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Maxwells Equations: From Current Density Distribution to the Radiation Field of [Paperback]

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  • Category: Books (Technology & Engineering)
  • Author:  Donnevert, J?rgen
  • Author:  Donnevert, J?rgen
  • ISBN-10:  3658293756
  • ISBN-10:  3658293756
  • ISBN-13:  9783658293758
  • ISBN-13:  9783658293758
  • Publisher:  Springer Vieweg
  • Publisher:  Springer Vieweg
  • Binding:  Paperback
  • Binding:  Paperback
  • Pub Date:  01-Apr-2020
  • Pub Date:  01-Apr-2020
  • SKU:  3658293756-11-SPRI
  • SKU:  3658293756-11-SPRI
  • Pages:  173
  • Pages:  173
  • Item ID: 105273813
  • List Price: $54.99
  • Seller: ShopSpell
  • Ships in: 5 business days
  • Transit time: Up to 5 business days
  • Delivery by: Oct 11 to Oct 13
  • Notes: Brand New Item. Not shipped to AK, HI, APO, FPO, AE.
This book focuses on the derivation and solution of Maxwells equations. The stations along the way include the laws of potential and current density distribution, as well as the laws of electrostatics and stationary magnetic fields. The book is chiefly intended for students of electrical engineering, information technology, and physics; the goal is to prepare them for courses on Electromagnetic Field Theory (EFT). Building on what they have learned in advanced physics and mathematics courses at secondary school or technical college, it is intended to accompany university-level EFT courses. Particular importance is attached to detailed explanations in text form, combined with a wealth of illustrations. All formulas are derived step by step.  

Potential and Current Density Distribution.  Electrostatics.- The Stationary Magnetic Field.- Time-Varying Electric and Magnetic Fields.- Wave Propagation.- Appendix:  Verification of the Calculation Rules for Vector Analysis.

Prof. Dipl.-Ing. J?rgen Donnevert has taught and researched in the fields of transmission systems, optical communication engineering, radio relay technology, and mobile communications.  

This book focuses on the derivation and solution of Maxwells equations. The stations along the way include the laws of potential and current density distribution, as well as the laws of electrostatics and stationary magnetic fields. The book is chiefly intended for students of electrical engineering, information technology, and physics; the goal is to prepare them for courses on Electromagnetic Field Theory (EFT). Building on what they have learned in advanced physics and mathematics courses at secondary school or technical college, it is intended to accompany university-level EFT courses. Particular importance is attached to detailed explanations in text form, combined with a wealth of illustrations. All formulas are derived steplsˆ