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Archive for October, 2009

Quantum Plasmadynamics

by @ Tuesday, October 27th, 2009. Filed under Electrical engineering, Mechanical engineering, physics

File : pdf
by Prof Donald B. Melrose, University of Sydney
CONTENTS
Part I. Unmagnetized Plasmas
1. Response 4-tensors
2. Covariant theory of wave dispersion
3. Particle and wave subsystems
4. Dispersion in relativistic plasmas
5. Classical plasmadynamics
6. Quantum field theory
7. QPD processes
8. Responses of a quantum plasma
9. Isotropic quantum plasmas
10. Spin, MMR and neutrino plasma
Part II. Magnetized Plasmas
1. Magnetized Plasmas
2. Dispersion in [...]

Lecture Notes – Electromagnetism and Optics

by @ Saturday, October 24th, 2009. Filed under Electrical engineering, physics

File : pdf, 1.4 MB, 260 pages
Lecture Notes by Richard Fitzpatrick,
The University of Texas at Austin
1 Introduction
2 Vectors
2.1 Vector Algebra
2.2 Vector Area
2.3 The Scalar Product
2.4 The Vector Product
2.5 Vector Calculus
2.6 Line Integrals
2.7 Surface Integrals
2.8 Volume Integrals
3 Electricity
3.1 Historical Introduction
3.2 Conductors and Insulators
3.3 Electrometers and Electroscopes
3.4 Induced Electric Charge
3.5 Coulomb’s Law
3.6 Electric Fields
3.7 Worked Examples
4 Gauss’ [...]

Lecture Notes – Optical Physics and Quantum Electronics

by @ Wednesday, October 21st, 2009. Filed under Electrical engineering, physics

Lecture Notes by R. Victor Jones
File : pdf
CONTENTS :
Classical Electromagnetic Fields
Preliminaries: A Review of Some Basic Concepts and Methods
Rays: The Eikonal Treatment of Geometric Optics
Beams: The Paraxial Wave Equation in Uniform Media
Optical Resonators
Wave Propagation in an Homogeneous, Anisotropic Dielectric
Descriptions of the Polarization of Light
Nonlinear Optics: Act I
Guided Waves in Planar Structures
Wave Propagation in Dispersive Media
Interaction [...]

Numerical Grid Generation, Foundations and Applications

by @ Sunday, October 18th, 2009. Filed under Computer/IT, Electrical engineering, Mathematics, physics

File : pdf, 2.2 MB, 327 pages
TOC
# Introduction
# Boundary-Conforming Coordinate Systems
1. Basic Concepts
2. Generalization
1. Boundary-value Problem — Physical Region
2. Boundary-value Problem — Transformed Region
3. Transformed Region Configurations
1. Simply-connected Regions
2. Multiply-connected Regions
3. Embedded Regions
4. Other Configurations
5. Three-dimensional Regions
4. Composite Grids
1. Simply-connected Regions
2. Multiply-connected Regions
3. Embedded Regions
4. Three-dimensional Regions
5. Overlaid Grids
5. Branch Cuts
1. Point Correspondence
2. Derivative Correspondence
6. [...]

Fundamentals of Chemical Reaction Engineering

by @ Thursday, October 15th, 2009. Filed under Chemical engineering

File : pdf, 17 MB, 384 pages
by Mark E.Davis & Robert J. Davis
TOC
Chapt 1 The Basics of Reaction Kinetics for Chemical Reaction Engineering
1.1 The Scope of Chemical Reaction Engineering
1.2 The Extent of Reaction
1.3 The Rate of Reaction
1.4 General Properties of the Rate Function for a Single Reaction
1.5 Examples of Reaction Rates
Chapt 2 Rate Constants of [...]

The Physics of Plasmas

by @ Tuesday, October 13th, 2009. Filed under Chemistry, Electrical engineering, physics

Lecture Notes by Richard Fitzpatrick
The University of Texas at Austin
File : pdf, html, 1.8 MB, 261 pages
TOC
Contents
1 Introduction
1.1 Sources
1.2 What is Plasma?
1.3 Brief History of Plasma Physics
1.4 Basic Parameters
1.5 Plasma Frequency
1.6 Debye Shielding
1.7 Plasma Parameter
1.8 Collisions
1.9 Magnetized Plasmas
1.10 Plasma Beta
2 Charged Particle Motion
2.1 Introduction
2.2 Motion in Uniform Fields
2.3 Method of Averaging
2.4 Guiding Centre Motion
2.5 [...]

Thermodynamics and Statistical Mechanics

by @ Monday, October 12th, 2009. Filed under Mechanical engineering, physics

File : html, pdf, 1.3 MB, 201 pages
Lecture Notes by Richard Fitzpatrick,
The University of Texas at Austin
TOC
# Introduction
* Intended audience
* Major sources
* Why study thermodynamics?
* The atomic theory of matter
* Thermodynamics
* The need for a statistical approach
* Microscopic and macroscopic systems
* Thermodynamics and statistical thermodynamics
* Classical and quantum approaches
# Probability theory
* Introduction
* What is probability?
* [...]

NRL Plasma Formulary

by @ Sunday, October 11th, 2009. Filed under Chemical engineering, Mechanical engineering, physics

pdf, 471 KB, 71 pages
CONTENTS
Numerical and Algebraic
Vector Identities
Differential Operators in Curvilinear Coordinates
Dimensions and Units
International System (SI) Nomenclature
Metric Prefixes
Physical Constants (SI)
Physical Constants (cgs)
Formula Conversion
Maxwell’s Equations
Electricity and Magnetism
Electromagnetic Frequency/Wavelength Bands
AC Circuits
Dimensionless Numbers of Fluid Mechanics
Shocks
Fundamental Plasma Parameters
Plasma Dispersion Function
Collisions and Transport
Approximate Magnitudes in Some Typical Plasmas
Ionospheric Parameters
Solar Physics Parameters
Thermonuclear Fusion
Relativistic Electron Beams
Beam Instabilities
Lasers
Atomic Physics and Radiation
Atomic Spectroscopy
Complex [...]

The Structure of Finite Algebras

by @ Thursday, October 8th, 2009. Filed under Mathematics

by David Hobby and Ralph McKenzie
TOC :
0. Basic concepts and notation
1. Tight lattices
2. Tame quotients
3. Abelian and solvable algebras
4. The structure of minimal algebras
5. The types of tame quotients
6. Labeled congruence lattices
7. Solvability and semi-distributivity
8. Congruence modular varieties
9. Mal’cev classification and omitting types
10. Residually small varieties
11. Decidable varieties
12. Free spectra
13. Tame algebras and E-minimal algebras
Download [...]

ANSYS Tutorials for Finite Element Modeling

by @ Monday, October 5th, 2009. Filed under Mechanical engineering, civil engineering, physics

by University of Alberta
CONTENTS
1. ANSYS Utilities
An introduction to using ANSYS. This includes a quick explanation of the stages of analysis, how to start ANSYS, the use of
the windows in ANSYS, convergence testing, saving/restoring jobs, and working with Pro/E.
- Introduction to Finite Element Analysis
A brief introduction of the 3 stages involved in finite element analysis.
- Starting [...]

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