Deck 25: Capacitance

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سؤال
Each plate of a capacitor stores a charge of magnitude 1 mC when a 100-V potential difference is applied. The capacitance is:

A) 5 μ\mu F
B) 10 μ\mu F
C) 50 μ\mu F
D) 100 μ\mu F
E) none of these
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سؤال
The capacitance of a parallel-plate capacitor is:

A) proportional to the plate area
B) proportional to the charge stored
C) independent of any material inserted between the plates
D) proportional to the potential difference of the plates
E) proportional to the plate separation
سؤال
Pulling the plates of an isolated charged capacitor apart:

A) increases the capacitance
B) increases the potential difference
C) does not affect the potential difference
D) decreases the potential difference
E) does not affect the capacitance
سؤال
A parallel-plate capacitor has a plate area of 0.2 m2 and a plate separation of 0.1 mm. If the charge on each plate has a magnitude of 4 *10-6 C the potential difference across the plates is approximately:

A) 0
B) 4 *10-2 V
C) 1 *102 V
D) 2 *102 V
E) 4 * 108 V
سؤال
If the charge on a parallel-plate capacitor is doubled:

A) the capacitance is halved
B) the capacitance is doubled
C) the electric field is halved
D) the electric field is doubled
E) the surface charge density is not changed on either plate
سؤال
The plate areas and plate separations of five parallel plate capacitors are <strong>The plate areas and plate separations of five parallel plate capacitors are   Rank these according to their capacitances, least to greatest.</strong> A) 1, 2, 3, 4, 5 B) 5, 4, 3, 2, 1 C) 5, 3, and 4 tie, then 1, 2 D) 4, 1, and 2 tie, then 5, 3 E) 3, 5, 1 and 2 tie, 1, 4 <div style=padding-top: 35px> Rank these according to their capacitances, least to greatest.

A) 1, 2, 3, 4, 5
B) 5, 4, 3, 2, 1
C) 5, 3, and 4 tie, then 1, 2
D) 4, 1, and 2 tie, then 5, 3
E) 3, 5, 1 and 2 tie, 1, 4
سؤال
If the plate separation of an isolated charged parallel-plate capacitor is doubled:

A) the electric field is doubled
B) the potential difference is halved
C) the charge on each plate is halved
D) the surface charge density on each plate is doubled
E) none of the above
سؤال
If the plate area of an isolated charged parallel-plate capacitor is doubled:

A) the electric field is doubled
B) the potential difference is halved
C) the charge on each plate is halved
D) the surface charge density on each plate is doubled
E) none of the above
سؤال
If both the plate area and the plate separation of a parallel-plate capacitor are doubled, the capacitance is:

A) doubled
B) halved
C) unchanged
D) tripled
E) quadrupled
سؤال
The capacitance of a cylindrical capacitor can be increased by:

A) decreasing both the radius of the inner cylinder and the length
B) increasing both the radius inner cylinder and the length
C) increasing the radius outer cylindrical shell and decreasing the length
D) decreasing the radius inner cylinder and increasing the radius of the outer cylindrical shell
E) only by decreasing the length
سؤال
To charge a 1-F capacitor with 2 C requires a potential difference of:

A) 2 V
B) 0.2 V
C) 5 V
D) 0.5 V
E) none of these
سؤال
The capacitance of a single isolated spherical conductor with radius R is proportional to:

A) R
B) R2
C) 1/R
D) 1/R2
E) none of these
سؤال
A parallel-plate capacitor has a plate area of 0.2 m2 and a plate separation of 0.1 mm. To obtain an electric field of 2.0 * 106 V/m between the plates, the magnitude of the charge on each plate should be:

A) 8.9 *10ˉ7C
B) 1.8* 10ˉ6C
C) 3.5 * 10ˉ6C
D) 7.1 *10ˉ6C
E) 1.4 *10ˉ5C
سؤال
A farad is the same as a:

A) J/V
B) V/J
C) C/V
D) V/C
E) N/C
سؤال
Two conducting spheres have radii of R1 and R2 with R1 greater than R2. If they are far apart the capacitance is proportional to:

