Julius Adams Stratton
Electromagnetic Theory
Julius Adams Stratton
Electromagnetic Theory
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A scientific treatise for students or keen amateurs. This book is separated into easy digest segments including, field equations, potentials, stress and energies, plane waves and much more. Many of the earliest books, particularly those dating back to the 1900s and before, are now extremely scarce and increasingly expensive. We are republishing these classic works in affordable, high quality, modern editions, using the original text and artwork.
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A scientific treatise for students or keen amateurs. This book is separated into easy digest segments including, field equations, potentials, stress and energies, plane waves and much more. Many of the earliest books, particularly those dating back to the 1900s and before, are now extremely scarce and increasingly expensive. We are republishing these classic works in affordable, high quality, modern editions, using the original text and artwork.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Swedenborg Press
- Seitenzahl: 630
- Erscheinungstermin: 22. November 2010
- Englisch
- Abmessung: 216mm x 140mm x 37mm
- Gewicht: 876g
- ISBN-13: 9781446517390
- ISBN-10: 144651739X
- Artikelnr.: 32850284
- Verlag: Swedenborg Press
- Seitenzahl: 630
- Erscheinungstermin: 22. November 2010
- Englisch
- Abmessung: 216mm x 140mm x 37mm
- Gewicht: 876g
- ISBN-13: 9781446517390
- ISBN-10: 144651739X
- Artikelnr.: 32850284
Preface CHAPTER I: THE FIELD EQUATIONS. MAXWELL'S EQUATIONS. MACROSCOPIC
PROPERTIES OF MATTER. UNITS AND DIMENSIONS. THE ELECTROMAGNETIC POTENTIALS.
BOUNDARY CONDITIONS. COORDINATE SYSTEMS. THE FIELD SENSORS. CHAPTER II:
STRESS AND ENERGY. STRESS AND STRAIN IN ELASTIC MEDIA. ELECTROMAGNETIC
FORCES ON CHARGES AND CURRENTS. MAGNETOSTATIC ENERGY. ENERGY FLOW. FORCES
ON A DIELECTRIC IN AN ELECTROSTATIC FIELD. FORCES IN THE MAGNETOSTATIC
FIELD. FORCES IN THE ELECTROMAGNETIC FIELD. CHAPTER III: THE ELECTROSTATIC
FIELD. CALCULATION OF THE FIELD FROM THE CHARGE DISTRIBUTION. EXPANSION OF
THE POTENTIAL IN SPHERICAL HARMONICS. DIELECTRIC POLARIZATION.
BOUNDARY-VALUE PROBLEMS. PROBLEM OF THE SPHERE. CHAPTER IV: THE
MAGNETOSTATIC FIELD. GENERAL PROPERTIES OF A MAGNETOSTATFIC FIELD.
CALCULATION OF THE FIELD OF A CURRENT DISTRIBUTION. A DIGRESSION ON UNITS
AND DIMENSIONS. MAGNETIC POLARIZATION. DISCONTINUITIES OF THE VECTORS A AND
B. INTEGRATION OF THE EQUATION. BOUNDARY-VALUE PROBLEMS. PROBLEM OF THE
ELLIPSOID. CYLINDER IN A PARALLEL FIELD. PROBLEMS. CHAPTER V: PLANE WAVES
IN UNBOUNDED ISOTROPIC MEDIA. PROPAGATION OF PLANE WAVES. GENERAL SOLUTIONS
OF THE ONE-DIMENSION WAVE EQUATION. DISPERSION. VELOCITIES OF PROPAGATION.
PROBLEMS. CHAPTER VI: CYLINDRICAL WAVES. EQUATIONS OF A CYLINDRICAL FIE LD.
WAVE FUNCTIONS OF THE CIRCULAR CYLINDER. WAVE FUNCTIONS OF THE ELLIPTIC
CYLINDER. PROBLEMS. CHAPTER VII: SPHERICAL WAVES. THE VECTOR WAVE EQUATION.
THE SCALAR WAVE EQUATION IN SPHERICAL COORDINATES. THE VECTOR WAVE EQUATION
IN SPHERICACL COORDINATES. PROBLEMS. CHAPTER VIII: RADIATION. THE
INHOMOGENEOUS SOLAR WAVE EQUATION. A MULTIPOLE EXPANSION. RADIATION THEORY
OF LINEAR ANTENNA SYSTEMS. THE KIRCHHOFF-HUYGENS PRINCIPLE.
