(#224516) (Parallel Plate Capacitor} A parallel plate capacitor consists of two circular metal plates of radius, R, separated by d = 150 μm of air. The capacitor is connected to a Vo = 10 V potential source, as shown in the figure below. This results in 79.5 nC of charge being stored on each plate. If the radius of the plate is doubled while leaving the capacitor connected to the same potential source, what is the new amount of charge stored on each plate? V₂ Enter answer here G Please enter a numerical answer below. Accepted formats are numbers or "e" based scientific notation e.g. 0.23, -2, 1e6, 5.23e-8 Image size: s ML Max nc

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(#224516) {Parallel Plate Capacitor}
=
A parallel plate capacitor consists of two circular metal plates of radius, R, separated by d 150 μm of air. The capacitor is connected to a Vo 10 V
potential source, as shown in the figure below. This results in 79.5 nC of charge being stored on each plate. If the radius of the plate is doubled while
leaving the capacitor connected to the same potential source, what is the new amount of charge stored on each plate?
€
Enter answer here
d
Please enter a numerical answer below. Accepted formats are numbers or "e" based scientific notation e.g. 0.23, -2, 1e6, 5.23e-8
=
Image size: S M L Max
nc
Transcribed Image Text:(#224516) {Parallel Plate Capacitor} = A parallel plate capacitor consists of two circular metal plates of radius, R, separated by d 150 μm of air. The capacitor is connected to a Vo 10 V potential source, as shown in the figure below. This results in 79.5 nC of charge being stored on each plate. If the radius of the plate is doubled while leaving the capacitor connected to the same potential source, what is the new amount of charge stored on each plate? € Enter answer here d Please enter a numerical answer below. Accepted formats are numbers or "e" based scientific notation e.g. 0.23, -2, 1e6, 5.23e-8 = Image size: S M L Max nc
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