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1.

電子ブック

EB
Jiyuan Tu, Chaoqun Liu, Guan Heng Yeoh, Chaoqun Liu, Guan Heng Yeoh, L
出版情報: Elsevier ScienceDirect Books , Butterworth-Heinemann, 2007
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2.

電子ブック

EB
Jean G. Van Bladel ; IEEE Antennas and Propagation Society, sponsor
出版情報: Wiley Online Library Online Books , Hoboken : John Wiley & Sons, 2007
シリーズ名: IEEE Press series on electromagnetic waves / Donald G. Dudley, series editor
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Preface
Linear Analysis / 1:
Linear Spaces / 1.1:
Linear Transformations / 1.2:
The Inversion Problem / 1.3:
Green's Functions / 1.4:
Reciprocity / 1.5:
Green's Dyadics / 1.6:
Convergence of a Series / 1.7:
Eigenfunctions / 1.8:
Integral Operators / 1.9:
Eigenfunction Expansions / 1.10:
Discretization / 1.11:
Matrices / 1.12:
Solution of Matrix Equations: Stability / 1.13:
Finite Differences / 1.14:
Perturbations / 1.15:
Variational Techniques / 2:
Stationary functionals / 2.1:
A Suitable Functional for the String Problem / 2.2:
Functionals for the General L Transformation / 2.3:
Euler's Equations of Some Important Functionals / 2.4:
Discretization of the Trial Functions / 2.5:
Simple Finite Elements for Planar Problems / 2.6:
More Finite Elements / 2.7:
Direct Numerical Solution of Matrix Problems / 2.8:
Iterative Numerical Solution of Matrix Problems / 2.9:
Electrostatic Fields in the Presence of Dielectrics / 3:
Volume Charges in Vacuum / 3.1:
Green's Function for Infinite Space / 3.2:
Multipole Expansion / 3.3:
Potential Generated by a Single Layer of Charge / 3.4:
Potential Generated by a Double Layer of Charge / 3.5:
Potential Generated by a Linear Charge / 3.6:
Spherical Harmonics / 3.7:
Dielectric Materials / 3.8:
Cavity Fields / 3.9:
Dielectric Sphere in an External Field / 3.10:
Dielectric Spheroid in an Incident Field / 3.11:
Numerical Methods / 3.12:
Electrostatic Fields in the Presence of Conductors / 4:
Conductivity / 4.1:
Potential Outside a Charged Conductor / 4.2:
Capacitance Matrix / 4.3:
The Dirichlet Problem / 4.4:
The Neumann Problem / 4.5:
Numerical Solution of the Charge Density Problem / 4.6:
Conductor in an External Field / 4.7:
Conductors in the Presence of Dielectrics / 4.8:
Current Injection into a Conducting Volume / 4.9:
Contact Electrodes / 4.10:
Chains of Conductors / 4.11:
Special Geometries for the Electrostatic Field / 5:
Two-Dimensional Potentials in the Plane / 5.1:
Field Behavior at a ConductingWedge / 5.2:
Field Behavior at a DielectricWedge / 5.3:
Separation of Variables in Two Dimensions / 5.4:
Two-Dimensional Integral Equations / 5.5:
Finite Methods in Two Dimensions / 5.6:
Infinite Computational Domains / 5.7:
More Two-Dimensional Techniques / 5.8:
Layered Media / 5.9:
Apertures / 5.10:
Axisymmetric Geometries / 5.11:
Conical Boundaries / 5.12:
Magnetostatic Fields / 6:
Magnetic Fields in Free Space: Vector Potential / 6.1:
Fields Generated by Linear Currents / 6.2:
Fields Generated by Surface Currents / 6.3:
Fields at Large Distances from the Sources / 6.4:
Scalar Potential in Vacuum / 6.5:
Magnetic Materials / 6.6:
Permanent Magnets / 6.7:
The Limit of Infinite Permeability / 6.8:
Two-Dimensional Fields in the Plane / 6.9:
Numerical Methods: Integral Equations / 6.10:
Numerical Methods: Finite Elements / 6.12:
Nonlinear Materials / 6.13:
Strong Magnetic Fields and Force-Free Currents / 6.14:
Radiation in Free Space / 7:
Maxwell's Equations / 7.1:
TheWave Equation / 7.2:
Potentials / 7.3:
Sinusoidal Time Dependence: Polarization / 7.4:
Partially Polarized Fields / 7.5:
The Radiation Condition / 7.6:
Time-Harmonic Potentials / 7.7:
Radiation Patterns / 7.8:
Equivalent Sources / 7.9:
LinearWire Antennas / 7.13:
CurvedWire Antennas: Radiation / 7.14:
Transient Sources / 7.15:
Radiation in a Material Medium / 8:
Constitutive Equations / 8.1:
PlaneWaves / 8.2:
Ray Methods / 8.3:
Beamlike Propagation / 8.4:
Equivalent Circuit of an Antenna / 8.5:
Effective Antenna Area / 8.8:
Plane Boundaries / 9:
PlaneWave Incident on a Plane Boundary / 9.1:
Propagation Through a Layered Medium / 9.2:
The Sommerfeld Dipole Problem / 9.3:
Multilayered Structures / 9.4:
Periodic Structures / 9.5:
Field Penetration Through Apertures / 9.6:
Edge Diffraction / 9.7:
The Wave Equation / 10:
Preface
Linear Analysis / 1:
Linear Spaces / 1.1:
3.