A) R1R2/(R1 - R2)
B) <strong>Two conducting spheres have radii of R<sub>1</sub> and R<sub>2</sub> with R<sub>1</sub> greater than R<sub>2</sub>. If they are far apart the capacitance is proportional to:</strong> A) R<sub>1</sub>R<sub>2</sub>/(R<sub>1</sub> - R<sub>2</sub>) B)   C) (R<sub>1</sub> - R<sub>2</sub>)/R<sub>1</sub>R<sub>2</sub> D)   E) none of these <div style=padding-top: 35px>
C) (R1 - R2)/R1R2
D) <strong>Two conducting spheres have radii of R<sub>1</sub> and R<sub>2</sub> with R<sub>1</sub> greater than R<sub>2</sub>. If they are far apart the capacitance is proportional to:</strong> A) R<sub>1</sub>R<sub>2</sub>/(R<sub>1</sub> - R<sub>2</sub>) B)   C) (R<sub>1</sub> - R<sub>2</sub>)/R<sub>1</sub>R<sub>2</sub> D)   E) none of these <div style=padding-top: 35px>
E) none of these
سؤال
A capacitor C "has a charge Q". The actual charges on its plates are:

A) Q, Q
B) Q/2, Q/2
C) Q, -Q
D) Q/2, -Q/2
E) Q, 0
سؤال
The capacitance of a spherical capacitor with inner radius a and outer radius b is proportional to:

A) a/b
B) b - a
C) b2 - a2
D) ab/(b - a)
E) ab/(b2 - a2)
سؤال
The units of capacitance are equivalent to:

A) J/C
B) V/C
C) J2/C
D) C/J
E) C2/J
سؤال
The capacitance of a parallel-plate capacitor can be increased by:

A) increasing the charge
B) decreasing the charge
C) increasing the plate separation
D) decreasing the plate separation
E) decreasing the plate area
سؤال
The capacitance of a parallel-plate capacitor with plate area A and plate separation d is given by:

A) ε\varepsilon 0d/A
B) ε\varepsilon 0d/2A
C) ε\varepsilon 0A/d
D) ε\varepsilon 0A/2d
E) ε\varepsilon d/ ε\varepsilon 0
سؤال
A 2- μ\mu F and a 1- μ\mu F capacitor are connected in parallel and a potential difference is applied across the combination. The 2- μ\mu F capacitor has:

A) twice the charge of the 1- μ\mu F capacitor
B) half the charge of the 1- μ\mu F capacitor
C) twice the potential difference of the 1- μ\mu F capacitor
D) half the potential difference of the 1- μ\mu F capacitor
E) none of the above
سؤال
A battery is used to charge a series combination of two identical capacitors. If the potential difference across the battery terminals is V and total charge Q flows through the battery during the charging process then the charge on the positive plate of each capacitor and the potential difference across each capacitor are:

A) Q/2 and V/2, respectively
B) Q and V, respectively
C) Q/2 and V, respectively
D) Q and V/2, respectively
E) Q and 2V, respectively
سؤال
Two parallel-plate capacitors with the same plate separation but different capacitance are connected in parallel to a battery. Both capacitors are filled with air. The quantity that is NOT the same for both capacitors when they are fully charged is:

A) potential difference
B) energy density
C) electric field between the plates
D) charge on the positive plate
E) dielectric constant
سؤال
Two identical capacitors, each with capacitance C, are connected in parallel and the combination is connected in series to a third identical capacitor. The equivalent capacitance of this arrangement is:

A) 2C/3
B) C
C) 3C/2
D) 2C
E) 3C
سؤال
Capacitors C1 and C2 are connected in parallel and a potential difference is applied to the combination. If the capacitor that is equivalent to the combination has the same potential difference, then the charge on the equivalent capacitor is the same as:

A) the charge on C1
B) the sum of the charges on C1 and C2
C) the difference of the charges on C1 and C2
D) the product of the charges on C1 and C2
E) none of the above
سؤال
A 2- μ\mu F and a 1- μ\mu F capacitor are connected in parrael and a potential difference is applied across the combination. The 2- μ\mu F capacitor has:

A) twice the charge of the 1- μ\mu F capacitor
B) half the charge of the 1- μ\mu F capacitor
C) twice the potential difference of the 1- μ\mu F capacitor
D) half the potential difference of the 1- μ\mu F capacitor
E) none of the above
سؤال
Capacitor C1 and C2 are connected in parallel. The equivalent capacitance is given by:

A) C1C2/(C1 + C2)
B) (C1 + C2)/C1C2
C) 1/(C1 + C2)
D) C1/C2
E) C1 + C2
سؤال
Each of the three 25- μ\mu F capacitors shown is initially uncharged. How many coulombs of charge pass through the ammeter A after the switch S is closed?  <strong>Each of the three 25- \mu F capacitors shown is initially uncharged. How many coulombs of charge pass through the ammeter A after the switch S is closed?  </strong> A) 0.10 B) 0.20 C) 10 D) 0.05 E) none of these <div style=padding-top: 35px>

