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Fluids and Electromagnetism
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Related lectures (51)
Continuity Equations: Internal Entropy Production
Explores continuity equations and internal entropy production in various coordinate systems, emphasizing scalar functions and vector quantities.
Introduction to Fluid Mechanics
Covers the basics of fluid mechanics, including fluid properties, pressure, viscosity, and fluid behavior at rest and in motion.
Symmetries and Conservation Laws
Covers symmetries and conservation laws in fluid dynamics, emphasizing the importance of maximizing symmetries in ideal fluid systems.
Inviscid Flows: Understanding Fluid Dynamics
Explores inviscid flows, Reynolds number importance, linear deformations, and volume change in fluid dynamics.
Introduction to Fluid Mechanics: Basic Principles and Properties
Introduces fluid mechanics, covering definitions, fundamental laws, and properties of fluids.
Untitled
Tensor Transformations
Introduces tensor transformations, rotation matrices, and differential operators in mechanics.
Turbulence: Numerical Flow Simulation
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Explores turbulence characteristics, simulation methods, and modeling challenges, providing guidelines for choosing and validating turbulence models.
Divergence Theorem: Green Identities in R²
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Explores the divergence theorem and corollaries related to Green identities in the plane, demonstrating their application through examples.
Curve Integrals of Vector Fields
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Explores curve integrals of vector fields, emphasizing energy considerations for motion against or with wind, and introduces unit tangent and unit normal vectors.
Vector Analysis: Basics and Applications
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Explores the importance of vector analysis in physics and engineering, showcasing its application in various laws and relationships.
Fluids and Electromagnetism
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Explores fluid flow, Bernoulli's theorem violation, viscosity, and necessary force for rotating cylinders with different fluids.
Vector Calculus Review: Maxwell Equations
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Covers a review of vector calculus and the Maxwell equations in electromagnetism.
Vector Analysis: Gradient, Divergence, Curl
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Covers the fundamental concepts of vector analysis, including the gradient, divergence, and curl operators.
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General Physics: Fluids and Electromagnetism
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Covers hydrodynamic and electromagnetic principles for second-semester mathematics students.
Curve Integrals: Gauss/Green Theorem
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Explores the application of the Gauss/Green theorem to calculate curve integrals along simple closed curves.
Fluid Kinematics: Euler/Lagrange
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Covers fluid kinematics, Eulerian and Lagrangian descriptions, total derivative, rotation, vorticity, and Laplacian in fluid dynamics.
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Fluid Dynamics: Navier-Stokes Equations
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Explores fluid dynamics, covering Navier-Stokes equations, momentum conservation, stresses, and dimensional analysis.
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