P. C. Clemmow
An Introduction to Electromagnetic Theory
P. C. Clemmow
An Introduction to Electromagnetic Theory
- Broschiertes Buch
- Merkliste
- Auf die Merkliste
- Bewerten Bewerten
- Teilen
- Produkt teilen
- Produkterinnerung
- Produkterinnerung
First published in 1973, Dr Clemmow's Introduction to Electromagnetic Theory provides a crisp and selective account of the subject.
Andere Kunden interessierten sich auch für
Martinus VeltmanDiagrammatica40,99 €
Nonlinear Waves51,99 €
Iain G. MainVibrations and Waves in Physics67,99 €
P. L. SachdevNonlinear Diffusive Waves44,99 €
Twistors in Mathematics and Physics65,99 €
C. RogersBacklund and Darboux Transformations73,99 €
Michel Le BellacQuantum and Statistical Field Theory110,99 €-
-
-
First published in 1973, Dr Clemmow's Introduction to Electromagnetic Theory provides a crisp and selective account of the subject.
Produktdetails
- Produktdetails
- Verlag: Cambridge University Press
- Seitenzahl: 310
- Erscheinungstermin: 22. Juli 2010
- Englisch
- Abmessung: 229mm x 152mm x 18mm
- Gewicht: 506g
- ISBN-13: 9780521098151
- ISBN-10: 0521098157
- Artikelnr.: 26681283
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
- Verlag: Cambridge University Press
- Seitenzahl: 310
- Erscheinungstermin: 22. Juli 2010
- Englisch
- Abmessung: 229mm x 152mm x 18mm
- Gewicht: 506g
- ISBN-13: 9780521098151
- ISBN-10: 0521098157
- Artikelnr.: 26681283
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
Preface
Part I. Basic Concepts: 1. Charged particles, force and field
2. Charge and current density
3. Practical units and magnitudes
4. Development of the theory
Part II. The Vacuum Field of Charge and Current: Mazwell's Equations: 1. The field of static charge
2. The field of steady current
3. Faraday's law of induction
4. Maxwell's 'displacement' current
5. Maxwell's equations
Part III. Electrostatics: 1. Field and potential
2. Energy
3. Potential theory
4. Dielectrics
Part IV. The Magnetic Field of Steady and Slowly Varying Currents: 1. Steady currents in a conductor
2. Currents and field
3. Energy
4. Circuits
5. Magnetic media
Part V. Electromagnetic Waves: 1. Maxwell's equations
2. Monochromatic plane waves in vacuum
3. Monochromatic plane waves in media
4. Radiation
Part VI. The Electromagnetic Properties of Media: 1. Polarization and magnetization
2. Free electron gas
3. Dielectrics
4. Magnetic media
Appendix
Index.
Part I. Basic Concepts: 1. Charged particles, force and field
2. Charge and current density
3. Practical units and magnitudes
4. Development of the theory
Part II. The Vacuum Field of Charge and Current: Mazwell's Equations: 1. The field of static charge
2. The field of steady current
3. Faraday's law of induction
4. Maxwell's 'displacement' current
5. Maxwell's equations
Part III. Electrostatics: 1. Field and potential
2. Energy
3. Potential theory
4. Dielectrics
Part IV. The Magnetic Field of Steady and Slowly Varying Currents: 1. Steady currents in a conductor
2. Currents and field
3. Energy
4. Circuits
5. Magnetic media
Part V. Electromagnetic Waves: 1. Maxwell's equations
2. Monochromatic plane waves in vacuum
3. Monochromatic plane waves in media
4. Radiation
Part VI. The Electromagnetic Properties of Media: 1. Polarization and magnetization
2. Free electron gas
3. Dielectrics
4. Magnetic media
Appendix
Index.
Preface
Part I. Basic Concepts: 1. Charged particles, force and field
2. Charge and current density
3. Practical units and magnitudes
4. Development of the theory
Part II. The Vacuum Field of Charge and Current: Mazwell's Equations: 1. The field of static charge
2. The field of steady current
3. Faraday's law of induction
4. Maxwell's 'displacement' current
5. Maxwell's equations
Part III. Electrostatics: 1. Field and potential
2. Energy
3. Potential theory
4. Dielectrics
Part IV. The Magnetic Field of Steady and Slowly Varying Currents: 1. Steady currents in a conductor
2. Currents and field
3. Energy
4. Circuits
5. Magnetic media
Part V. Electromagnetic Waves: 1. Maxwell's equations
2. Monochromatic plane waves in vacuum
3. Monochromatic plane waves in media
4. Radiation
Part VI. The Electromagnetic Properties of Media: 1. Polarization and magnetization
2. Free electron gas
3. Dielectrics
4. Magnetic media
Appendix
Index.
Part I. Basic Concepts: 1. Charged particles, force and field
2. Charge and current density
3. Practical units and magnitudes
4. Development of the theory
Part II. The Vacuum Field of Charge and Current: Mazwell's Equations: 1. The field of static charge
2. The field of steady current
3. Faraday's law of induction
4. Maxwell's 'displacement' current
5. Maxwell's equations
Part III. Electrostatics: 1. Field and potential
2. Energy
3. Potential theory
4. Dielectrics
Part IV. The Magnetic Field of Steady and Slowly Varying Currents: 1. Steady currents in a conductor
2. Currents and field
3. Energy
4. Circuits
5. Magnetic media
Part V. Electromagnetic Waves: 1. Maxwell's equations
2. Monochromatic plane waves in vacuum
3. Monochromatic plane waves in media
4. Radiation
Part VI. The Electromagnetic Properties of Media: 1. Polarization and magnetization
2. Free electron gas
3. Dielectrics
4. Magnetic media
Appendix
Index.