FOUR-DIMENSIONAL FORMULATION OF THE RADIATION PROBLEM. PROBLEMS. CHAPTER
IX: BOUNDARY-VALUE PROBLEMS. GENERAL THEOREMS. REFLECTION AND REFRACTION AT
A PLANE SURFACE. PLANE SHEETS. SURFACE WAVES. PROPAGATION ALONG A CIRCULAR
CYLINDER. 9 15 Natural Modes. 9 16 Conductor Ernbeded in a Dielectric. 9 17
Further Discussion of the Principal Wave. 9 18 Waves in Hollow Pipes.
COAXIA LINES. OSCILLATIONS OF A SPHERE. DIFFRACTION OF A PLANE WAVE BY A
SPHERE. EFFECT OF THE EARTH ON THE PROPAGATION OF RADIO WAVES. PROBLEMS.
APPENDIX I. A. NUMERICAL VALUES OF FUNDAMENTAL CONSTANTS. B. DIMENSIONS OF
ELECTROMAGNETIC QUANTITIES. C. CONVERSION TABLES. APPENDIX II. FORMULAS
FROM VECTOR ANALYSIS. APPENDIX III. CONDUCTIVITY OF VARIOUS MATERIALS.
SPECIFIC INDUCTIVE CAPACITY OF DIELECTRICS. APPENDIX IV. ASSOCIATED
LEGENDRE FUNCTIONS. Index.
PROPERTIES OF MATTER. UNITS AND DIMENSIONS. THE ELECTROMAGNETIC POTENTIALS.
BOUNDARY CONDITIONS. COORDINATE SYSTEMS. THE FIELD SENSORS. CHAPTER II:
STRESS AND ENERGY. STRESS AND STRAIN IN ELASTIC MEDIA. ELECTROMAGNETIC
FORCES ON CHARGES AND CURRENTS. MAGNETOSTATIC ENERGY. ENERGY FLOW. FORCES
ON A DIELECTRIC IN AN ELECTROSTATIC FIELD. FORCES IN THE MAGNETOSTATIC
FIELD. FORCES IN THE ELECTROMAGNETIC FIELD. CHAPTER III: THE ELECTROSTATIC
FIELD. CALCULATION OF THE FIELD FROM THE CHARGE DISTRIBUTION. EXPANSION OF
THE POTENTIAL IN SPHERICAL HARMONICS. DIELECTRIC POLARIZATION.
BOUNDARY-VALUE PROBLEMS. PROBLEM OF THE SPHERE. CHAPTER IV: THE
MAGNETOSTATIC FIELD. GENERAL PROPERTIES OF A MAGNETOSTATFIC FIELD.
CALCULATION OF THE FIELD OF A CURRENT DISTRIBUTION. A DIGRESSION ON UNITS
AND DIMENSIONS. MAGNETIC POLARIZATION. DISCONTINUITIES OF THE VECTORS A AND
B. INTEGRATION OF THE EQUATION. BOUNDARY-VALUE PROBLEMS. PROBLEM OF THE
ELLIPSOID. CYLINDER IN A PARALLEL FIELD. PROBLEMS. CHAPTER V: PLANE WAVES
IN UNBOUNDED ISOTROPIC MEDIA. PROPAGATION OF PLANE WAVES. GENERAL SOLUTIONS
OF THE ONE-DIMENSION WAVE EQUATION. DISPERSION. VELOCITIES OF PROPAGATION.
PROBLEMS. CHAPTER VI: CYLINDRICAL WAVES. EQUATIONS OF A CYLINDRICAL FIE LD.
WAVE FUNCTIONS OF THE CIRCULAR CYLINDER. WAVE FUNCTIONS OF THE ELLIPTIC
CYLINDER. PROBLEMS. CHAPTER VII: SPHERICAL WAVES. THE VECTOR WAVE EQUATION.
THE SCALAR WAVE EQUATION IN SPHERICAL COORDINATES. THE VECTOR WAVE EQUATION
IN SPHERICACL COORDINATES. PROBLEMS. CHAPTER VIII: RADIATION. THE
INHOMOGENEOUS SOLAR WAVE EQUATION. A MULTIPOLE EXPANSION. RADIATION THEORY
OF LINEAR ANTENNA SYSTEMS. THE KIRCHHOFF-HUYGENS PRINCIPLE.
FOUR-DIMENSIONAL FORMULATION OF THE RADIATION PROBLEM. PROBLEMS. CHAPTER
IX: BOUNDARY-VALUE PROBLEMS. GENERAL THEOREMS. REFLECTION AND REFRACTION AT
A PLANE SURFACE. PLANE SHEETS. SURFACE WAVES. PROPAGATION ALONG A CIRCULAR
CYLINDER. 9 15 Natural Modes. 9 16 Conductor Ernbeded in a Dielectric. 9 17
Further Discussion of the Principal Wave. 9 18 Waves in Hollow Pipes.