電子ブック

EB
Bladel, Jean G. Van Bladel
出版情報: Wiley Online Library - AutoHoldings Books , Hoboken : Wiley-IEEE Press, 2007
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目次情報: 続きを見る
Preface
Linear Analysis / 1:
Linear Spaces / 1.1:
Linear Transformations / 1.2:
The Inversion Problem / 1.3:
Green's Functions / 1.4:
Reciprocity / 1.5:
Green's Dyadics / 1.6:
Convergence of a Series / 1.7:
Eigenfunctions / 1.8:
Integral Operators / 1.9:
Eigenfunction Expansions / 1.10:
Discretization / 1.11:
Matrices / 1.12:
Solution of Matrix Equations: Stability / 1.13:
Finite Differences / 1.14:
Perturbations / 1.15:
Variational Techniques / 2:
Stationary functionals / 2.1:
A Suitable Functional for the String Problem / 2.2:
Functionals for the General L Transformation / 2.3:
Euler's Equations of Some Important Functionals / 2.4:
Discretization of the Trial Functions / 2.5:
Simple Finite Elements for Planar Problems / 2.6:
More Finite Elements / 2.7:
Direct Numerical Solution of Matrix Problems / 2.8:
Iterative Numerical Solution of Matrix Problems / 2.9:
Electrostatic Fields in the Presence of Dielectrics / 3:
Volume Charges in Vacuum / 3.1:
Green's Function for Infinite Space / 3.2:
Multipole Expansion / 3.3:
Potential Generated by a Single Layer of Charge / 3.4:
Potential Generated by a Double Layer of Charge / 3.5:
Potential Generated by a Linear Charge / 3.6:
Spherical Harmonics / 3.7:
Dielectric Materials / 3.8:
Cavity Fields / 3.9:
Dielectric Sphere in an External Field / 3.10:
Dielectric Spheroid in an Incident Field / 3.11:
Numerical Methods / 3.12:
Electrostatic Fields in the Presence of Conductors / 4:
Conductivity / 4.1:
Potential Outside a Charged Conductor / 4.2:
Capacitance Matrix / 4.3:
The Dirichlet Problem / 4.4:
The Neumann Problem / 4.5:
Numerical Solution of the Charge Density Problem / 4.6:
Conductor in an External Field / 4.7:
Conductors in the Presence of Dielectrics / 4.8:
Current Injection into a Conducting Volume / 4.9:
Contact Electrodes / 4.10:
Chains of Conductors / 4.11:
Special Geometries for the Electrostatic Field / 5:
Two-Dimensional Potentials in the Plane / 5.1:
Field Behavior at a ConductingWedge / 5.2:
Field Behavior at a DielectricWedge / 5.3:
Separation of Variables in Two Dimensions / 5.4:
Two-Dimensional Integral Equations / 5.5:
Finite Methods in Two Dimensions / 5.6:
Infinite Computational Domains / 5.7:
More Two-Dimensional Techniques / 5.8:
Layered Media / 5.9:
Apertures / 5.10:
Axisymmetric Geometries / 5.11:
Conical Boundaries / 5.12:
Magnetostatic Fields / 6:
Magnetic Fields in Free Space: Vector Potential / 6.1:
Fields Generated by Linear Currents / 6.2:
Fields Generated by Surface Currents / 6.3:
Fields at Large Distances from the Sources / 6.4:
Scalar Potential in Vacuum / 6.5:
Magnetic Materials / 6.6:
Permanent Magnets / 6.7:
The Limit of Infinite Permeability / 6.8:
Two-Dimensional Fields in the Plane / 6.9:
Numerical Methods: Integral Equations / 6.10:
Numerical Methods: Finite Elements / 6.12:
Nonlinear Materials / 6.13:
Strong Magnetic Fields and Force-Free Currents / 6.14:
Radiation in Free Space / 7:
Maxwell's Equations / 7.1:
TheWave Equation / 7.2:
Potentials / 7.3:
Sinusoidal Time Dependence: Polarization / 7.4:
Partially Polarized Fields / 7.5:
The Radiation Condition / 7.6:
Time-Harmonic Potentials / 7.7:
Radiation Patterns / 7.8:
Equivalent Sources / 7.9:
LinearWire Antennas / 7.13:
CurvedWire Antennas: Radiation / 7.14:
Transient Sources / 7.15:
Radiation in a Material Medium / 8:
Constitutive Equations / 8.1:
PlaneWaves / 8.2:
Ray Methods / 8.3:
Beamlike Propagation / 8.4:
Equivalent Circuit of an Antenna / 8.5:
Effective Antenna Area / 8.8:
Plane Boundaries / 9:
PlaneWave Incident on a Plane Boundary / 9.1:
Propagation Through a Layered Medium / 9.2:
The Sommerfeld Dipole Problem / 9.3:
Multilayered Structures / 9.4:
Periodic Structures / 9.5:
Field Penetration Through Apertures / 9.6:
Edge Diffraction / 9.7:
The Wave Equation / 10:
Preface
Linear Analysis / 1:
Linear Spaces / 1.1:
4.

