Mass Transfer Chapter 9Covers the principles of mass transfer, including diffusion and Fick's equations, and their applications in various processes.
Diffusion in FluidsCovers diffusion of small particles in fluids without flow and its relation to heat conduction.
Diffusion and Convection TransportExplores the microscopic description of diffusion and convection transport, emphasizing similarities between chemical diffusion and heat conduction.
Mass Transfer and DiffusionExplores mass transfer, diffusion, and transport forces, covering Fick's equations and Nernst-Einstein equation in various materials.
Diffusion: Macroscopic ViewExplores diffusion from a macroscopic perspective, emphasizing the derivation of the diffusion equation through mass conservation and fixed flux law.
Diffusion in CellsExplores diffusion in cells, focusing on molecular movement and the impact of size and environment.
Diffusion CoefficientExplores the determination of diffusion coefficient in different states of matter and the factors influencing the diffusion process.
Diffusion and Transport PhenomenaExplores diffusion, transport phenomena, Fick's law, thermal and electrical transport, Onsager's relations, and thermoelectric effects.
Diffusion of NeutronsCovers the solutions of neutron diffusion, including analytical solutions, Laplacian in different geometries, and the physical significance of the diffusion area.
Brownian Motion: From Molecules to CellsExplores the core concepts of Brownian motion, from molecules to cells, including its history, hypothesis versus description, Langevin's solution, and methods for measuring Brownian motion.