relates to: Annotated bibliography, Project Proposal, Report
  5. Demonstrate ethically and socially responsible practice, recognising the importance of personal accountability and reflective practice when working in individual and collaborative modes
    Relates to: Project Proposal, Report
  6. Demonstrate an ability to research and apply established theories and plan and execute a substantial research-based project, cultivating an attitude of engineering innovation
    Relates to: Project Proposal, Report

EN52 Master of Robotics and Artificial Intelligence

  1. Demonstrate and apply advanced and specialist discipline knowledge, concepts and practices in Robotics and AI
    Relates to: Annotated bibliography, Report
  2. Critically analyse, evaluate and apply appropriate methods to Robotics and AI problems to achieve research-informed solutions
    Relates to: Annotated bibliography, Project Proposal, Report
  3. Apply systematic approaches to plan, design, execute and manage projects in Robotics and AI
    Relates to: Project Proposal, Report
  4. Communicate complex information effectively and succinctly in oral and written form for diverse purposes and audiences
    Relates to: Annotated bibliography, Report
  5. Work independently and collaboratively demonstrating ethical and socially responsible practice
    Relates to: Project Proposal, Report

EN53 Master of Renewable Energy

  1. Demonstrate and apply advanced and specialist discipline knowledge, concepts and practices as they relate to contemporary practice in Renewable Energy
    Relates to: Report
  2. Analyse and evaluate Renwable Energy problems using technical approaches informed by contemporary practice and leading edge research to achieve innovative, critically informed solutions
    Relates to: Annotated bibliography, Report
  3. Apply innovative, systematic approaches to plan, design, deliver and manage projects in Renewable Energy in a way that assures sustainable outcomes over their whole lifecycle
    Relates to: Project Proposal, Report
  4. Effectively communicate Renewable Energy problems, related complex data and information, and solutions in contemporary professional formats for diverse purposes and audiences
    Relates to: Annotated bibliography, Project Proposal, Report
  5. Demonstrate ethically and socially responsible practice, recognising the importance of personal accountability and reflective practice when working in individual and collaborative modes
    Relates to: Project Proposal, Report
  6. Demonstrate an ability to research and apply established theories and plan and execute a substantial research-based project, cultivating an attitude of engineering innovation
    Relates to: Project Proposal, Report

EN54 Master of Advanced Manufacturing

  1. Demonstrate and apply advanced and specialist theory-based discipline knowledge and concepts as they relate to contemporary practice in Advanced Manufacturing
    Relates to: Report
  2. Employ advanced specialist technical skills, analysis approaches, design, and data to the solution of problems in Advanced Manufacturing, critically evaluating solutions against practice-informed performance and whole-of-life requirements
    Relates to: Annotated bibliography, Report
  3. Develop and employ professional leadership skills and management frameworks to deliver projects, lead teams, and enact change within Advanced Manufacturing
    Relates to: Project Proposal, Report
  4. Implement professional communication and collaborative skills while engaging with stakeholders, exchanging ideas, and presenting complex information to specialist and non-specialist audiences
    Relates to: Annotated bibliography, Project Proposal, Report
  5. Demonstrate ethical and socially responsible practice, recognising the importance of personal accountability, and reflective practice
    Relates to: Project Proposal, Report
  6. Enact a holistic approach to sustainability in Advanced Manufacturing that embodies the principals of efficient, green, circular, and clean
    Relates to: Report
  7. Demonstrate an ability to research and apply established theories and plan and execute a substantial research-based project, cultivating an attitude of engineering innovation and creativity
    Relates to: Annotated bibliography, Project Proposal, Report

EN55 Master of Professional Engineering

  1. Apply advanced and specialist knowledge, concepts and practices in engineering design, analysis management and sustainability.
    Relates to: Annotated bibliography, Project Proposal, Report
  2. Critically analyse and evaluate complex engineering problems to achieve research informed solutions.
    Relates to: Annotated bibliography, Project Proposal
  3. Apply systematic approaches to plan, design, execute and manage an engineering project.
    Relates to: Annotated bibliography, Report
  4. Communicate complex information effectively and succinctly, presenting high level reports, arguments and justifications in oral, written and visual forms to professional and non specialist audiences.
    Relates to: Project Proposal, Report
  5. Organise and manage time, tasks and projects independently, and collaboratively demonstrating the values and principles that shape engineering decision making and professional accountability.
    Relates to: Report