COAXIA LINES. OSCILLATIONS OF A SPHERE. DIFFRACTION OF A PLANE WAVE BY A
SPHERE. EFFECT OF THE EARTH ON THE PROPAGATION OF RADIO WAVES. PROBLEMS.
APPENDIX I. A. NUMERICAL VALUES OF FUNDAMENTAL CONSTANTS. B. DIMENSIONS OF
ELECTROMAGNETIC QUANTITIES. C. CONVERSION TABLES. APPENDIX II. FORMULAS
FROM VECTOR ANALYSIS. APPENDIX III. CONDUCTIVITY OF VARIOUS MATERIALS.
SPECIFIC INDUCTIVE CAPACITY OF DIELECTRICS. APPENDIX IV. ASSOCIATED
LEGENDRE FUNCTIONS. Index.
Preface CHAPTER I: THE FIELD EQUATIONS. MAXWELL'S EQUATIONS. MACROSCOPIC
PROPERTIES OF MATTER. UNITS AND DIMENSIONS. THE ELECTROMAGNETIC POTENTIALS.
BOUNDARY CONDITIONS. COORDINATE SYSTEMS. THE FIELD SENSORS. CHAPTER II:
STRESS AND ENERGY. STRESS AND STRAIN IN ELASTIC MEDIA. ELECTROMAGNETIC
FORCES ON CHARGES AND CURRENTS. MAGNETOSTATIC ENERGY. ENERGY FLOW. FORCES
ON A DIELECTRIC IN AN ELECTROSTATIC FIELD. FORCES IN THE MAGNETOSTATIC
FIELD. FORCES IN THE ELECTROMAGNETIC FIELD. CHAPTER III: THE ELECTROSTATIC
FIELD. CALCULATION OF THE FIELD FROM THE CHARGE DISTRIBUTION. EXPANSION OF
THE POTENTIAL IN SPHERICAL HARMONICS. DIELECTRIC POLARIZATION.
BOUNDARY-VALUE PROBLEMS. PROBLEM OF THE SPHERE. CHAPTER IV: THE
MAGNETOSTATIC FIELD. GENERAL PROPERTIES OF A MAGNETOSTATFIC FIELD.
CALCULATION OF THE FIELD OF A CURRENT DISTRIBUTION. A DIGRESSION ON UNITS
AND DIMENSIONS. MAGNETIC POLARIZATION. DISCONTINUITIES OF THE VECTORS A AND
B. INTEGRATION OF THE EQUATION. BOUNDARY-VALUE PROBLEMS. PROBLEM OF THE
ELLIPSOID. CYLINDER IN A PARALLEL FIELD. PROBLEMS. CHAPTER V: PLANE WAVES
IN UNBOUNDED ISOTROPIC MEDIA. PROPAGATION OF PLANE WAVES. GENERAL SOLUTIONS
OF THE ONE-DIMENSION WAVE EQUATION. DISPERSION. VELOCITIES OF PROPAGATION.
PROBLEMS. CHAPTER VI: CYLINDRICAL WAVES. EQUATIONS OF A CYLINDRICAL FIE LD.
WAVE FUNCTIONS OF THE CIRCULAR CYLINDER. WAVE FUNCTIONS OF THE ELLIPTIC
CYLINDER. PROBLEMS. CHAPTER VII: SPHERICAL WAVES. THE VECTOR WAVE EQUATION.
THE SCALAR WAVE EQUATION IN SPHERICAL COORDINATES. THE VECTOR WAVE EQUATION
IN SPHERICACL COORDINATES. PROBLEMS. CHAPTER VIII: RADIATION. THE
INHOMOGENEOUS SOLAR WAVE EQUATION. A MULTIPOLE EXPANSION. RADIATION THEORY
OF LINEAR ANTENNA SYSTEMS. THE KIRCHHOFF-HUYGENS PRINCIPLE.
FOUR-DIMENSIONAL FORMULATION OF THE RADIATION PROBLEM. PROBLEMS. CHAPTER
IX: BOUNDARY-VALUE PROBLEMS. GENERAL THEOREMS. REFLECTION AND REFRACTION AT
A PLANE SURFACE. PLANE SHEETS. SURFACE WAVES. PROPAGATION ALONG A CIRCULAR
CYLINDER. 9 15 Natural Modes. 9 16 Conductor Ernbeded in a Dielectric. 9 17
Further Discussion of the Principal Wave. 9 18 Waves in Hollow Pipes.
COAXIA LINES. OSCILLATIONS OF A SPHERE. DIFFRACTION OF A PLANE WAVE BY A
SPHERE. EFFECT OF THE EARTH ON THE PROPAGATION OF RADIO WAVES. PROBLEMS.
