Suppose two parallel-plate capacitors have the same charge Q, but the area of capacitor 1 is A and the area of capacitor 2 is 24. ▼ Part A If the spacing between the plates, d, is the same in both capacitors, and the voltage across capacitor 1 is V, what is the voltage across capacitor 2? ▸ View Available Hint(s) O V/2 OV O 2V O AV Submit Part B If the spacing between the plates in capacitor 1 is d, what should the spacing between the plates in capacitor 2 be to make the capacitance of the two capacitors equal? ▸ View Available Hint(s) Od/2

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Parallel-Plate Capacitors with Different Surface Areas
Suppose two parallel-plate capacitors have the same charge Q. but the area of
capacitor 1 is A and the area of capacitor 2 is 24.
Part A
If the spacing between the plates, d, is the same in both capacitors, and the voltage across capacitor 1 is V, what is the voltage across capacitor 2?
▸ View Available Hint(s)
O V/2
OV
O 2V
O 4V
Submit
Part B
If the spacing between the plates in capacitor 1 is d, what should the spacing between the plates in capacitor 2 be to make the capacitance of the two capacitors equal?
▸ View Available Hint(s)
d/2
Od
O2d
O 4d
Submit
Review
14
Transcribed Image Text:Parallel-Plate Capacitors with Different Surface Areas Suppose two parallel-plate capacitors have the same charge Q. but the area of capacitor 1 is A and the area of capacitor 2 is 24. Part A If the spacing between the plates, d, is the same in both capacitors, and the voltage across capacitor 1 is V, what is the voltage across capacitor 2? ▸ View Available Hint(s) O V/2 OV O 2V O 4V Submit Part B If the spacing between the plates in capacitor 1 is d, what should the spacing between the plates in capacitor 2 be to make the capacitance of the two capacitors equal? ▸ View Available Hint(s) d/2 Od O2d O 4d Submit Review 14
Consider the combination of capacitors shown in the diagram, where C₁ = 3.00
F. C₂11.0 μF. C = 3.00 μF, and C₁ = 5.00 μF. (Figure 1)
Figure
+
C₁
< 1 of 2 >
▼ Part A
Find the equivalent capacitance C₁ of the network of capacitors.
Express your answer in microfarads.
▸ View Available Hint(s)
C₁ =
Submit
Part B
CB =
15 ΑΣΦ ←
Submit
ΠΠΑΣΦ
Two capacitors of capacitance C = 6.00 μF and C = 3.00 μF are added to the network, as shown in the diagram. (Figure 2) Find the equivalent capacitance Cp of the new network of
capacitors.
Express your answer in microfarads.
▸ View Available Hint(s)
Provide Feedback
→
•
B
·
?
Review | Constants
?
Next >
Transcribed Image Text:Consider the combination of capacitors shown in the diagram, where C₁ = 3.00 F. C₂11.0 μF. C = 3.00 μF, and C₁ = 5.00 μF. (Figure 1) Figure + C₁ < 1 of 2 > ▼ Part A Find the equivalent capacitance C₁ of the network of capacitors. Express your answer in microfarads. ▸ View Available Hint(s) C₁ = Submit Part B CB = 15 ΑΣΦ ← Submit ΠΠΑΣΦ Two capacitors of capacitance C = 6.00 μF and C = 3.00 μF are added to the network, as shown in the diagram. (Figure 2) Find the equivalent capacitance Cp of the new network of capacitors. Express your answer in microfarads. ▸ View Available Hint(s) Provide Feedback → • B · ? Review | Constants ? Next >
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