EN56 Master of Engineering Technology

  1. Demonstrate and apply advanced and specialist discipline knowledge, concepts and practices as they relate to contemporary practice in Engineering Technology
    Relates to: Report
  2. Analyse and evaluate Engineering Technology problems using technical approaches informed by contemporary practice and leading edge research to achieve innovative, critically informed solutions
    Relates to: Annotated bibliography, Report
  3. Apply innovative, systematic approaches to plan, design, deliver and manage projects in Engineering Technology in a way that assures sustainable outcomes over their whole lifecycle
    Relates to: Project Proposal, Report
  4. Effectively communicate Engineering Technology problems, related complex data and information, and solutions in contemporary professional formats for diverse purposes and audiences
    Relates to: Annotated bibliography, Project Proposal, Report
  5. Demonstrate ethically and socially responsible practice, recognising the importance of personal accountability and reflective practice when working in individual and collaborative modes
    Relates to: Project Proposal, Report
  6. Demonstrate an ability to research and apply established theories and plan and execute a substantial research-based project, cultivating an attitude of engineering innovation
    Relates to: Project Proposal, Report

EN57 Master of Biomedical Systems and Technology

  1. Demonstrate and apply advanced specialist discipline knowledge, concepts and practices in the context of contemporary Biomedical Engineering practice, Technologies and Systems thinking.
    Relates to: Report
  2. Employ advanced technical knowledge, informed by contemporary practice, and inclusive of user and system needs, to the design and critical analysis of innovative solutions to Biomedical challenges in Healthcare.
    Relates to: Annotated bibliography, Report
  3. Apply innovative, systematic frameworks to plan, design, manage and deliver projects where knowledge of Biomedical Systems and Technology are critical to enacting change in Healthcare.
    Relates to: Project Proposal, Report
  4. Implement professional communication and collaborative skills while engaging with stakeholders, exchanging ideas, and presenting complex information in contemporary formats to specialist and non-specialist audiences.
    Relates to: Annotated bibliography, Project Proposal, Report
  5. Demonstrate ethically and socially responsible practice, recognising the importance of personal accountability, reflective practice, and collaborative design, when working with stakeholders, both individually and as a group, from diverse disciplines.
    Relates to: Project Proposal, Report
  6. Demonstrate an ability to research and apply established theories, and plan and execute a substantial research-based project, cultivating an attitude of engineering innovation.
    Relates to: Project Proposal, Report

EN71 Master of Sustainable Infrastructure with Project Management

  1. Demonstrate and apply advanced and specialist discipline knowledge, concepts, methods and practices as they relate to contemporary practice in Sustainable Infrastructure and Project Management domains
    Relates to: Report
  2. Analyse and evaluate problems in Sustainable Infrastructure and Project Management domains using technical approaches informed by contemporary practice and leading-edge research to achieve evidence based, innovative, critically informed solutions and outcomes
    Relates to: Annotated bibliography, Report
  3. Apply innovative, systematic approaches to plan, design, deliver and manage projects in Sustainable Infrastructure and Project Management domains in a way that assures sustainable outcomes and strategic objectives over their whole lifecycle
    Relates to: Project Proposal, Report
  4. Effectively communicate problems in Sustainable Infrastructure and Project Management domains, related complex data and information, and solutions in contemporary professional formats for diverse purposes and audiences
    Relates to: Annotated bibliography, Project Proposal, Report
  5. Demonstrate ethically and socially responsible practice, recognising the importance of personal accountability, reflective practice, risk-informed judgements, and leadership
    Relates to: Project Proposal, Report
  6. Demonstrate an ability to research and apply established theories and plan and execute a substantial research-based project, cultivating an attitude of engineering innovation
    Relates to: Project Proposal, Report

