Fundamentals of electromagnetics with MATLAB:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Raleigh, NC
SciTech Publishing, Inc.
[2007]
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Ausgabe: | Second edition |
Schlagworte: | |
Online-Zugang: | Table of contents only Inhaltsverzeichnis |
Beschreibung: | Includes bibliographical references (p. 490-492) and index |
Beschreibung: | XXII, 529 Seiten Diagramme 24 cm. + 1 CD-ROM (12 cm.) |
ISBN: | 1891121588 9781891121586 |
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245 | 1 | 0 | |a Fundamentals of electromagnetics with MATLAB |c Karl E. Lonngren, Sava V. Savov, Randy J. Jost |
250 | |a Second edition | ||
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Datensatz im Suchindex
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adam_text | FUNDAMENTALS OF ELECTROMAGNETICS WITH MATLAB SECOND EDITION KARL E.
LONNGREN DEPARTMENT OF ELECTRICAL AND COMPUTER ENGINEERING THE
UNIVERSITY OFLOWA IOWA CITY, IOWA SAVA V. SAVOV DEPARTMENT OF ELECTRONIC
ENGINEERING TECHNICAL UNIVERSITY OFVARNA VARNA, BULGARIA RANDY J. JOST
SPACE DYNAMICS LABORATORY DEPARTMENT OF ELECTRICAL AND COMPUTER
ENGINEERING DEPARTMENT OFPHYSICS UTAH STATE UNIVERSITY LOGAN, UTAH ^ *
PUBLISHJJR,INC. LTECJT LTEC RALEIGH, NC WWW. SCITECHPUB. COM CONTENTS
PREFACE EDITORIAL ADVISORY BOARD IN ELECTROMAGNETICS NOTATION TABLE VIU
XVIII XIX CHAPTER 1 MATLAB, VECTORS, AND PHASORS 1.1 UNDERSTANDING
VECTORS USING MATLAB 1.2 COORDINATE SYSTEMS 16 1.3 INTEGRAL RELATIONS
FOR VECTORS 29 1.4 DIFFERENTIAL RELATIONS FOR VECTORS 37 1.5 PHASORS 52
1.6 CONCLUSION 56 1.7 PROBLEMS 56 CHAPTER 2 ELECTROSTATIC FIELDS 61 2.1
COULOMB S LAW 61 2.2 ELECTRIC FIELD 67 2.3 SUPERPOSITION PRINCIPLES 69
2.4 GAUSS S LAW 77 2.5 POTENTIAL ENERGY AND ELECTRIC POTENTIAL 2.6
NUMERICAL INTEGRATION 100 2.7 DIELECTRIC MATERIALS 109 2.8 CAPACITANCE
114 2.9 CONCLUSION 119 2.10 PROBLEMS 119 85 CHAPTER 3 MAGNETOSTATIC
FIELDS 123 3.1 ELECTRICAL CURRENTS 123 3.2 FUNDAMENTALS OF MAGNETIC
FIELDS 128 3.3 MAGNETIC VECTOR POTENTIAL AND THE BIOT-SAVART LAW 3.4
MAGNETIC FORCES 146 3.5 MAGNETIC MATERIALS 157 3.6 MAGNETIC CIRCUITS 162
138 V VI CONTENTS 3.7 INDUCTANCE 166 3.8 CONCLUSION 171 3.9 PROBLEMS 172
