Physics equations/24-Electromagnetic Waves/Q:displacementCurrent

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c24ElectromagneticWaves_displacementCurrent_v1

1. A circlular capactitor of radius 4.2 m has a gap of 8 mm, and a charge of 45 μC. What is the electric field between the plates?

a) 5.16E+04 N/C (or V/m)
b) 6.25E+04 N/C (or V/m)
c) 7.57E+04 N/C (or V/m)
d) 9.17E+04 N/C (or V/m)
e) 1.11E+05 N/C (or V/m)

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c24ElectromagneticWaves_displacementCurrent_v1

1. A circlular capactitor of radius 3.2 m has a gap of 13 mm, and a charge of 49 μC. Compute the surface integral c^{-2}\oint\vec E\cdot d\vec A over an inner face of the capacitor.

a) 3.46E-11 Vs2m-1
b) 4.20E-11 Vs2m-1
c) 5.08E-11 Vs2m-1
d) 6.16E-11 Vs2m-1
e) 7.46E-11 Vs2m-1

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c24ElectromagneticWaves_displacementCurrent_v1

1. A circlular capactitor of radius 4.9 m has a gap of 17 mm, and a charge of 54 μC. The capacitor is discharged through a 9 kΩ resistor. What is the decay time?

a) 2.92E-04 s
b) 3.54E-04 s
c) 4.28E-04 s
d) 5.19E-04 s
e) 6.29E-04 s

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c24ElectromagneticWaves_displacementCurrent_v1

1. A circlular capactitor of radius 3.3 m has a gap of 12 mm, and a charge of 93 μC. The capacitor is discharged through a 9 kΩ resistor. What is what is the maximum magnetic field at the edge of the capacitor? (There are two ways to do this; you should know both.)

a) 9.88E-09 Tesla
b) 1.24E-08 Tesla
c) 1.57E-08 Tesla
d) 1.97E-08 Tesla
e) 2.48E-08 Tesla

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