P.3-28 The upper and lower conducting plates of a large parallel-plate capacitor are separated by a distance d and maintained at potentials Vo and 0, respectively. A dielectric slab of dielectric constant 6.0 and uniform thickness 0.8d is placed over the lower plate. Assuming negligible fringing effect, determine the following by solving Laplace's equation: a) the potential and electric field distribution in the dielectric slab, b) the potential and electric field distribution in the air space between the dielectric slab and the upper plate, and c) the surface charge densities on the upper and lower plates.

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(Correction for given values : 
Dielectric constant : 5.0
Uniform thickness :  0.6d )
 
Please show the detailed denklems.
 
 
 
 
 
 
 

 

P.3-28 The upper and lower conducting plates of a large parallel-plate
capacitor are separated by a distance d and maintained at potentials V, and 0,
respectively. A dielectric slab of dielectric constant 6.0 and uniform thickness
0.8d is placed over the lower plate. Assuming negligible fringing effect,
determine the following by solving Laplace's equation:
a) the potential and electric field distribution in the dielectric slab,
b) the potential and electric field distribution in the air space between the
dielectric slab and the upper plate, and
c) the surface charge densities on the upper and lower plates.
Transcribed Image Text:P.3-28 The upper and lower conducting plates of a large parallel-plate capacitor are separated by a distance d and maintained at potentials V, and 0, respectively. A dielectric slab of dielectric constant 6.0 and uniform thickness 0.8d is placed over the lower plate. Assuming negligible fringing effect, determine the following by solving Laplace's equation: a) the potential and electric field distribution in the dielectric slab, b) the potential and electric field distribution in the air space between the dielectric slab and the upper plate, and c) the surface charge densities on the upper and lower plates.
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