EN72 Master of Advanced Robotics and Artificial Intelligence

  1. Demonstrate and apply advanced and specialist discipline knowledge, concepts and practices in Advanced Robotics and AI and Data Analytics domains
    Relates to: Annotated bibliography, Report
  2. Critically analyse, evaluate and apply appropriate methods to problems to achieve research-informed solutions in Advanced Robotics and AI and Data Analytics domains
    Relates to: Annotated bibliography, Report
  3. Apply systematic approaches to plan, design, execute and manage projects in Advanced Robotics and AI and Data Analytics domains
    Relates to: Project Proposal, Report
  4. Communicate complex information effectively and succinctly in oral and written form for diverse purposes and audiences
    Relates to: Annotated bibliography, Project Proposal, Report
  5. Work independently and collaboratively demonstrating ethical and socially responsible practice
    Relates to: Project Proposal, Report
  6. Demonstrate an ability to research and apply established theories and plan and execute a substantial research-based project, cultivating an attitude of engineering innovation
    Relates to: Project Proposal, Report

EN73 Master of Renewable Energy with Project Management

  1. Demonstrate and apply advanced and specialist discipline knowledge, concepts, methods and practices as they relate to contemporary practice in Renewable Energy and Project Management domains
    Relates to: Report
  2. Analyse and evaluate problems in Renewable Energy and Project Management domains using technical approaches informed by contemporary practice and leading-edge research to achieve evidence based, innovative, critically informed solutions and outcomes
    Relates to: Annotated bibliography, Report
  3. Apply innovative, systematic approaches to plan, design, deliver and manage projects in Renewable Energy and Project Management domains in a way that assures sustainable outcomes and strategic objectives over their whole lifecycle
    Relates to: Project Proposal, Report
  4. Effectively communicate problems in Renewable Energy and Project Management domains, related complex data and information, and solutions in contemporary professional formats for diverse purposes and audiences
    Relates to: Annotated bibliography, Project Proposal, Report
  5. Demonstrate ethically and socially responsible practice, recognising the importance of personal accountability, reflective practice, risk-informed judgements, and leadership
    Relates to: Project Proposal, Report
  6. Demonstrate an ability to research and apply established theories and plan and execute a substantial research-based project, cultivating an attitude of engineering innovation
    Relates to: Project Proposal, Report

EN74 Master of Advanced Manufacturing with Project Management

  1. Demonstrate and apply advanced and specialist theory-based discipline knowledge, concepts, methods and practices as they relate to contemporary practice in Advanced Manufacturing and Project Management domains
    Relates to: Report
  2. Employ advanced specialist technical skills, analysis approaches, design, and data to the solution of problems in Advanced Manufacturing and Project Management domains, critically evaluating solutions and practice-informed performance to deliver whole of life requirements and strategic objectives
    Relates to: Annotated bibliography, Report
  3. Develop and employ professional leadership skills and management frameworks to deliver projects, lead teams, and enact change in Advanced Manufacturing and Project Management domains
    Relates to: Project Proposal, Report
  4. Implement professional communication and collaborative skills while engaging with stakeholders, exchanging ideas, and presenting complex information to specialist and non-specialist audiences in Advanced Manufacturing and Project Management domains
    Relates to: Annotated bibliography, Project Proposal, Report
  5. Demonstrate ethical and socially responsible practice, recognising the importance of personal accountability, and reflective practice, risk-informed judgements, and leadership
    Relates to: Project Proposal, Report
  6. Enact a holistic approach to sustainability in Advanced Manufacturing that embodies the principals of efficient, green, circular, and clean
    Relates to: Report
  7. Demonstrate an ability to research and apply established theories and plan and execute a substantial research-based project, cultivating an attitude of engineering innovation and creativity
    Relates to: Annotated bibliography, Project Proposal, Report

EN75 Master of Sustainable Infrastructure with Data Analytics

  1. Demonstrate and apply advanced and specialist discipline knowledge, concepts, methods and practices as they relate to contemporary practice in Sustainable Infrastructure and Data Analytics domains
    Relates to: Report
  2. Analyse and evaluate problems in Sustainable Infrastructure and Data Analytics domains using technical approaches informed by contemporary practice and leading-edge research to achieve evidence based, innovative, critically informed solutions and outcomes
    Relates to: Annotated bibliography, Report
  3. Apply innovative, systematic approaches to plan, design, deliver and manage projects in Sustainable Infrastructure and Data Analytics domains in a way that assures sustainable outcomes and strategic objectives over their whole lifecycle
    Relates to: Project Proposal, Report
  4. Effectively communicate problems in Sustainable Infrastructure and Data Analytics domains, related complex data and information, and solutions in contemporary professional formats for diverse purposes and audiences
    Relates to: Annotated bibliography, Project Proposal, Report
  5. Demonstrate ethically and socially responsible practice, recognising the importance of personal accountability, reflective practice, risk-informed judgements, and leadership
    Relates to: Project Proposal, Report
  6. Demonstrate an ability to research and apply established theories and plan and execute a substantial research-based project, cultivating an attitude of engineering innovation
    Relates to: Project Proposal, Report

