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Fluids and Electromagnetism
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Related lectures (29)
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Inviscid Flows: Understanding Fluid Dynamics
Explores inviscid flows, Reynolds number importance, linear deformations, and volume change in fluid dynamics.
Kinetic Theory: Distribution Function Evolution
Explores the evolution of the distribution function describing particles in phase space.
Surface Integrals, Divergence Theorem and Stocks' Theorem
Covers surface integrals, the divergence theorem, and Stocks' theorem through examples and analogies.
Hydrostatic Pressure: Theory and Applications
Explores hydrostatic pressure theory, Archimedes' principle, force density, and surface tension.
Introduction to Fluid Mechanics: Basic Principles and Properties
Introduces fluid mechanics, covering definitions, fundamental laws, and properties of fluids.
Understanding Positive and Negative Orientation in Curves
Explores positive and negative orientation in curves, emphasizing their impact on tangent and normal vectors.
Newton's 2nd Law: Fluid Dynamics
Discusses Newton's 2nd Law in fluid dynamics and incompressible Newtonian fluids.
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Tensor Transformations
Introduces tensor transformations, rotation matrices, and differential operators in mechanics.