If an uncharged capacitor is connected to a battery, one capacitor plate becomes negatively charged as electrons move from the interior of the plate to the plate face. In the figure the depth d from which the electrons come in the plate in a particular capacitor is plotted against a range of values for the potential difference V of the battery. The vertical scale is set by ds = 5.00 pm, and the horizontal scale is set by Vs = 20.0 V. Assume the plate is made of copper with a density of conduction electrons of 8.49 × 1028 electrons/m³. What is the ratio C/A? d (pm) de

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If an uncharged capacitor is connected to a battery, one capacitor plate becomes negatively charged as electrons move from the
interior of the plate to the plate face. In the figure the depth d from which the electrons come in the plate in a particular capacitor is
plotted against a range of values for the potential difference V of the battery. The vertical scale is set by ds = 5.00 pm, and the
horizontal scale is set by Vs = 20.0 V. Assume the plate is made of copper with a density of conduction electrons of 8.49 × 1028
electrons/m³. What is the ratio C/A?
Number i 3.39E-3
Units
d (pm)
ds
M
0
V (V)
F/m^2
Transcribed Image Text:Your answer is partially correct. If an uncharged capacitor is connected to a battery, one capacitor plate becomes negatively charged as electrons move from the interior of the plate to the plate face. In the figure the depth d from which the electrons come in the plate in a particular capacitor is plotted against a range of values for the potential difference V of the battery. The vertical scale is set by ds = 5.00 pm, and the horizontal scale is set by Vs = 20.0 V. Assume the plate is made of copper with a density of conduction electrons of 8.49 × 1028 electrons/m³. What is the ratio C/A? Number i 3.39E-3 Units d (pm) ds M 0 V (V) F/m^2
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