CHAPTER 4 BOUNDARY VALUE PROBLEMS USING MATLAB 177 4.1 BOUNDARY
CONDITIONS FOR ELECTRIC AND MAGNETIC FIELDS 178 4.2 POISSON S AND
LAPLACE S EQUATIONS 186 4.3 ANALYTICAL SOLUTION IN ONE DIMENSION*DIRECT
INTEGRATION METHOD 191 4.4 NUMERICAL SOLUTION OF A ONE-DIMENSIONAL
EQUATION*FINITE DIFFERENCE METHOD 201 4.5 ANALYTICAL SOLUTION OF A
TWO-DIMENSIONAL EQUATION* SEPARATION OF VARIABLES 211 4.6 FINITE
DIFFERENCE METHOD USING MATLAB 220 4.7 FINITE ELEMENT METHOD USING
MATLAB 226 4.8 METHOD OF MOMENTS USING MATLAB 241 4.9 CONCLUSION 251
4.10 PROBLEMS 252 CHAPTER 5 TIME-VARYING ELECTROMAGNETIC FIELDS 25 7 5.1
FARADAY S LAW OF INDUCTION 257 5.2 EQUATION OF CONTINUITY 270 5.3
DISPLACEMENT CURRENT 274 5.4 MAXWELL S EQUATIONS 280 5.5 POYNTING S
THEOREM 285 5.6 TIME-HARMONIC ELECTROMAGNETIC FIELDS 290 5.7 CONCLUSION
293 5.8 PROBLEMS 294 CHAPTER 6 ELECTROMAGNETIC WAVE PROPAGATION 297 6.1
WAVE EQUATION 297 6.2 ONE-DIMENSIONAL WAVE EQUATION 302 6.3
TIME-HARMONIC PLANE WAVES 318 6.4 PLANE WAVE PROPAGATION IN A DIELECTRIC
MEDIUM 325 6.5 REFLECTION AND TRANSMISSION OF AN ELECTROMAGNETIC WAVE
335 6.7 CONCLUSION 349 6.8 PROBLEMS 349 CHAPTER 7 TRANSMISSION LINES 353
7.1 EQUIVALENT ELECTRICAL CIRCUITS 354 7.2 TRANSMISSION LINE EQUATIONS
357 7.3 SINUSOIDAL WAVES 362 7.4 TERMINATIONS 367 7.5 IMPEDANCE ON THE
TRANSMISSION LINE MATCHING 374 7.6 SMITH CHART 381 7.7 TRANSIENT EFFECTS
AND THE BOUNCE DIAGRAM 390 7.8 PULSE PROPAGATION 397 7.9 LOSSY
TRANSMISSION LINES 403 7.10 DISPERSION AND GROUP VELOCITY 407 7.11
CONCLUSION 414 7.12 PROBLEMS 415 CHAPTER 8 RADIATION OF ELECTROMAGNETIC
WAVES 8.1 RADIATION FUNDAMENTALS 419 8.2 INFINITESIMAL ELECTRIC DIPOLE
ANTENNA 427 8.3 FINITE ELECTRIC DIPOLE ANTENNA 434 8.4 LOOP ANTENNAS 440
8.5 ANTENNA PARAMETERS 443 8.6 ANTENNA ARRAYS 455 8.7 CONCLUSION 466 8.8
PROBLEMS 467 419 APPENDIX A MATHEMATICAL FORMULAS 469 APPENDIX B
MATERIAL PARAMETERS 474 APPENDIX C MATHEMATICAL FOUNDATION OF THE FINITE
ELEMENT METHOD 477 APPENDIX D TRANSMISSION LINE PARAMETERS OF TWO
PARALLEL WIRES 483 APPENDIX E PLASMA EVOLUTION ADJACENT TO A METALLIC
SURFACE 487 APPENDIX F BIBLIOGRAPHY 490 APPENDIX G SELECTED ANSWERS 493
APPENDIX H GREEK ALPHABET 523 INDEX 524
|
adam_txt |
FUNDAMENTALS OF ELECTROMAGNETICS WITH MATLAB SECOND EDITION KARL E.