電子ブック

EB
Stratton, IEEE Antennas and Propagation Society.
出版情報: Wiley Online Library - AutoHoldings Books , Wiley-IEEE Press, 2006
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Preface
The Field Equations / Chapter I:
Maxwell's Equations
Maxwell's Equations
The Field Vectors / 1.1:
Charge and Current / 1.2:
Divergence of the Field Vectors / 1.3:
Integral Form of the Field Equations / 1.4:
Macroscopic Properties Of Matter
The Inductive Capacities c and p / 1.5:
Electric and Magnetic Polarization / 1.6:
Macroscopic Properties of Matter / 1.7:
Conducting Media
Units And Dimensions
The Inductive Capacities [epsilon] and [Mu] / 1.8:
M.K.S. or Giorgi System
The Electromagnetic Potentials
Vector and Scalar Potentials / 1.9:
Hertz Vectors, or Polarization Potentials / 1.10:
Units and Dimensions
Complex Field Vectors and Potentials / 1.12:
Boundary Conditions
Discontinuities in the Field Vectors / 1.13:
Coordinate Systems
Unitary and Reciprocal Vectors / 1.14:
Differential Operators / 1.15:
Orthogonal Systems / 1.16:
Field Equations in General Orthogonal Coordinates / 1.17:
Properties of Some Elementary Systems / 1.18:
The Field Sensors
Orthogonal Transformations and Their Invariants / 1.19:
Elements of Tensor Analysis / 1.20:
Space-time Symmetry of the Field Equations / 1.21:
The Lorentz Transformation / 1.22:
Transformation of the Field Vectors to Moving Systems / 1.23:
Stress And Energy / Chapter II:
Stress And Strain In Elastic Media
Elastic Stress Tensor / 2.1:
Analysis of Strain / 2.2:
Elastic Energy and the Relations of Stress to Strain / 2.3:
Electromagnetic Forces On Charges And Currents
Definition of the Vectors E and B / 2.4:
Electromagnetic Stress Tensor in Free Space / 2.5:
The Field Tensors
Electromagnetic Momentum / 2.6:
Electrostatic Energy as a Function of Charge Density / 2.7:
Electrostatic Energy as a Function of Field Intensity / 2.8:
A Theorem on Vector Fields
Energy of a Dielectric Body in an Electrostatic Field / 2.10:
Thornson's Theorem / 2.11:
Earnshaw's Theorem / 2.12:
Theorem on the Energy of Uncharged Conductors / 2.13:
Magnetostatic Energy
Stress and Energy
Magnetic Energy of Stationary Currents / 2.14:
Stress and Strain in Elastic Media
Magnetic Energy as a Function of Field Intensity / 2.15:
Ferromagnetic Materials / 2.16:
Energy of a Magnetic Body in a Magnetostatic Field / 2.17:
Potential Energy of a Permanent Magnet / 2.18:
Energy Flow
Poynting's Theorem / 2.19:
Electromagnetic Forces on Charges and Currents
Complex Poynting Vector / 2.20:
Forces On A Dielectric In An Electrostatic Field
Body Forces in Fluids / 2.21:
Body Forces in Solids / 2.22:
The Stress Tensor / 2.23:
Surfaces of Discontinuity / 2.24:
Electrostatic Energy
Electrostriction / 2.25:
Force on a Body Immersed in a Fluid / 2.26:
Forces In The Magnetostatic Field
Nonferromagnetic Materials / 2.27:
Forces In The Electromagnetic Field / 2.9:
The Electrostatic Field / 2.29:
Thomson's Theorem / 3.1:
Equations of Field and Potential
Earnshaw's Theorem / 3.2:
