A parallel plate capacitor is filled with two layers of different materials A and B as shown in the figure on the next page. The material A has dielectric constant kị and conductivity n and the material B has 13.8 Chapter-13 dielectric constant ką and conductivity o. The capacitor is connected across an ideal battery of terminal voltage V. Permittivity of free space is &. A 22. Electric field in the material A is Va Vo, (a) d,o, + d,o, Vo (b) d,o, + d̟o, Vo, (c) d,o, + d,o, (d) d,o, +d̟o, 23. What is the total surface charge density on the interface of the two materials? E,V(k, – k,) E,V(o, -o,) d,o, +d,o, (a) d,k, + d̟k, E,V(o,k, - o,k,) V (d) E,d,dd, +d, d, +d d, d, (c) d,o, +d̟o,
A parallel plate capacitor is filled with two layers of different materials A and B as shown in the figure on the next page. The material A has dielectric constant kị and conductivity n and the material B has 13.8 Chapter-13 dielectric constant ką and conductivity o. The capacitor is connected across an ideal battery of terminal voltage V. Permittivity of free space is &. A 22. Electric field in the material A is Va Vo, (a) d,o, + d,o, Vo (b) d,o, + d̟o, Vo, (c) d,o, + d,o, (d) d,o, +d̟o, 23. What is the total surface charge density on the interface of the two materials? E,V(k, – k,) E,V(o, -o,) d,o, +d,o, (a) d,k, + d̟k, E,V(o,k, - o,k,) V (d) E,d,dd, +d, d, +d d, d, (c) d,o, +d̟o,
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