APPENDIX I. A. NUMERICAL VALUES OF FUNDAMENTAL CONSTANTS. B. DIMENSIONS OF
ELECTROMAGNETIC QUANTITIES. C. CONVERSION TABLES. APPENDIX II. FORMULAS
FROM VECTOR ANALYSIS. APPENDIX III. CONDUCTIVITY OF VARIOUS MATERIALS.
SPECIFIC INDUCTIVE CAPACITY OF DIELECTRICS. APPENDIX IV. ASSOCIATED
LEGENDRE FUNCTIONS. Index.
PROPERTIES OF MATTER. UNITS AND DIMENSIONS. THE ELECTROMAGNETIC POTENTIALS.
BOUNDARY CONDITIONS. COORDINATE SYSTEMS. THE FIELD SENSORS. CHAPTER II:
STRESS AND ENERGY. STRESS AND STRAIN IN ELASTIC MEDIA. ELECTROMAGNETIC
FORCES ON CHARGES AND CURRENTS. MAGNETOSTATIC ENERGY. ENERGY FLOW. FORCES
ON A DIELECTRIC IN AN ELECTROSTATIC FIELD. FORCES IN THE MAGNETOSTATIC
FIELD. FORCES IN THE ELECTROMAGNETIC FIELD. CHAPTER III: THE ELECTROSTATIC
FIELD. CALCULATION OF THE FIELD FROM THE CHARGE DISTRIBUTION. EXPANSION OF
THE POTENTIAL IN SPHERICAL HARMONICS. DIELECTRIC POLARIZATION.
BOUNDARY-VALUE PROBLEMS. PROBLEM OF THE SPHERE. CHAPTER IV: THE
MAGNETOSTATIC FIELD. GENERAL PROPERTIES OF A MAGNETOSTATFIC FIELD.
CALCULATION OF THE FIELD OF A CURRENT DISTRIBUTION. A DIGRESSION ON UNITS
AND DIMENSIONS. MAGNETIC POLARIZATION. DISCONTINUITIES OF THE VECTORS A AND
B. INTEGRATION OF THE EQUATION. BOUNDARY-VALUE PROBLEMS. PROBLEM OF THE
ELLIPSOID. CYLINDER IN A PARALLEL FIELD. PROBLEMS. CHAPTER V: PLANE WAVES
IN UNBOUNDED ISOTROPIC MEDIA. PROPAGATION OF PLANE WAVES. GENERAL SOLUTIONS
OF THE ONE-DIMENSION WAVE EQUATION. DISPERSION. VELOCITIES OF PROPAGATION.
PROBLEMS. CHAPTER VI: CYLINDRICAL WAVES. EQUATIONS OF A CYLINDRICAL FIE LD.
WAVE FUNCTIONS OF THE CIRCULAR CYLINDER. WAVE FUNCTIONS OF THE ELLIPTIC
CYLINDER. PROBLEMS. CHAPTER VII: SPHERICAL WAVES. THE VECTOR WAVE EQUATION.
THE SCALAR WAVE EQUATION IN SPHERICAL COORDINATES. THE VECTOR WAVE EQUATION
IN SPHERICACL COORDINATES. PROBLEMS. CHAPTER VIII: RADIATION. THE
INHOMOGENEOUS SOLAR WAVE EQUATION. A MULTIPOLE EXPANSION. RADIATION THEORY
OF LINEAR ANTENNA SYSTEMS. THE KIRCHHOFF-HUYGENS PRINCIPLE.
FOUR-DIMENSIONAL FORMULATION OF THE RADIATION PROBLEM. PROBLEMS. CHAPTER
IX: BOUNDARY-VALUE PROBLEMS. GENERAL THEOREMS. REFLECTION AND REFRACTION AT
A PLANE SURFACE. PLANE SHEETS. SURFACE WAVES. PROPAGATION ALONG A CIRCULAR
CYLINDER. 9 15 Natural Modes. 9 16 Conductor Ernbeded in a Dielectric. 9 17
Further Discussion of the Principal Wave. 9 18 Waves in Hollow Pipes.
COAXIA LINES. OSCILLATIONS OF A SPHERE. DIFFRACTION OF A PLANE WAVE BY A
SPHERE. EFFECT OF THE EARTH ON THE PROPAGATION OF RADIO WAVES. PROBLEMS.
APPENDIX I. A. NUMERICAL VALUES OF FUNDAMENTAL CONSTANTS. B. DIMENSIONS OF
ELECTROMAGNETIC QUANTITIES. C. CONVERSION TABLES. APPENDIX II. FORMULAS
FROM VECTOR ANALYSIS. APPENDIX III. CONDUCTIVITY OF VARIOUS MATERIALS.
SPECIFIC INDUCTIVE CAPACITY OF DIELECTRICS. APPENDIX IV. ASSOCIATED
LEGENDRE FUNCTIONS. Index.