Calculation Of The Field From The Charge Distribution
Green's Theorem / 3.3:
Integration of Poisson's Equation / 3.4:
Behavior at Infinity / 3.5:
Coulomb Field / 3.6:
Convergence of Integrals / 3.7:
Expansion Of The Potential In Spherical Harmonics
Axial Distributions of Charge / 3.8:
The Dipole / 3.9:
Axial Multipoles / 3.10:
Arbitrary Distributions of Charge / 3.11:
General Theory of Multipoles / 3.12:
Dielectric Polarization
Interpretation of the Vectors P and IT / 3.13:
Poynting's Theorem
Volume Distributions of Charge and Dipole Moment / 3.14:
Single-layer Charge Distributions / 3.15:
Forces on a Dielectric in an Electrostatic Field / 3.16:
Double-layer Distributions
Interpretation of Green's Theorem / 3.17:
Images / 3.18:
Boundary-Value Problems
Formulation of Electrostatic Problems / 3.19:
Uniqueness of Solution / 3.20:
Solution of Laplace's Equation / 3.21:
Problem Of The Sphere
Conducting Sphere in Field of a Point Charge / 3.22:
Dielectric Sphere in Field of a Point Charge / 3.23:
Sphere in a Parallel Field / 3.24:
Forces in the Magnetostatic Field / 3.25:
Free Charge on a Conducting Ellipsoid
Conducting Ellipsoid in a Parallel Field / 3.26:
Dielectric Ellipsoid in a Parallel Field / 3.27:
Cavity Definitions of E and D / 3.28:
Forces in the Electromagnetic Field / 3.29:
Torque Exerted on an Ellipsoid
The Magnetostatic Field / Chapter IV:
General Properties Of A Magnetostatfic Field
Field Equations and the Vector Potential / 4.1:
General Properties of an Electrostatic Field / 4.2:
Scalar Potential
Poisson's Analysis / 4.3:
Calculation Of The Field Of A Current Distribution
Biot-Savart Law / 4.4:
Expansion of the Vector Potential / 4.5:
Calculation of the Field from the Charge Distribution
The Magnetic Dipole / 4.6:
Green's Theorem / 4.7:
Magnetic Shells
A Digression On Units And Dimensions
Integration of Poisson's Equation / 4.8:
Fundamental Systems
Coulomb's Law for Magnetic Matter / 4.9:
Magnetic Polarization
Equivalent Current Distributions / 4.10:
Field of hfagnetized Rods and Spheres / 4.11:
Discontinuities Of The Vectors A And B
Surface Distributions of Current / 4.12:
Expansion of the Potential in Spherical Harmonics
Surface Distributions of Magnetic Moment / 4.13:
Integration Of The Equation
Vector Analogue of Green's Theorem / 4.14:
Application to the Vector Potential / 4.15:
Formulation of the Magnetostatic Problem / 4.16:
Problem Of The Ellipsoid / 4.17:
Field of a Uniformly Magnetized Ellipsoid / 4.18:
Magnetic Ellipsoid in a Parallel Field / 4.19:
Cylinder In A Parallel Field
Calculation of the Field / 4.20:
Interpretation of the Vectors P and [Pi]
Force Exerted on the Cylinder / 4.21:
Discontinuities of Integrals Occurring in Potential Theory
Problems
Plane Waves In Unbounded Isotropic Media / Chapter V:
Propagation Of Plane Waves
Equations of a One-dimensional Field / 5.1:
Plane Waves Harmonic in Time / 5.2:
Plane Waves Harmonic in Space / 5.3:
Polarization / 5.4:
Interpretation of Green's Theorem
Impedance / 5.5:
