A charged parallel plate capacitor is filled completely with a dielectric of relative permittivity 9.6. The plate area is 30 cm², the plate separation is 0.2 mm, and the stored charge is 10 nC. Use Gauss' law to find the magnitudes of E, P and D within the dielectric. Find also the potential difference across the plates and the capacitance.
A charged parallel plate capacitor is filled completely with a dielectric of relative permittivity 9.6. The plate area is 30 cm², the plate separation is 0.2 mm, and the stored charge is 10 nC. Use Gauss' law to find the magnitudes of E, P and D within the dielectric. Find also the potential difference across the plates and the capacitance.
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
Transcribed Image Text:A charged parallel plate capacitor is filled completely with a dielectric of relative
permittivity 9.6. The plate area is 30 cm², the plate separation is 0.2 mm, and the stored
charge is 10 nC. Use Gauss' law to find the magnitudes of E, P and D within the
dielectric. Find also the potential difference across the plates and the capacitance.
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