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Linear Momentum Conservation and Stress in Continuum
Explores the conservation of linear momentum and stress in a continuum, focusing on governing equations and constitutive laws.
Incompressible Fluid Mechanics
Covers topics such as differential analysis, potential flow, 2D flows, superpositions, lift, and drag.
Incompressible Fluid Mechanics: Foundations and Flow Equations
Covers the foundations of incompressible fluid mechanics and emphasizes the importance of exercises and self-study.
Drag on a Sphere and Newtonian Fluid Mechanics
Covers the analysis of drag on a sphere in Newtonian fluid mechanics, focusing on key parameters and the significance of Reynolds number.
Fluid Dynamics: Eulerian and Lagrangian Approaches
Covers the Eulerian and Lagrangian approaches in fluid dynamics, emphasizing their applications in analyzing fluid flow.
Continuity Equation, Newton's 2nd Law in Eulerian Concept
Covers the continuity equation for steady laminar flow and Newton's 2nd law.
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Differential Analysis Fluid Flow
Explores types of motion and deformation in fluid elements, velocity fields, rotation, vorticity, conservation of mass, and stream functions.
Governing Equations: Incompressible and Compressible Flows
Covers the governing equations for incompressible and compressible flows and numerical flow simulation techniques.
Navier-Stokes Equations: Hydrodynamics Fundamentals
Covers the fundamentals of hydrodynamics, including the Navier-Stokes equations and stresses in fluids.