A) 0.10
B) 0.20
C) 10
D) 0.05
E) none of these
سؤال
Capacitor C1 is connected alone to a battery and charged until the magnitude of the charge on each plate is 4.0 * 10-8 C. Then it is removed from the vattery and connected to two other capacitors C2 and C3, as shown. The charge ont he positive placte of C1 is then 1.0 * 10 - 8 C. The charges on the positive plates of C2 and C3 are: <strong>Capacitor C<sub>1</sub> is connected alone to a battery and charged until the magnitude of the charge on each plate is 4.0 * 10<sup>-</sup><sup>8 </sup>C. Then it is removed from the vattery and connected to two other capacitors C<sub>2 </sub>and C<sub>3</sub>, as shown. The charge ont he positive placte of C<sub>1</sub> is then 1.0 * 10 <sup>-</sup> <sup>8 </sup>C. The charges on the positive plates of C<sub>2</sub> and C<sub>3 </sub>are:  </strong> A) q<sub>2</sub> = 3.0 *10 <sup>-</sup> <sup>-8 </sup>C and q<sub>3</sub> = 3.0 * 10 <sup>-</sup> <sup>8 </sup>C B) q<sub>2</sub> = 2.0 *10 <sup>-</sup> <sup>8 </sup> Cand q<sub>3</sub> = 2.0 *10 <sup>-</sup> <sup>8 </sup>C C) q<sub>2</sub> = 5.0 *10 1<sup>-</sup> <sup>8 </sup> Cand q<sub>3</sub> = 1.0 *10  <sup>-</sup> <sup>8 </sup>C D) q<sub>2</sub> = 3.0 *10 <sup>-</sup> <sup>8 </sup>C and q<sub>3</sub> = 1.0 *10 <sup>-</sup> <sup>8 </sup>C E) q<sub>2</sub> = 1.0 * 10 <sup>-</sup> <sup>8 </sup> Cand q<sub>3</sub> = 3.0 *10 <sup>-</sup> <sup>8 </sup>C <div style=padding-top: 35px>

A) q2 = 3.0 *10 - -8 C and q3 = 3.0 * 10 - 8 C
B) q2 = 2.0 *10 - 8 Cand q3 = 2.0 *10 - 8 C
C) q2 = 5.0 *10 1- 8 Cand q3 = 1.0 *10 - 8 C
D) q2 = 3.0 *10 - 8 C and q3 = 1.0 *10 - 8 C
E) q2 = 1.0 * 10 - 8 Cand q3 = 3.0 *10 - 8 C
سؤال
A battery is used to charge a parallel combination of two identical capacitors. If the potential difference across the battery terminals is V and the total charge Q flows through the battery during the charging process then the charge on the positive plate of each capacitor and the potential difference across each capacitor are:

A) Q/2 and V/2, respectively
B) Q and V, respectively
C) Q/2 and V, respectively
D) Q and V/2, respectively
E) Q and 2V, respectively
سؤال
Each of the four capacitors shown is 500 μ\mu F. The voltmeter reads 1000V. The magnitude of the charge, in coulombs, on each capacitor plate is:  <strong>Each of the four capacitors shown is 500  \mu F. The voltmeter reads 1000V. The magnitude of the charge, in coulombs, on each capacitor plate is:  </strong> A) 0.2 B) 0.5 C) 20 D) 50 E) none of these <div style=padding-top: 35px>

A) 0.2
B) 0.5
C) 20
D) 50
E) none of these
سؤال
The diagram shows six 6- μ\mu F capacitors. The capacitance between points a and b is:  <strong>The diagram shows six 6- \mu F capacitors. The capacitance between points a and b is:  </strong> A) 3  \mu F B) 4  \mu F C) 6  \mu F D) 9  \mu F E) 1 \mu F <div style=padding-top: 35px>

A) 3 μ\mu F
B) 4 μ\mu F
C) 6 μ\mu F
D) 9 μ\mu F
E) 1 μ\mu F
سؤال
Let Q denote charge, V denote potential difference and U denote stored energy. Of these quantities, capacitors in parallel must have the same:

A) Q only
B) V only
C) U only
D) Q and U only
E) V and U only
سؤال
Two parallel-plate capacitors with the same plate area but different capacitance are connected in parallel to a battery. Both capacitors are filled with air. The quantity that is the same for both capacitors when they are fully charged is:

A) potential difference
B) energy density
C) electric field between the plates
D) charge on the positive plate
E) plate separation
سؤال
Two identical capacitors are connected in series and two, each identical to the first, are connected in parallel. The equivalent capacitance of the series connection is ________ the equivalent capacitance of parallel connection.

