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Fluid Dynamics: Understanding Stationary Liquids and Bernoulli's Principle
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Conservation Laws and Bernoulli Equation
Covers conservation laws in fluid dynamics, including the Venturi effect and Bernoulli equation.
Understanding Viscosity: Newtonian Fluids
Explores viscosity in Newtonian fluids, discussing shear stress, shear strain rate, and compressibility, with examples of shear thickening and shear thinning behaviors.
Drag on a Sphere and Newtonian Fluid Mechanics
Covers the analysis of drag on a sphere in Newtonian fluid mechanics, focusing on key parameters and the significance of Reynolds number.
Hydrostatics: Understanding Fluid Behavior at Rest
Covers hydrostatics, focusing on fluids at rest and the behavior of pressure within them.
Energy Conservation: The First Law of Thermodynamics
Covers the first law of thermodynamics, focusing on energy conservation and its implications in fluid dynamics.
Fluid Dynamics: Understanding Viscosity and Shear Stress
Explores fluid dynamics, focusing on viscosity and its role in fluid behavior.
Fluid Mechanics: Bernoulli's Equation and Applications
Discusses Bernoulli's equation and its applications in fluid mechanics, including practical examples like pitot tubes and venturi meters.
Continuity Equation, Newton's 2nd Law in Eulerian Concept
Covers the continuity equation for steady laminar flow and Newton's 2nd law.
Introduction to Transport Phenomena: Bernoulli's Equation
Covers Bernoulli's equation and its applications in fluid flow problems, including continuity, friction factors, and practical examples.
Incompressible Fluid Mechanics
Explores incompressible fluid mechanics, covering viscosity, pressure distribution, force balance, and neglecting shearing faces.