General Solutions Of The One-Dimension Wave Equation
Elements of Fourier Analysis / 5.7:
General Solution of the One-dimensional Wave Equation in a Nondissipative Medium / 5.8:
Dissipative Medium; Prescribed Distribution in Time / 5.9:
Dissipative Medium; Prescribed Distribution in Space / 5.10:
Solution of Laplace's Equation / 5.11:
Discussion of a Numerical Example
Problem of the Sphere / 5.12:
Elementary Theory of the Laplace Transformation
Application of the Laplace Transformation to Maxwell's Equations.18 / 5.13:
Dispersion
Dispersion in Dielectrics / 5.14:
Dispersion in Metals / 5.15:
Propagation in an Ionized Atmosphere / 5.16:
Velocities Of Propagation
Problem of the Ellipsoid
Group Velocity / 5.17:
Wave-front and Signal Velocities / 5.18:
Cylindrical Waves / Chapter VI:
Equations Of A Cylindrical Fie Ld
Representation by Hertz Vectors / 6.1:
Scalar and Vector Potentials / 6.2:
Impedances of Harmonic Cylindrical Fields / 6.3:
Wave Functions Of The Circular Cylinder
Elementary Waves / 6.4:
General Properties of a Magnetostatic Field / 6.5:
The Field of Circularly Cylindrical Wave Functions
Construction from Plane Wave Solutions / 6.7:
Fourier-Bessel Integrals / 6.8:
Poisson's Analysis / 6.10:
Representation of a Plane Wave
Calculation of the Field of a Current Distribution / 6.11:
The Addition Theorem for Circularly Cylindrical Waves
Wave Functions Of The Elliptic Cylinder
Integral Representations / 6.12:
Expansion of Plane and Circular Waves / 6.14:
Spherical Waves / Chapter VII:
The Vector Wave Equation
A Fundamental Set of Solutions / 7.1:
A Digression on Units and Dimensions
Application to Cylindrical Coordinates / 7.2:
The Scalar Wave Equation In Spherical Coordinates
Elementary Spherical Waves / 7.3:
Coulomb's Law for Magnetic Matter / 7.4:
Properties of the Radial Functions
Addition Theorem for the Legendre Polynomials / 7.5:
Expansion of Plane Waves / 7.6:
Field of Magnetized Rods and Spheres / 7.7:
A Fourier-Bessel Integral
Discontinuities of the Vectors A and B / 7.9:
Expansion of a Cylindrical Wave Function
The Vector Wave Equation In Sphericacl Coordinates / 7.10:
Spherical Vector Wave Functions / 7.11:
Integration of the Equation [nabla] X [nabla] X A = [Mu]J / 7.12:
Orthogonality / 7.13:
Vector Analogue of Green's Theorem
Expansion of a Vector Plane Wave / 7.14:
Radiation / Chapter VIII:
The Inhomogeneous Solar Wave Equation
Kirchhoff Method of Integration / 8.1:
Retarded Potentials / 8.2:
Retarded Hertz Vector / 8.3:
A Multipole Expansion
Definition of the Moments / 8.4:
Electric Dipole / 8.5:
Magnetic Dipole / 8.6:
Radiation Theory Of Linear Antenna Systems
Cylinder in a Parallel Field / 8.7:
Radiation Field of a Single Linear Oscillator
Radiation Due to Traveling Waves / 8.8:
Suppression of Alternate Phases / 8.9:
Directional Arrays / 8.10:
Exact Calculation of the Field of a Linear Oscillator / 8.11:
Plane Waves in Unbounded, Isotropic Media / 8.12:
Radiation Resistance by the E.M.F. Method
The Kirchhoff-Huygens Principle
Propagation of Plane Waves
