Fluid Mechanics: HydrostaticsIntroduces hydrostatics, covering fluid definition, pressure, forces, buoyancy, Pascal's law, and pressure applications.
Introduction to Fluid MechanicsCovers the basics of fluid mechanics, including fluid properties, pressure, viscosity, and fluid behavior at rest and in motion.
Turbulence: Numerical Flow SimulationExplores turbulence characteristics, simulation methods, and modeling challenges, providing guidelines for choosing and validating turbulence models.
Fluid Statics: FundamentalsCovers fluid statics, scalar and vector fields, Navier-Stokes equation, properties of solids and fluids, pressure, and atmospheric pressure variation.
Incompressible Fluid MechanicsExplores incompressible fluid mechanics, covering viscosity, pressure distribution, force balance, and neglecting shearing faces.
Pascal's Principle and Eulerian ConceptExplores Pascal's principle and the Eulerian concept in fluid mechanics, demonstrating how pressure distributes forces and how velocity fields describe fluid movement.
Fluid Dynamics: Bernoulli EquationExplores the Bernoulli equation in fluid dynamics, emphasizing assumptions and practical applications in solving fluid mechanics problems.
Pressure in FluidsExplores pressure in fluids, hydrostatic paradox, and atmospheric pressure measurement with the mercury barometer.
Fluids and ElectromagnetismExplores closed and non-closed surfaces, divergence theorem, Stokes theorem, and fluid properties in fluid dynamics and electromagnetism.