TEACHING AND LEARNING


  • Fluids Mechanics I (SKMM 2313 / SEMM 2313)

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    Introduction to the fundamental physical properties of fluids. Introduction to the concept of pressure. Derivation of the hydrostatic pressure equation and its application in the measurement of pressure. Static force analysis due to immersed surfaces. Floatation and buoyancy analyses. Introduction to dynamic flow analysis inclusive of techniques in solving flow problems. Derivation of Bernoulli equation in flow measurement, mass flow rate and loss in pipe inclusive of pipe network. Dimensional analysis and similarities. [Read more…..]
  • Fluids Mechanics II (SKMM 2323 / SEMM 2323)

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    This course is designed to enhance the basic knowledge that has been developed in the first stage of Fluid Mechanics (SKMM 2313) and expose the students in analyzing hydrodinamically the flow field. It will emphasize on the analysis and the importance on boundary layer, ideal and compressible flow in a practical engineering applications. The course will also provide the analysis of flow through fluid machines such as pump and turbine. At the end of the course, students should be able to demonstrate and apply the theory to solve problems related to flow of fluids. [Read more…..]
  • Hydraulic Machine and Pipe Systems (SKMM 4343)

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    This course is designed to enhance the knowledge in fluid mechanics. Understanding the principle of open channel flow and the calculation to determine the flowrate. Basic elements of water flow in pipes which are applied to practical problems in pipelines and networks for steady, quasi-steady and unsteady flow are emphasized. Analysis of flow distribution using Hardy-Cross method will be practiced. Pressure wave and water hammer analysis will be introduced. This course will also provide the analysis of pump operation and pipe system. Various pump type such as centrifugal pump, axial pump and positive displacement pump will be introduced and analysed. [Read more…..]
  • Research Methodology (MKMM 1903)

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    This course aims to provide students with fundamental knowledge of research and the methodologies commonly used in engineering. It encompasses literature review, problem formulation, designing research methods, analysis methods and report writing. [Read more…..]
  • Advanced Fluid Mechanics / Viscous Flow (MKMM 1313)

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    This course is intended for graduate students wishing to have deep understanding in viscous flow and boundary layer. In this course, it starts with basic properties of fluid and derivation of basic equations for simple viscous flow problems. Student also will be introduced the boundary condition for viscous flow problems. Then, the derivation of basic equation of viscous flow regarded to conservation of mass, conservation of momentum and energy equation will be introduced. After that, a set of equations based from the conservation of momentum were used to solve Couette flow and Poiseuille flow. Finally, applying the momentum equation to solve boundary layer related engineering problems and incompressible turbulent mean flow problems. [Read more…..]
  • Graduate Success Attribute (UHAK 1012 / UHWK 1012)

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    This course aims to serve the need of the students to understand and apply the attribute of UTM graduate skills. The course guides students in developing basic skills which consist of communication, thinking, scholarship, teamwork & leadership, adaptability, global citizenship and enterprising skills. This course also prepares them to face the real challenging world. In this course, students will be assessed through various class activities such as individual case study and group project. [Read more…..]