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Introduction to engineering electromagnetic fields

Author: Korada Umashankar
Publisher: Singapore ; Teaneck, NJ : World Scientific, ©1989.
Series: Advanced series in electrical and computer engineering, vol. 4.
Edition/Format:   eBook : Document : EnglishView all editions and formats
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Umashankar, Korada.
Introduction to engineering electromagnetic fields.
Singapore ; Teaneck, NJ : World Scientific, ©1989
(DLC) 89009197
(OCoLC)19776709
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Korada Umashankar
ISBN: 9789814434416 9814434418
OCLC Number: 1020627741
Description: 1 online resource.
Contents: Intro; TABLE OF CONTENTS; Preface; Chapter: 1 VECTOR CALCULUS; 1.0 INTRODUCTION; 1.1 COORDINATE SYSTEMS; 1.2 ADDITION AND SUBTRACTION OF VECTORS; 1.3 PRODUCT OF VECTORS; 1.4 VECTOR IDENTITIES; 1.5 SCALAR AND VECTOR FUNCTIONS; 1.6 THE DIFFERENTIAL OPERATOR; 1.7 REPRESENTATION OF VECTORS IN OTHER COORDINATES; 1.8 INTEGRALS OF SCALAR AND VECTOR FUNCTIONS; 1.9 DIFFERENTIAL EXPRESSIONS IN OTHER COORDINRTES; Chapter 1: Problems; Chapter: 2 STATIC ELECTRIC FIELD; 2.0 INTRODUCTION; 2.1 STATIC ELECTRIC CHARGES; 2.2 COULOMB'S LAW; 2.2.1 TWO ISOLATED POINT CHARGES; 2.2.2 MULTIPLE POINT CHARGES. 2.3 CHARGE DENSITY DISTRIBUTIONS2.3.1 VOLUME CHARGE DENSITY; 2.3.2 SURFACE CHARGE DENSITY; 2.3.3 LINE CHARGE DENSITY; 2.4 STATIC ELECTRIC FIELD; 2.4.1 ISOLATED POINT CHARGE; 2.4.1 MULTIPLE POINT CHARGES; 2.5 ELECTRIC FIELD- CONTINUOUS LINE CHARGE DISTRIBUTION; 2.5.1 INFINITE LINE CHARGE; 2.6 ELECTRIC FIELD- CONTINUOUS SURFACE CHARGE DISTRIBUTION; 2.6.1 INFINITE PLANAR SHEET OF CHARGE; 2.7 ELECTRIC FIELD- CONTINUOUS VOLUME CHARGE DISTRIBUTION; 2.8 SUMMARY; Chapter 2: Problems; Chapter: 3 ELECTRIC FLUX DENSITY; 3.0 INTRODUCTION; 3.1 GAUSS'S LAW FOR ELECTRIC FIELD. 3.1.1 RELATION BETWEEN ELECTRIC FIELD RND DENSITY3.2 DIVERGENCE OF ELECTRIC FIELD; 3.2.1 GAUSS-DIVERGENCE THEOREM; 3.3 SUMMARY; Chapter 3: Problems; Chapter: 4 ELECTROSTATIC POTENTIAL; 4.0 INTRODUCTION; 4.1 WORK DONE AND ELECTRIC SCALAR POTENTIAL; 4.2 STATIC ELECTRIC POTENTIRL IN TERMS OF SOURCES; 4.2.1 ISOLATED POINT CHARGE; 4.2.2 POTENTIAL DUE TO MULTIPLE POINT CHARGES; 4.3 ELECTRIC POTENTIAL- CONTINUOUS LINE CHARGE DISTRIBUTION; 4.4 ELECTRIC POTENTIAL- CONTINUOUS SURFACE CHARGE DISTRIBUTION; 4.5 ELECTRIC POTENTIAL- CONTINUOUS VOLUME CHARGE DISTRIBUTION. 4.6 GRADIENT OF ELECTRIC SCALAR POTENTIAL4.7 POISSON AND LAPLACE EQUATIONS; 4.8 ELECTROSTATIC ENERGY; 4.9 SUMMARY; Chapter 4: Problems; Chapter: 5 DIELECTRIC MATERIAL MEDIUM; 5.0 INTRODUCTION; 5.1 ELECTRIC POLARIZATION; 5.1.1 ELECTRIC DIPOLE; 5.1.2 DIPOLE MOMENT AND POLARIZATION DENSITY; 5.1.3 ANISOTROPIC DIELECTRIC MATERIALS; 5.2 COULOMB'S LAW IN DIELECTRIC MEDIUM; 5.2.1 ISOLATED POINT CHARGES; 5.2.2 CHRRGE DENSITY DISTRIBUTIONS; 5.2.3 ELECTRIC FIELD DISTRIBUTION; 5.3 ELECTRIC FLUX DENSITY; 5.3.1 GAUSS'S LAW IN DIELECTRIC MEDIUM; 5.4 ELECTRIC SCALAR POTENTIAL. 5.4.1 ELECTRIC SCALAR POTENTIAL IN TERMS OF SOURCES5.4.2 POISSON'S AND LAPLACE'S EQUATIONS; 5.5 ENERGY STORED IN DIELECTRIC MEDIUM; 5.6 CONDUCTING MATERIAL; 5.6.1 IMAGE PRINCIPLE; 5.6.2 LINE CHARGE OVER GROUND PLANE; 5.7 BOUNDARY CONDITIONS; 5.7.1 BOUNDARY CONDITION FOR TANGENTIAL COMPONENTS; 5.7.2 BOUNDARY CONDITION FOR NORMAL COMPONENTS; 5.8 SUMMARY; Chapter 5: Problems; Chapter: 6 SOLUTION TO ELECTROSTATIC FIELD PROBLEMS; 6.0 INTRODUCTION; 6.0.1 ELECTROSTATIC CAPACITANCE; 6.1 ONE DIMENSIONAL PROBLEMS; 6.1.1 INFINITELY LARGE PARALLEL PLATES; 6.1.2 INFINITELY LONG COAXIAL CYLINDERS.
Series Title: Advanced series in electrical and computer engineering, vol. 4.
Responsibility: Korada Umashankar.

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