Scalar Wave Functions / 8.13:
Direct Integration of the Field Equations / 8.14:
Discontinuous Surface Distributions / 8.15:
Four-Dimensional Formulation Of The Radiation Problem
Integration of the Wave Equation / 8.16:
Field of a Moving Point Charge / 8.17:
General Theorems / Chapter IX:
General Solutions of the One-dimensional Wave Equation / 9.1:
Electrodynamic Similitude
Reflection And Refraction At A Plane Surface
Snell's Laws / 9.4:
Fresnel's Equations / 9.5:
Dielectric Media / 9.6:
Total Reflection / 9.7:
Refraction in a Conducting Medium / 9.8:
Reflection at a Conducting Surface / 9.9:
Plane Sheets
Reflection and Transmission Coefficients / 9.10:
Application to Dielectric Media / 9.11:
Ahsorbing Layers / 9.12:
Application of the Laplace Transformation to Maxwell's Equations
Surface Waves
Complex Angles of Incidence / 9.13:
Skin Effect / 9.14:
Propagation Along A Circular Cylinder
Natural Modes / 9.15:
Conductor Ernbeded in a Dielectric / 9.16:
Further Discussion of the Principal Wave / 9.17:
Velocities of Propagation / 9.18:
Waves in Hollow Pipes
Coaxia Lines
Propagation Constant / 9.19:
Infinite Conductivity / 9.20:
Finite Conductivity / 9.21:
Oscillations Of A Sphere
Equations of a Cylindrical Field / 9.22:
Oscillations of a Conducting Sphere
Oscillations in a Spherical Cavity / 9.24:
Diffraction Of A Plane Wave By A Sphere
Expansion of the Diffracted Field / 9.25:
Total Radiation / 9.26:
Limiting Cases / 9.27:
Effect Of The Earth On The Propagation Of Radio Waves
Wave Functions of the Circular Cylinder
Sommerfeld Solution / 9.28:
Weyl Solution / 9.29:
van der Pol Solution / 9.30:
Properties of the Functions Z[subscript n]([rho])
Approximation of the Integrals / 9.31:
Integral Representations of Wave Functions / Appendix I:
Numerical Values Of Fundamental Constants
Dimensions Of Electromagnetic Quantities / B:
Conversion Tables / C:
Integral Representations of the Functions Z[subscript p]([rho]) / Appendix II:
Formulas From Vector Analysis
Conductivity Of Various Materials / Appendix III:
Specific Inductive Capacity Of Dielectrics
Associated Legendre Functions / Appendix IV:
Index
Wave Functions of the Elliptic Cylinder
The Scalar Wave Equation in Spherical Coordinates
Addition Theorem for z[subscript o](kR)
The Vector Wave Equation in Spherical Coordinates
The Inhomogeneous Scalar Wave Equation
Radiation Theory of Linear Antenna Systems
Four-Dimensional Formulation of the Radiation Problem
Reflection and Refraction at a Plane Surface
Snell's Laws
Fresnel's Equations
Absorbing Layers
Propagation along a Circular Cylinder
Conductor Embedded in a Dielectric
Coaxial Lines
Oscillations of a Sphere
Diffraction of a Plane Wave by a Sphere
Effect of the Earth on the Propagation of Radio Waves
Numerical Values of Fundamental Constants
Dimensions of Electromagnetic Quantities
Formulas from Vector Analysis
Conductivity of Various Materials
Specific Inductive Capacity of Dielectrics
Preface
The Field Equations / Chapter I:
Maxwell's Equations
5.

