| 1 | <p>Develop and demonstrate skills in defining the underlying mechanisms involved by building on the structural/geological interpretation learned from Introductory Engineering Geology.</p> | <p>MEngSt - Master of Engineering Studies - 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>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> |
| 2 | <p>Use the concepts of shear strength and groundwater from CIVIL200 (Introduction to Geotechnical Engineering) and CIVIL300 (Geotechnical Engineering) and expand these to deal with more competent materials with structural discontinuities.</p> | <p>MEngSt - Master of Engineering Studies - 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>Conduct investigations of complex engineering problems using research methods, research-based knowledge, design of experiments, analysis and interpretation of data, and synthesis of information to provide valid conclusions (WA4)</p> </p> |
| 3 | <p>Develop analysis skills, including both manual computation and computer-based methods (GeoSuite software)</p> | <p>MEngSt - Master of Engineering Studies - 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>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> |
| 4 | <p>Understand and appreciate various remedial, monitoring and risk management techniques with considerations of social, ethical and professional responsibilities.</p> | <p>MEngSt - Master of Engineering Studies - 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>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>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>Use lessons from case histories and apply knowledge obtained to address a real-life project, including cost-benefit analysis and impact of engineering works on slope stability.</p> | <p>MEngSt - Master of Engineering Studies - 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>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> |