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Related lectures (32)
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Heat Transfer Fundamentals
Explores the fundamentals of heat transfer, including radiation, convection, and conduction, emphasizing boundary layers and Nusselt numbers.
Heat Transfer: Internal Flows
Explores internal heat transfer in laminar flows, focusing on entry lengths, mean temperature, and Nusselt number correlations.
Heat Transfer Phenomena: Convection
Explores the determination of heat transfer coefficients by convection and the significance of adimensional groups in characterizing convective heat transfer.
Two Phase Flow and Heat Transfer: Solutions and Correlations
Explores Nukiyama's experiment, ODE solutions, heat flux evolution, and heat transfer correlations.
Changing Mass: Momentum and Material Transfer
Covers mass flow problems and recoil from different reference frames.
Stokes Equations: Low Reynolds Number Flow
Explores the application of Stokes equations to low Reynolds number flow and the dynamics of fluid flow.
Heat Convection: Boundary Layers and Flow Regimes
Explores heat convection, boundary layers, and flow regimes, emphasizing the importance of forced convection in energy transport.
Turbulence Modeling: Reynolds Stress Models
Explores the k-e model for turbulent flows and Reynolds stress models.
Thermal Bridges in Building Technology
Explores the physics of thermal bridges and heat transfer in building elements, emphasizing energy efficiency.
Life at Low Reynolds Number: Flagella Hydrodynamics and Blood Flow
Explores flagella hydrodynamics, drag forces, and blood flow modeling in vessels.