LONNGREN DEPARTMENT OF ELECTRICAL AND COMPUTER ENGINEERING THE
UNIVERSITY OFLOWA IOWA CITY, IOWA SAVA V. SAVOV DEPARTMENT OF ELECTRONIC
ENGINEERING TECHNICAL UNIVERSITY OFVARNA VARNA, BULGARIA RANDY J. JOST
SPACE DYNAMICS LABORATORY DEPARTMENT OF ELECTRICAL AND COMPUTER
ENGINEERING DEPARTMENT OFPHYSICS UTAH STATE UNIVERSITY LOGAN, UTAH ^ *
PUBLISHJJR,INC. LTECJT LTEC RALEIGH, NC WWW. SCITECHPUB. COM CONTENTS
PREFACE EDITORIAL ADVISORY BOARD IN ELECTROMAGNETICS NOTATION TABLE VIU
XVIII XIX CHAPTER 1 MATLAB, VECTORS, AND PHASORS 1.1 UNDERSTANDING
VECTORS USING MATLAB 1.2 COORDINATE SYSTEMS 16 1.3 INTEGRAL RELATIONS
FOR VECTORS 29 1.4 DIFFERENTIAL RELATIONS FOR VECTORS 37 1.5 PHASORS 52
1.6 CONCLUSION 56 1.7 PROBLEMS 56 CHAPTER 2 ELECTROSTATIC FIELDS 61 2.1
COULOMB'S LAW 61 2.2 ELECTRIC FIELD 67 2.3 SUPERPOSITION PRINCIPLES 69
2.4 GAUSS'S LAW 77 2.5 POTENTIAL ENERGY AND ELECTRIC POTENTIAL 2.6
NUMERICAL INTEGRATION 100 2.7 DIELECTRIC MATERIALS 109 2.8 CAPACITANCE
114 2.9 CONCLUSION 119 2.10 PROBLEMS 119 85 CHAPTER 3 MAGNETOSTATIC
FIELDS 123 3.1 ELECTRICAL CURRENTS 123 3.2 FUNDAMENTALS OF MAGNETIC
FIELDS 128 3.3 MAGNETIC VECTOR POTENTIAL AND THE BIOT-SAVART LAW 3.4
MAGNETIC FORCES 146 3.5 MAGNETIC MATERIALS 157 3.6 MAGNETIC CIRCUITS 162
138 V VI CONTENTS 3.7 INDUCTANCE 166 3.8 CONCLUSION 171 3.9 PROBLEMS 172
CHAPTER 4 BOUNDARY VALUE PROBLEMS USING MATLAB 177 4.1 BOUNDARY
CONDITIONS FOR ELECTRIC AND MAGNETIC FIELDS 178 4.2 POISSON'S AND
LAPLACE'S EQUATIONS 186 4.3 ANALYTICAL SOLUTION IN ONE DIMENSION*DIRECT
INTEGRATION METHOD 191 4.4 NUMERICAL SOLUTION OF A ONE-DIMENSIONAL
EQUATION*FINITE DIFFERENCE METHOD 201 4.5 ANALYTICAL SOLUTION OF A
TWO-DIMENSIONAL EQUATION* SEPARATION OF VARIABLES 211 4.6 FINITE
DIFFERENCE METHOD USING MATLAB 220 4.7 FINITE ELEMENT METHOD USING
MATLAB 226 4.8 METHOD OF MOMENTS USING MATLAB 241 4.9 CONCLUSION 251
4.10 PROBLEMS 252 CHAPTER 5 TIME-VARYING ELECTROMAGNETIC FIELDS 25 7 5.1
FARADAY'S LAW OF INDUCTION 257 5.2 EQUATION OF CONTINUITY 270 5.3
DISPLACEMENT CURRENT 274 5.4 MAXWELL'S EQUATIONS 280 5.5 POYNTING'S
THEOREM 285 5.6 TIME-HARMONIC ELECTROMAGNETIC FIELDS 290 5.7 CONCLUSION
293 5.8 PROBLEMS 294 CHAPTER 6 ELECTROMAGNETIC WAVE PROPAGATION 297 6.1
WAVE EQUATION 297 6.2 ONE-DIMENSIONAL WAVE EQUATION 302 6.3
TIME-HARMONIC PLANE WAVES 318 6.4 PLANE WAVE PROPAGATION IN A DIELECTRIC
MEDIUM 325 6.5 REFLECTION AND TRANSMISSION OF AN ELECTROMAGNETIC WAVE
335 6.7 CONCLUSION 349 6.8 PROBLEMS 349 CHAPTER 7 TRANSMISSION LINES 353
7.1 EQUIVALENT ELECTRICAL CIRCUITS 354 7.2 TRANSMISSION LINE EQUATIONS
357 7.3 SINUSOIDAL WAVES 362 7.4 TERMINATIONS 367 7.5 IMPEDANCE ON THE
TRANSMISSION LINE MATCHING 374 7.6 SMITH CHART 381 7.7 TRANSIENT EFFECTS
AND THE BOUNCE DIAGRAM 390 7.8 PULSE PROPAGATION 397 7.9 LOSSY
TRANSMISSION LINES 403 7.10 DISPERSION AND GROUP VELOCITY 407 7.11
CONCLUSION 414 7.12 PROBLEMS 415 CHAPTER 8 RADIATION OF ELECTROMAGNETIC
WAVES 8.1 RADIATION FUNDAMENTALS 419 8.2 INFINITESIMAL ELECTRIC DIPOLE
ANTENNA 427 8.3 FINITE ELECTRIC DIPOLE ANTENNA 434 8.4 LOOP ANTENNAS 440
8.5 ANTENNA PARAMETERS 443 8.6 ANTENNA ARRAYS 455 8.7 CONCLUSION 466 8.8
PROBLEMS 467 419 APPENDIX A MATHEMATICAL FORMULAS 469 APPENDIX B
