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Lecture
Dynamics: Forces and Pressure
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Related lectures (27)
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Fluid Mechanics: Hydrostatics
Introduces hydrostatics, covering fluid definition, pressure, forces, buoyancy, Pascal's law, and pressure applications.
Modes of Momentum Transport and Viscosity
Explores momentum transport modes, fluid density, viscosity, and Newton's law, with examples and exercises.
Fluid Dynamics: Principles and Applications
Provides an overview of fluid dynamics principles, focusing on pressure differences and hydrostatic equilibrium in various fluid systems.
Forces and Pressure: Understanding Newton's Laws
Covers the fundamental concepts of forces and pressure, focusing on Newton's laws.
Linear Momentum Conservation and Stress in Continuum
Explores the conservation of linear momentum and stress in a continuum, focusing on governing equations and constitutive laws.
Newton's Laws and Forces
Explores Newton's laws of motion, emphasizing inertia, force, and acceleration, with a focus on empirical forces and experimental verification.
Dynamics: Archimedes' Principle
Explains Newton's laws, momentum, and Archimedes' principle, illustrating how objects float or sink in fluids.
Geometric Locus and Mechanics
Covers geometric locus, cone sections, Kepler's problem, Newton's laws, and conservation laws.
Dynamics: Friction and Acceleration
Explores dynamics with friction, acceleration, and forces in inclined planes.
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.