An infinite parallel-plate capacitor has one plate carrying surface charge density - o and located at x = 0 and the other plate carrying surface charge density to located at x = d. a. Determine all the nine elements of the stress tensor. b. Calculate the electromagnetic force per unit area on the plate located at x = d. c. Calculate the electromagnetic momentum per unit area, per unit time, across a plane between the two plates parallel to the plates.
An infinite parallel-plate capacitor has one plate carrying surface charge density - o and located at x = 0 and the other plate carrying surface charge density to located at x = d. a. Determine all the nine elements of the stress tensor. b. Calculate the electromagnetic force per unit area on the plate located at x = d. c. Calculate the electromagnetic momentum per unit area, per unit time, across a plane between the two plates parallel to the plates.
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
Transcribed Image Text:An infinite parallel-plate capacitor has one
plate carrying surface charge
density - o and located at x = 0 and the
other plate carrying surface charge
density to located at x = d.
a. Determine all the nine elements of the
stress tensor.
b. Calculate the electromagnetic force per
unit area on the plate
located at x = d.
c. Calculate the electromagnetic
momentum per unit area, per unit
time, across a plane between the two
plates parallel to the plates.
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