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Fluid Mechanics: Hydrostatics and Archimedes' Principle
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Related lectures (30)
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Dynamics: Archimedes' Principle
Explains Newton's laws, momentum, and Archimedes' principle, illustrating how objects float or sink in fluids.
Pressure Forces and Curvilinear Abscissa
Covers pressure forces, mmHg unit, and curvilinear abscissa in a moving frame.
Pressure Calculation and Forces on Submerged Surfaces
Explains pressure calculation, manometry, and forces on submerged surfaces, emphasizing the importance of understanding centroids and resultant forces.
Buoyant Force: Archimedes' Principle
Explains Archimedes' principle: an object in fluid experiences an upward force.
Equilibrium of Floating Bodies
Covers the equilibrium of floating bodies and pressure forces in fluids.
Fluid statics: Hydrostatic Pressure and Forces
Explores hydrostatic pressure, equilibrium in fluid containers, pressure measurements, and forces on surfaces and submerged bodies.
Electromagnetic Waves and Energy Transfer
Explores electromagnetic waves, energy transfer by photons, and fluid pressure fundamentals.
General Physics for Pharmacy
Covers kinetic energy of gases, pressure, fluid mechanics, thermal properties, heat transfer, dilatation, and energy transfer.
Changes of Reference Frames: Deriving Formulas and Applications
Covers the derivation of formulas for velocity and acceleration changes when switching frames, with practical examples like the Foucault pendulum.
Fluid Statics Experiments
Showcases experiments on fluid statics, illustrating the effects of pressure differentials and Archimedes' buoyancy in practical demonstrations.