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Electromagnetic Waves

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Electromagnetic Waves
Lowest price (incl. delivery)
103,99 USD
Typical price84,16 PLN
Lowest (90 days)74,99 PLN
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Last updated1 săptămână în urmă
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Price history (90 days)
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2026-08-08 2026-08-15
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2026-08-0884,99
2026-08-1574,99
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SP SpringerNatureLink Shop INT 84,99 USD 19,00 USD 103,99 USD Disponibil 3 zile în urmă View offer
SP SpringerNatureLink Shop INT 84,99 USD 19,00 USD 103,99 USD Disponibil 3 zile în urmă View offer
SP SpringerNatureLink Shop INT 74,99 GBP 25,00 GBP 99,99 GBP Disponibil 3 zile în urmă View offer
SP SpringerNatureLink Shop INT 99,99 USD 25,00 USD 124,99 USD Disponibil 3 zile în urmă View offer
SP SpringerNatureLink Shop INT 99,99 USD 19,00 USD 118,99 USD Disponibil 3 zile în urmă View offer
SP SpringerNatureLink Shop INT 99,99 USD 15,00 USD 114,99 USD Disponibil 3 zile în urmă View offer
SP Springer Nature Author 99,99 USD free 99,99 USD Disponibil 1 săptămână în urmă View offer

Prețurile și disponibilitatea se pot modifica. Ultima actualizare: 08.08.2026 13:30.

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Electromagnetism began in the nineteenth century when Faraday showed electricity and magnetism were not distinct, separate phenomena, but interacted when there were time-varying electric or magnetic fields. In Electricity and Magnetism I have shown from first principles how Faraday's experiments led finally to Maxwell's four equations, which with the electromagnetic-force law summarise the whole of classical electromagnetism. This book therefore begins with Maxwell's equations and then uses them to study the propagation and generation of electromagnetic waves. Physics is a subject in which the more advanced the treatment of a topic, the deeper the understanding of common occurrences that is revealed. In studying the solutions of Maxwell's equations you will find answers to such questions as: What is an electro­ magnetic wave? Why does a radio wave travel through space at the speed of light? How is a radio wave generated? Why does light pass through a straight tunnel when a radio wave does not? How does light travel down a curved glass fibre? It is a remarkable fact that the classical laws of electromagnetism are fully consistent with Einstein's special theory of relativity and this is discussed in Chapter 2. The following four chapters provide solutions of Maxwell's equations for the propagation of electro­ magnetic waves in free space, in dielectrics, across interfaces and in conductors respectively.

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