EN76 Master of Renewable Energy with Data Analytics

  1. Demonstrate and apply advanced and specialist discipline knowledge, concepts, methods and practices as they relate to contemporary practice in Renewable Energy and Data Analytics domains
    Relates to: Report
  2. Analyse and evaluate problems in Renewable Energy and Data Analytics domains using technical approaches informed by contemporary practice and leading-edge research to achieve evidence based, innovative, critically informed solutions and outcomes
    Relates to: Annotated bibliography, Report
  3. Apply innovative, systematic approaches to plan, design, deliver and manage projects in Renewable Energy and Data Analytics domains in a way that assures sustainable outcomes and strategic objectives over their whole lifecycle
    Relates to: Project Proposal, Report
  4. Effectively communicate problems in Renewable Energy and Data Analytics domains, related complex data and information, and solutions in contemporary professional formats for diverse purposes and audiences
    Relates to: Annotated bibliography, Project Proposal, Report
  5. Demonstrate ethically and socially responsible practice, recognising the importance of personal accountability, reflective practice, risk-informed judgements, and leadership
    Relates to: Project Proposal, Report
  6. Demonstrate an ability to research and apply established theories and plan and execute a substantial research-based project, cultivating an attitude of engineering innovation
    Relates to: Project Proposal, Report

EN77 Master of Advanced Manufacturing with Data Analytics

  1. Demonstrate and apply advanced and specialist theory-based discipline knowledge, concepts, methods and practices as they relate to contemporary practice in Advanced Manufacturing and Data Analytics domains
    Relates to: Report
  2. Employ advanced specialist technical skills, analysis approaches, design, and data to the solution of problems in Advanced Manufacturing and Data Analytics domains, critically evaluating solutions and practice-informed performance to deliver whole of life requirements and strategic objectives
    Relates to: Annotated bibliography, Report
  3. Develop and employ professional leadership skills and management frameworks to deliver projects, lead teams, and enact change in Advanced Manufacturing and Data Analytics domains
    Relates to: Project Proposal, Report
  4. Implement professional communication and collaborative skills while engaging with stakeholders, exchanging ideas, and presenting complex information to specialist and non-specialist audiences in Advanced Manufacturing and Data Analytics domains
    Relates to: Annotated bibliography, Project Proposal, Report
  5. Demonstrate ethical and socially responsible practice, recognising the importance of personal accountability, and reflective practice, risk-informed judgements, and leadership
    Relates to: Project Proposal, Report
  6. Enact a holistic approach to sustainability in Advanced Manufacturing that embodies the principals of efficient, green, circular, and clean
    Relates to: Report
  7. Demonstrate an ability to research and apply established theories and plan and execute a substantial research-based project, cultivating an attitude of engineering innovation and creativity
    Relates to: Annotated bibliography, Project Proposal, Report

EN79 Graduate Diploma in Engineering Studies

  1. Demonstrate and apply advanced discipline knowledge, concepts and practices as they relate to contemporary Engineering practice
    Relates to: Report
  2. Analyse and evaluate Engineering problems using technical approaches informed by contemporary practice and leading edge research to achieve innovative, critically informed solutions
    Relates to: Annotated bibliography, Project Proposal, Report
  3. Apply innovative, systematic approaches to plan, design, deliver and manage Engineering projects in a way that assures sustainable outcomes over their whole lifecycle
    Relates to: Project Proposal, Report
  4. Effectively communicate Engineering problems, related complex data and information, and solutions in contemporary professional formats for diverse purposes and audiences
    Relates to: Annotated bibliography, Project Proposal, Report
  5. Demonstrate ethically and socially responsible practice, recognising the importance of personal accountability and reflective practice when working in individual and collaborative modes
    Relates to: Project Proposal, Report