15. If half of the space between the plates are filled with a dielectric material of dielectric constant K 1 and rest of the half space is filled with a dielectric material of dielectric constant K 2, then 1. Find the equivalent dielectric constant. 2. Find the capacitance of this configuration. 3. Ifk 1=2 K 2, calculate the total stored energy in the capacitor. 4. Following the conditions and answers found for 3. , calculate the percentage of energy stored in the space of the capacitor filled with the dielectric constant K 2. Separation Plate Area

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15. If half of the space between the plates are filled with a dielectric
material of dielectric constant K 1 and rest of the half space is filled with a
dielectric material of dielectric constant K 2, then
1. Find the equivalent dielectric constant.
2. Find the capacitance of this configuration.
3. Ifk 1=2K 2, calculate the total stored energy in the capacitor.
4. Following the conditions and answers found for 3. , calculate the
percentage of energy stored in the space of the capacitor filled with
the dielectric constant K 2.
Separation
Plate Area
Transcribed Image Text:15. If half of the space between the plates are filled with a dielectric material of dielectric constant K 1 and rest of the half space is filled with a dielectric material of dielectric constant K 2, then 1. Find the equivalent dielectric constant. 2. Find the capacitance of this configuration. 3. Ifk 1=2K 2, calculate the total stored energy in the capacitor. 4. Following the conditions and answers found for 3. , calculate the percentage of energy stored in the space of the capacitor filled with the dielectric constant K 2. Separation Plate Area
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