MATERIAL PARAMETERS 474 APPENDIX C MATHEMATICAL FOUNDATION OF THE FINITE
ELEMENT METHOD 477 APPENDIX D TRANSMISSION LINE PARAMETERS OF TWO
PARALLEL WIRES 483 APPENDIX E PLASMA EVOLUTION ADJACENT TO A METALLIC
SURFACE 487 APPENDIX F BIBLIOGRAPHY 490 APPENDIX G SELECTED ANSWERS 493
APPENDIX H GREEK ALPHABET 523 INDEX 524 |
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author | Lonngren, Karl E. 1938- |
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dewey-ones | 537 - Electricity and electronics |
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dewey-tens | 530 - Physics |
discipline | Physik Elektrotechnik / Elektronik / Nachrichtentechnik |
discipline_str_mv | Physik Elektrotechnik / Elektronik / Nachrichtentechnik |
edition | Second edition |
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language | English |
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spelling | Lonngren, Karl E. 1938- Verfasser (DE-588)136473830 aut Fundamentals of electromagnetics with MATLAB Karl E. Lonngren, Sava V. Savov, Randy J. Jost Second edition Raleigh, NC SciTech Publishing, Inc. [2007] XXII, 529 Seiten Diagramme 24 cm. + 1 CD-ROM (12 cm.) txt rdacontent n rdamedia nc rdacarrier Includes bibliographical references (p. 490-492) and index MATLAB Electric engineering Electromagnetic theory Elektromagnetismus MATLAB (DE-588)4329066-8 gnd rswk-swf Elektromagnetismus (DE-588)4014306-5 gnd rswk-swf Elektromagnetismus (DE-588)4014306-5 s MATLAB (DE-588)4329066-8 s DE-604 Savov, Sava V. Sonstige oth Jost, Randy J. Sonstige oth http://www.loc.gov/catdir/toc/ecip076/2006101377.html Table of contents only GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016332393&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Lonngren, Karl E. 1938- Fundamentals of electromagnetics with MATLAB MATLAB Electric engineering Electromagnetic theory Elektromagnetismus MATLAB (DE-588)4329066-8 gnd Elektromagnetismus (DE-588)4014306-5 gnd |
subject_GND | (DE-588)4329066-8 (DE-588)4014306-5 |
title | Fundamentals of electromagnetics with MATLAB |
title_auth | Fundamentals of electromagnetics with MATLAB |
title_exact_search | Fundamentals of electromagnetics with MATLAB |
title_exact_search_txtP | Fundamentals of electromagnetics with MATLAB |
title_full | Fundamentals of electromagnetics with MATLAB Karl E. Lonngren, Sava V. Savov, Randy J. Jost |
title_fullStr | Fundamentals of electromagnetics with MATLAB Karl E. Lonngren, Sava V. Savov, Randy J. Jost |
title_full_unstemmed | Fundamentals of electromagnetics with MATLAB Karl E. Lonngren, Sava V. Savov, Randy J. Jost |
title_short | Fundamentals of electromagnetics with MATLAB |
title_sort | fundamentals of electromagnetics with matlab |
topic | MATLAB Electric engineering Electromagnetic theory Elektromagnetismus MATLAB (DE-588)4329066-8 gnd Elektromagnetismus (DE-588)4014306-5 gnd |
topic_facet | MATLAB Electric engineering Electromagnetic theory Elektromagnetismus |
url | http://www.loc.gov/catdir/toc/ecip076/2006101377.html http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016332393&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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