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MECH 3314 Fluid Mechanics 

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This MECH 3314 Fluid Mechanics course provides students with an introduction to principal concepts and methods of fluid mechanics. The course is quite wide and encompasses numerous topics, such as, fluid characteristics, hydrostatics, fluid flow concepts and basic equations, dimensional analysis, viscous effects, fluid resistance, laminar and turbulent boundary layers, circulation pipelines.

Learning outcomes:

1. Clarify the characteristics that distinguish fluids from other forms of matter, and a wide range of engineering applications, including fluid mechanics.

2. Apply the concepts of the physics of flow through conservation laws.

3. Use Integration and Differentiation to correctly apply Newton's Second Law to analysis and design using static fluids.

4. Appropriately apply mass and momentum conservation volume control systems and methods for the analysis and design of engineering fluid systems.

5. Correctly apply the conservation of mass and momentum to stable internal (pipe) flow, correctly interpret and apply the laminar flow and turbulence models, and evaluate the head loss and power requirements of the piping system.

6. Build a mathematical model using a reasonable approximation, correctly explain and apply the "inviscid" approximation and Bernoulli relationship to analyze the fluid system, and evaluate the level of approximation in the engineering model.

7. Apply the basic principles of dimensional uniformity to engineering analysis and apply dimensional analysis and similarity to data presentation. Explain correctly the Reynolds number and other basic dimensionless parameter.

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