A) twice
B) four times
C) half
D) one fourth
E) the same as
سؤال
Capacitors C1 and C2 are connected in series. The equivalent capacitance is given by:

A) C1C2/(C1 + C2)
B) (C1 + C2)/C1C2
C) 1/(C1 + C2)
D) C1/C2
E) C1 + C2
سؤال
Let Q denote charge, V denote potential difference and U denote stored energy. Of these quantities, capacitors in series must have the same:

A) Q only
B) V only
C) U only
D) Q and U only
E) V and U only
سؤال
Capacitors C1 and C2 are connected in series and a potential difference is applied to the combination. If the capacitor that is equivalent to the combination has the same potential difference, then the charge on the equivalent capacitor is the same as:

A) the charge on C1
B) the sum of the charges on C1 and C2
C) the difference of the charges on C1 and C2
D) the product of the charges on C1 and C2
E) none of the above
سؤال
Two parallel-plate capacitors with different plate separation but the same capacitance are connected in series to a battery. Both capacitors are filled with air. The quantity that is NOT the same for both capacitors when they are fully charged is:

A) potential difference
B) stored energy
C) electric field between the plates
D) charge on the positive plate
E) dielectric constant
سؤال
A 2- μ\mu F and a 1- μ\mu F capacitor are connected in series and charged from a battery. They store charges P and Q, respectively. When disconnected and charged separately using the same battery, they have charges R and S, respectively. Then:

A) R > S > Q = P
B) P > Q > R = S
C) R > P = Q > S
D) R = P > S = Q
E) R > P > S = Q
سؤال
Two capacitors are identical except that one is filled with air and the other with oil. Both capacitors carry the same charge. The ratio of the electric fields Eair/Eoil is:

A) between 0 and 1
B) 0
C) 1
D) between 1 and infinity
E) infinite
سؤال
An air-filled parallel-plate capacitor has a capacitance of 1 pF. The plate separation is then doubled and a wax dielectric is inserted, completely filling the space between the plates. As a result, the capacitance becomes 2 pF. The dielectric constant of the wax is:

A) 0.25
B) 0.5
C) 2.0
D) 4.0
E) 8.0
سؤال
Capacitors A and B are identical. Capacitor A is charged so it stores 4 J of energy and capacitor B is uncharged. The capacitors are then connected in parallel. The total stored energy in the capacitors is now:

A) 16 J
B) 8 J
C) 4 J
D) 2 J
E) 1 J
سؤال
Two parallel-plate capacitors with different capacitance but the same plate separation are connected in series to a battery. Both capacitors are filled with air. The quantity that is the same for both capacitors when they are fully charged is:

A) potential difference
B) stored energy
C) energy density
D) electric field between the plates
E) charge on the positive plate
سؤال
A certain capacitor has a capacitance of 5.0 μ\mu F. After it is charged to 5 μ\mu C and isolated, the plates are brought closer together so its capacitance becomes 10 μ\mu F. The work done by the agent is about:

A) 0
B) 1.25 *10-6 J
C) -1.25 * 10-6 J
D) 8.3* 10-7 J
E) -8.3 * 10-7 J
سؤال
A 2- μ\mu F and a 1- μ\mu F capacitor are connected in series and charged by a battery. They store energies P and Q, respectively. When disconnected and charged separately using the same battery, they have energies R and S, respectively. Then:

A) R > P > S > Q
B) P > Q > R > S
C) R > P > Q > S
D) P > R > S > Q
E) R > S > Q > P
سؤال
One of the materials listed below is to be placed between two indenticle metal sheets, with no air gap, to form a parallel-plate capacititance. Which produces the greates capacitance?

