| 1 | <p>Understand and specify appropriate composite material manufacturing processes for both long- and short-fibre composites, considering cost, performance and environmental impact.</p> | <p>BE(Hons) - Bachelor of Engineering (Honours) - Programme Capabilities <p>Analyse and evaluate the impact of professional engineering work to solve complex engineering problems in societal and environmental contexts with holistic considerations for sustainable development (WA7)</p> <p>Apply knowledge of mathematics, natural science, computing and engineering fundamentals, and an engineering specialisation, considering multiple perspectives and knowledge systems to develop solutions to complex engineering problems (WA1)</p> <p>Create, select, apply, and recognize limitations of appropriate techniques, resources, and modern engineering and IT tools, including measurements, modelling and prediction, to solve complex engineering problems (WA5)</p> </p> |
| 2 | <p>Identify the roles of constituent materials of composites in relation to strength and stiffness, computing effective properties using the rules of mixtures and applying transformations to determine stresses and strains in a lamina of varying angles</p> | <p>BE(Hons) - Bachelor of Engineering (Honours) - Programme Capabilities <p>Apply knowledge of mathematics, natural science, computing and engineering fundamentals, and an engineering specialisation, considering multiple perspectives and knowledge systems to develop solutions to complex engineering problems (WA1)</p> <p>Create, select, apply, and recognize limitations of appropriate techniques, resources, and modern engineering and IT tools, including measurements, modelling and prediction, to solve complex engineering problems (WA5)</p> <p>Use knowledge of mathematics, natural sciences and engineering principles, and research literature to identify, formulate, analyse and solve complex engineering problems and reach substantiated conclusions (WA2)</p> </p> |
| 3 | <p>Understand and apply generalised Hooke’s Law to compute stresses and strains in composite materials</p> | <p>BE(Hons) - Bachelor of Engineering (Honours) - Programme Capabilities <p>Apply knowledge of mathematics, natural science, computing and engineering fundamentals, and an engineering specialisation, considering multiple perspectives and knowledge systems to develop solutions to complex engineering problems (WA1)</p> <p>Create, select, apply, and recognize limitations of appropriate techniques, resources, and modern engineering and IT tools, including measurements, modelling and prediction, to solve complex engineering problems (WA5)</p> <p>Use knowledge of mathematics, natural sciences and engineering principles, and research literature to identify, formulate, analyse and solve complex engineering problems and reach substantiated conclusions (WA2)</p> </p> |
| 4 | <p>Analyse composite materials using classical lamination theory.</p> | <p>BE(Hons) - Bachelor of Engineering (Honours) - Programme Capabilities <p>Apply knowledge of mathematics, natural science, computing and engineering fundamentals, and an engineering specialisation, considering multiple perspectives and knowledge systems to develop solutions to complex engineering problems (WA1)</p> <p>Create, select, apply, and recognize limitations of appropriate techniques, resources, and modern engineering and IT tools, including measurements, modelling and prediction, to solve complex engineering problems (WA5)</p> <p>Use knowledge of mathematics, natural sciences and engineering principles, and research literature to identify, formulate, analyse and solve complex engineering problems and reach substantiated conclusions (WA2)</p> </p> |
| 5 | <p>Apply lamina failure theories to laminated composites, incorporating consideration of health and safety</p> | <p>BE(Hons) - Bachelor of Engineering (Honours) - Programme Capabilities <p>Apply contextual knowledge to assess societal, health and safety, legal and cultural issues (including the principles of Te Tiriti O Waitangi), to solve complex engineering problems in accordance with responsibilities relevant to professional engineering practice locally, in Te Moananui-ā-Kiwa and the world (WA6)</p> <p>Apply knowledge of mathematics, natural science, computing and engineering fundamentals, and an engineering specialisation, considering multiple perspectives and knowledge systems to develop solutions to complex engineering problems (WA1)</p> <p>Create, select, apply, and recognize limitations of appropriate techniques, resources, and modern engineering and IT tools, including measurements, modelling and prediction, to solve complex engineering problems (WA5)</p> <p>Use knowledge of mathematics, natural sciences and engineering principles, and research literature to identify, formulate, analyse and solve complex engineering problems and reach substantiated conclusions (WA2)</p> </p> |
| 6 | <p>Use Finite Element Analysis to predict the structural performance of composite structures, including in the design of laminates</p> | <p>BE(Hons) - Bachelor of Engineering (Honours) - Programme Capabilities <p>Create, select, apply, and recognize limitations of appropriate techniques, resources, and modern engineering and IT tools, including measurements, modelling and prediction, to solve complex engineering problems (WA5)</p> <p>Use knowledge of mathematics, natural sciences and engineering principles, and research literature to identify, formulate, analyse and solve complex engineering problems and reach substantiated conclusions (WA2)</p> <p>Design creative solutions for complex engineering problems and design systems, components or processes to meet identified needs with appropriate consideration for public health and safety, whole-life cost, net zero carbon, as well as resource, cultural, societal, and environmental considerations as required (WA3)</p> <p>Communicate effectively, respectfully and inclusively on complex engineering activities with the engineering community and with society at large, such as being able to comprehend and write effective reports and design documentation, make effective presentations, taking into account cultural, language, and learning differences using a range of technologies and formats (WA10)</p> </p> |
| 7 | <p>Understand and apply design principles for composite laminates and structures, considering both mechanical performance and the 'triple bottom line'.</p> | <p>BE(Hons) - Bachelor of Engineering (Honours) - Programme Capabilities <p>Apply contextual knowledge to assess societal, health and safety, legal and cultural issues (including the principles of Te Tiriti O Waitangi), to solve complex engineering problems in accordance with responsibilities relevant to professional engineering practice locally, in Te Moananui-ā-Kiwa and the world (WA6)</p> <p>Apply knowledge of mathematics, natural science, computing and engineering fundamentals, and an engineering specialisation, considering multiple perspectives and knowledge systems to develop solutions to complex engineering problems (WA1)</p> <p>Design creative solutions for complex engineering problems and design systems, components or processes to meet identified needs with appropriate consideration for public health and safety, whole-life cost, net zero carbon, as well as resource, cultural, societal, and environmental considerations as required (WA3)</p> <p>Communicate effectively, respectfully and inclusively on complex engineering activities with the engineering community and with society at large, such as being able to comprehend and write effective reports and design documentation, make effective presentations, taking into account cultural, language, and learning differences using a range of technologies and formats (WA10)</p> </p> |
| 8 | <p>Analyse the structural performance of sandwich structures considering a range of failure modes and design approaches.</p> | <p>BE(Hons) - Bachelor of Engineering (Honours) - Programme Capabilities <p>Apply knowledge of mathematics, natural science, computing and engineering fundamentals, and an engineering specialisation, considering multiple perspectives and knowledge systems to develop solutions to complex engineering problems (WA1)</p> <p>Create, select, apply, and recognize limitations of appropriate techniques, resources, and modern engineering and IT tools, including measurements, modelling and prediction, to solve complex engineering problems (WA5)</p> <p>Use knowledge of mathematics, natural sciences and engineering principles, and research literature to identify, formulate, analyse and solve complex engineering problems and reach substantiated conclusions (WA2)</p> </p> |