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Lecture
Hydrostatics: Forces on Dams
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Related lectures (27)
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Explores pressure in fluids, hydrostatic paradox, and atmospheric pressure measurement with the mercury barometer.
Hydrostatic Pressure: Theory and Applications
Explores hydrostatic pressure theory, Archimedes' principle, force density, and surface tension.
Force with Magnets
Covers the concept of force between magnets and coils, exploring examples of attraction forces.
Magnetostatics: Magnetic Field and Force
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Electricity and Resistance
Explains electricity, resistance, and drift velocity, including the concept of resistivity in various scenarios.
Angular Momentum: Kinetic and Cinematic Concepts
Covers the concepts of angular momentum and central forces.
Distributed Forces: Center of Forces
Covers the classification of distributed forces and the calculation of centroids for different shapes.
Work and Energy
Explores work, kinetic energy, forces, and energy conservation in mechanical systems.
Fluid Mechanics: Fundamentals and Applications
Covers fundamental concepts in fluid physics, emphasizing material balances and real-world applications.
Electric Current: Definitions and Concepts
Covers the concept of electric current and its conditions for flow.
Gravity Dams: Construction and Safety
Explores the construction and safety of gravity dams, focusing on reducing pushing forces and ensuring earthquake safety.
Fluid Mechanics: Pressure and Forces
Explores pressure and forces in fluid mechanics, including calculations and relationships between them.
Newton's Laws of Motion
Introduces Newton's laws of motion, covering force, mass, frames of reference, and practical examples like friction and springs.
Fluid Mechanics: Concepts and Applications
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Potential Energy and Conservation of Energy
Explores potential energy, conservation of energy, power of gravity, and cliff jumping scenarios.
Application of Maxwell Tensor
Explores the application of the Maxwell tensor in force of attraction examples.
Potential Energy and Conservation of Energy
Explores potential energy, energy conservation, power, force, and energy diagrams, emphasizing the conservation of mechanical energy and tension in a pendulum.
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Explores hydrostatics, Archimedes principle, streamlines, and Newton's second law in fluid dynamics.
Dynamics of Rotation: Forces and Moments
Covers the dynamics of rotation, focusing on forces and moments, including the concept of torque and the importance of lever arms.
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Explores sizing reservoirs and dams using cumulative flow curves and tank dimensioning for dry and rainy periods.
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