電子ブック

EB
Luque, Steven Hegedus, Antonio Luque
出版情報: Wiley Online Library - AutoHoldings Books , John Wiley & Sons, 2003
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目次情報: 続きを見る
List of Contributors
Status, Trends, Challenges and the Bright Future of Solar Electricity from Photovoltaics / S. Hegedus ; A. Luque
Motivation for Photovoltaic Application and Development / J. Luther
The Physics of the Solar Cell / J. Gray
Theoretical Limits of Photovoltaic Conversion / A. Marti
Solar Grade Silicon Feedstock / B. Ceccaroli ; O. Lohne
Bulk Crystal Growth and Wafering for PV / W. Koch, et al.
Crystalline Silicon Solar Cells and Modules / I. Tobias, et al.
Thin-film Silicon Solar Cells / B. Sopori
High-Efficiency III-V Multijunction Solar Cells / J. Olson, et al.
Space Solar Cells and Arrays / S. Bailey ; R. Raffaelle
Photovoltaic Concentrators / R. Swanson
Amorphous Silicon-based Solar Cells / X. Deng ; E. Schiff
Cu(InGa)Se 2 Solar Cells / W. Shafarman ; L. Stolt
Cadmium Telluride Solar Cells / B. McCandless ; J. Sites
Dye-sensitized Solar Cells / K. Hara ; H. Arakawa
Measurement and Characterization of Solar Cells and Modules / K. Emery
Photovoltaic Systems / K. Preiser
Electrochemical Storage for Photovoltaics / D. Sauer
Power Conditioning for Photovoltaic Power Systems / J. Schmid ; H. Schmidt
Energy Collected and Delivered by PV Modules / E. Lorenzo
Economic Analysis and Enviromental Aspects of Photovoltaic Systems / R. Whisnant, et al.
PV in Architecture / T. Reijenga
Photovoltaics and Development / J. Huacuz ; L. Gunaratne
Financing PV Growth / M. Eckhart, et al.
Index
List of Contributors
Status, Trends, Challenges and the Bright Future of Solar Electricity from Photovoltaics / S. Hegedus ; A. Luque
Motivation for Photovoltaic Application and Development / J. Luther
6.

電子ブック

EB
Bruce G. Miller, Bruce G. Miller, David A. Tillman, David Tillman
出版情報: Elsevier ScienceDirect Books Complete , Academic Press, 2008
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Introduction Coal Characteristics
Characteristics of Alternative Fuels
Characteristics and Behavior of Inorganic Constituents
Fuel Blending for Combustion Management
Fuel Preparation
Conventional Firing Systems
Fluidized-Bed Firing Systems
Post-Combustion Emissions Control
Some Computer Applications for Combustion Engineering with Solid Fuels
Gasification
Policy Considerations for Combustion Engineering
Introduction Coal Characteristics
Characteristics of Alternative Fuels
Characteristics and Behavior of Inorganic Constituents
7.

電子ブック

EB
Jiyuan Tu, Chaoqun Liu, Guan Heng Yeoh, Chaoqun Liu, Guan Heng Yeoh, L
出版情報: Elsevier ScienceDirect Books Complete , Butterworth-Heinemann, 2008
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