parallel plate capacitor of width W, length L, and separation d has a solid dielectric slab of permittivity e(x) as shown capacitor terminals. Neglecting fringing, for i. e(x) = €0 ii. e(x) = €,e* Determine; A potential difference Vo Volts is applied to the %3D a) The electric field intensity E, b) The displacement vector D, c) The capacitance C,

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electromagnetics field theory question.

parallel plate capacitor of width W. length L, and separation d has a solid dielectric slab
of permittivity e(x) as shown
capacitor terminals. Neglecting fringing, for
i. €(x) = €0
ii. e(x) = €0e*
A potential difference Vo Volts is applied to the
Determine;
a) The electric field intensity E,
b) The displacement vector D,
c) The capacitance C,
d) The stored electrostatic energy We
e) Magnitude and the direction of the force acting on the slab Fm
W
1.
E (X)
d
Transcribed Image Text:parallel plate capacitor of width W. length L, and separation d has a solid dielectric slab of permittivity e(x) as shown capacitor terminals. Neglecting fringing, for i. €(x) = €0 ii. e(x) = €0e* A potential difference Vo Volts is applied to the Determine; a) The electric field intensity E, b) The displacement vector D, c) The capacitance C, d) The stored electrostatic energy We e) Magnitude and the direction of the force acting on the slab Fm W 1. E (X) d
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