Covers condensation, heat transfer, Nusselt solution, correlations, simplified equations, mass flux, Nusselt numbers, flow regimes, different geometries, Reynolds number effects, thin films behavior, and thermal transfer intensification.
Focuses on velocity boundary layer equations in laminar flow and covers mass and momentum conservation, Navier-Stokes equations, and the Reynolds number.
Explores the fundamentals of heat transfer, including radiation properties, energy conservation, and thermal conductivity, covering conduction, convection, and participating media.
Explores radiative heat transfer principles in the presence of conduction and convection, covering surface exchange, coupled heat transfer, thermocouples, and gas flow.
Explores the efficiency of phase change processes, focusing on evaporation and boiling, differentiating between the two and discussing the various regimes of pool boiling.