Six parallel-plate capacitors of identical plate separation have different plate areas A, different capacitances C. and different dielectrics filling the space between the plates Below is a generic diagram of what each one of these capacitors might look like. (Figure 1) Figure Rank the following capacitors on the basis of the dielectric constant of the material between the plates. Rank from largest to smallest. To rank items as equivalent, overlap them. View Available Hint(s) A=1 cm² C=1nF A=8 cm² C=2 uF A=2 cm² C=8nF A=4 cm² C=1nF A=4 cm² C=2 nF A = 2 cm² C=4 nF Review 1

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Six parallel-plate capacitors of identical plate separation
have different plate areas A, different capacitances C.
and different dielectrics filling the space between the
plates Below is a generic diagram of what each one of
these capacitors might look like. (Figure 1)
Figure
F
< 1 of 1
Rank the following capacitors on the basis of the dielectric constant of the material between the plates.
Rank from largest to smallest. To rank items as equivalent, overlap them.
▸ View Available Hint(s)
largest
A = 1 cm²
C=1nF
The correct ranking cannot be determined.
A = 8 cm²
C=2nF
A = 2 cm²
C = 8 nF
A = 4 cm²
C=1nF
A = 4 cm²
C=2 nF
A = 2 cm²
C = 4 nF
Review | Constants | Periodic Table
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smallest
Transcribed Image Text:Six parallel-plate capacitors of identical plate separation have different plate areas A, different capacitances C. and different dielectrics filling the space between the plates Below is a generic diagram of what each one of these capacitors might look like. (Figure 1) Figure F < 1 of 1 Rank the following capacitors on the basis of the dielectric constant of the material between the plates. Rank from largest to smallest. To rank items as equivalent, overlap them. ▸ View Available Hint(s) largest A = 1 cm² C=1nF The correct ranking cannot be determined. A = 8 cm² C=2nF A = 2 cm² C = 8 nF A = 4 cm² C=1nF A = 4 cm² C=2 nF A = 2 cm² C = 4 nF Review | Constants | Periodic Table Reset Help smallest
Six parallel-plate capacitors of identical plate separation have different plate areas A.
different capacitances C, and different dielectrics filling the space between the plates.
Below is a generic diagram of what each one of these capacitors might look like.
(Figure 1)
Figure
All of the capacitors from Part A are now attached to batteries with the same potential difference.
T
Part B
Rank the capacitors on the basis of the charge stored on the positive plate.
Rank from largest to smallest. To rank items as equivalent, overlap them.
▸View Available Hint(s)
largest
cannot be determined.
A-2 cm²
C=8nF
C_2nF
A-4 cm
C=2nF
A=1 cm²
C=1 nF
A 20
C
Reset
Help
smallest
Transcribed Image Text:Six parallel-plate capacitors of identical plate separation have different plate areas A. different capacitances C, and different dielectrics filling the space between the plates. Below is a generic diagram of what each one of these capacitors might look like. (Figure 1) Figure All of the capacitors from Part A are now attached to batteries with the same potential difference. T Part B Rank the capacitors on the basis of the charge stored on the positive plate. Rank from largest to smallest. To rank items as equivalent, overlap them. ▸View Available Hint(s) largest cannot be determined. A-2 cm² C=8nF C_2nF A-4 cm C=2nF A=1 cm² C=1 nF A 20 C Reset Help smallest
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