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Related lectures (13)
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Viscosity and Fluid Behavior
Explores stress, flow, density, viscosity, and fluid behavior under various constraints.
Prandtl Equations: Boundary Layer Analysis
Explains Prandtl equations, dominant balance, and boundary layer analysis in fluid dynamics.
Oscillations amorties, derivation
Covers damped oscillations and the method to solve them with detailed examples.
DC Motor Speed Control
Covers the dynamics of a DC motor and open-loop block diagrams.
Energy Conservation: The First Law of Thermodynamics
Covers the first law of thermodynamics, focusing on energy conservation and its implications in fluid dynamics.
Navier-Stokes Equations: Hydrodynamics Fundamentals
Covers the fundamentals of hydrodynamics, including the Navier-Stokes equations and stresses in fluids.
Boundary Layer: Blasius Solution
Explores the Blasius solution for boundary layer analysis and drag force calculations.
Friction and Ballistics: Laws and Equations
Explores the laws and equations of ballistic motion with friction, focusing on the impact of viscous friction on velocity.
Friction Models: Dry and Viscous
Explores dry and viscous friction models, Hooke's law, problem-solving strategies, and ballistic motion examples.
Boundary layer: introduction
Introduces the boundary layer concept, discussing its impact on drag forces and the limitations of inviscid flow theory.
Friction and Energy Concepts
Explores friction laws and energy concepts, including potential energy and different types of friction.
Mechanics: Forces and Friction
Introduces mechanics concepts such as forces, friction, and problem-solving with Newton's laws.
Forces and Friction: Understanding Mechanical Interactions
Explores elastic deformation, Hooke's Law, friction models, viscous friction, and Newton's laws in practical scenarios.
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