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Electromagnetic Radiation and Polarization

Satellite Remote Sensing SIO 135/SIO 236. Electromagnetic Radiation and Polarization 1. Electromagnetic Radiation Models To understand the interaction that the EMR undergoes before it reaches the sensor, we need to understand the nature of EMR. To understand how EMR is created, how it propagates through space, and how it interacts with other matter , it is useful to describe the processes using two different models: the wave model, and the particle model. Electromagnetic waves EM waves are energy transported through space in the form of periodic disturbances of electric and magnetic fields EM waves travel through space at the same speed, c =.

through space, and how it interacts with other matter, it is useful to describe the processes using two different models: • the wave model, and • the particle model.! EM waves are energy transported through space in the form of ... Gauss's law for magnetism: Maxwellʼs Faraday rotation: Ampereʼs circuital law: E = electric field (vector)

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  Matter, Polarization, Magnetism

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