Torrent details for "Newman J. The Newman Lectures on Transport Phenomena 2021 [andryold1]"    Log in to bookmark

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Prof. Newman is considered one of the great chemical engineers of his time. His reputation derives from his mastery of all phases of the subject matter, his clarity of thought, and his ability to reduce complex problems to their essential core elements. He is a member of the National Academy of Engineering, Washington, DC, USA, and has won numerous national awards including every award offered by the Electrochemical Society, USA. His motto, as known by his colleagues, is "do it right the first time." He has been teaching undergraduate and graduate core subject courses at the University of California, Berkeley (UC Berkeley), USA, since joining the faculty in 1966. His method is to write out, in long form, everything he expects to convey to his class on a subject on any given day. He has maintained and updated his lecture notes from notepad to computer throughout his career. This book is an exact reproduction of those notes.
Introduction
Basic Transport Relations
Conservation Laws and Transport Laws
Fluid Mechanics
Microscopic Interpretation of the Momentum Flux
Heat Transfer in a Pure Fluid
Concentrations and Velocities in Mixtures
Material Balances and Diffusion
Relaxation Time for Diffusion
Multicomponent Diffusion
Heat Transfer in Mixtures
Transport Properties
Entropy Production
Coupled Transport Processes
Laminar Flow Solutions
Introduction
Simple Flow Solutions
Stokes Flow past a Sphere
Flow to a Rotating Disk
Singular-Perturbation Expansions
Creeping Flow past a Sphere
Mass Transfer to a Sphere in Stokes Flow
Mass Transfer to a Rotating Disk
Boundary-Layer Treatment of a Flat Plate
Boundary-Layer Equations of Fluid Mechanics
Curved Surfaces and Blasius Series
The Diffusion Boundary Layer
Blasius Series for Mass Transfer
Graetz–Nusselt–Lévêque Problem
Natural Convection
High Rates of Mass Transfer
Heterogeneous Reaction at a Flat Plate
Mass Transfer to the Rear of a Sphere in Stokes Flow
Spin Coating
Stefan–Maxwell Mass Transport
Section C: Transport in Turbulent Flow
Turbulent Flow and Hydrodynamic Stability
Time Averages and Turbulent Transport
Universal Velocity Profile and Eddy Viscosity
Turbulent Flow in a Pipe
Integral Momentum Method for Boundary Layers
Use of Universal Eddy Viscosity for Turbulent Boundary Layers
Mass Transfer in Turbulent Flow
Mass Transfer in Turbulent Pipe Flow
Mass Transfer in Turbulent Boundary Layers
New Perspective in Turbulence

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