A) material of thickness 0.1 mm and dielectric constant 2
B) material of thickness 0.2 mm and dielectric constant 3
C) material of thickness 0.3 mm and dielectric constant 2
D) material of thickness 0.4 mm and dielectric constant 8
E) material of thickness 0.5 mm and dielectric constant 11
سؤال
To store a total of 0.040 J of energy in the two identical capacitors shown, each should have a capacitance of:  <strong>To store a total of 0.040 J of energy in the two identical capacitors shown, each should have a capacitance of:  </strong> A) 0.10  \mu F B) 0.50  \mu F0.10  \mu F C) 1.0  \mu F D) 1.5  \mu F E) 2.0  \mu F <div style=padding-top: 35px>

A) 0.10 μ\mu F
B) 0.50 μ\mu F0.10 μ\mu F
C) 1.0 μ\mu F
D) 1.5 μ\mu F
E) 2.0 μ\mu F
سؤال
A battery is used to charge a parallel-plate capacitor, after which it is disconnected. Then the plates are pulled apart to twice their original separation. This process will double the:

A) capacitance
B) surface charge density on each plate
C) stored energy
D) electric field between the two places
E) charge on each plate
سؤال
A 20-F capacitor is charged to 200 V. Its stored energy is:

A) 4000 J
B) 4 J
C) 0.4 J
D) 2000 J
E) 0.1 J
سؤال
A dielectric slab is slowly inserted between the plates of a parallel plate capacitor, while the potential difference between the plates is held constant by a battery. As it is being inserted:

A) the capacitance, the potential difference between the plates, and the charge on the positive plate all increase
B) the capacitance, the potential difference between the plates, the charge on the positive plate all decrease
C) the potential difference between the plates increases, the charge on the positive plate decreases, and the capacitance remains the same
D) the capacitance and the charge on the positive plate decrease but the potential difference between the plates remains the same
E) the capacitance and the charge on the plate increase but the potential difference between the plates remains the same
سؤال
The quantity (1/2) ε\varepsilon 0E2 has the significance of:

A) energy/farad
B) energy/coulomb
C) energy
D) energy/volume
E) energy/volt
سؤال
A charged capacitor stores 10 C at 40 V. Its stored energy is:

A) 400 J
B) 4 J
C) 0.2 J
D) 2.5 J
E) 200 J
سؤال
A parallel-plate capacitor, with air dielectric, is charged by a battery, after which the battery is disconnected. A slab of glass dielectric is then slowly inserted between the plates. As it is being inserted:

A) a force repels the glass out of the capacitor
B) a force attracts the glass into the capacitor
C) no force acts on the glass
D) a net charge appears on the glass
E) the glass makes the plates repel each other
سؤال
A parallel-plate capacitor has a plate area of 0.3 m2 and a plate separation of 0.1 mm. If the charge on each plate has a magnitude of 5 *10-6 C then the force exerted by one plate on the other has a magnitude of about:

A) 0
B) 5 N
C) 9 N
D) 1 *104 N
E) 9 *105 N
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ملء الشاشة (f)
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Deck 25: Capacitance
1
Each plate of a capacitor stores a charge of magnitude 1 mC when a 100-V potential difference is applied. The capacitance is:

A) 5 μ\mu F
B) 10 μ\mu F
C) 50 μ\mu F
D) 100 μ\mu F
E) none of these
10 μ\mu F
2
The capacitance of a parallel-plate capacitor is:

A) proportional to the plate area
B) proportional to the charge stored
C) independent of any material inserted between the plates
D) proportional to the potential difference of the plates
E) proportional to the plate separation
proportional to the plate area
3
Pulling the plates of an isolated charged capacitor apart:

A) increases the capacitance
B) increases the potential difference
C) does not affect the potential difference
D) decreases the potential difference
E) does not affect the capacitance
increases the potential difference
4
A parallel-plate capacitor has a plate area of 0.2 m2 and a plate separation of 0.1 mm. If the charge on each plate has a magnitude of 4 *10-6 C the potential difference across the plates is approximately:

A) 0
B) 4 *10-2 V
C) 1 *102 V
D) 2 *102 V
E) 4 * 108 V
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5
If the charge on a parallel-plate capacitor is doubled:

A) the capacitance is halved
B) the capacitance is doubled
C) the electric field is halved
D) the electric field is doubled
E) the surface charge density is not changed on either plate
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6
The plate areas and plate separations of five parallel plate capacitors are <strong>The plate areas and plate separations of five parallel plate capacitors are   Rank these according to their capacitances, least to greatest.</strong> A) 1, 2, 3, 4, 5 B) 5, 4, 3, 2, 1 C) 5, 3, and 4 tie, then 1, 2 D) 4, 1, and 2 tie, then 5, 3 E) 3, 5, 1 and 2 tie, 1, 4 Rank these according to their capacitances, least to greatest.

A) 1, 2, 3, 4, 5
B) 5, 4, 3, 2, 1
C) 5, 3, and 4 tie, then 1, 2
D) 4, 1, and 2 tie, then 5, 3
E) 3, 5, 1 and 2 tie, 1, 4
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7
If the plate separation of an isolated charged parallel-plate capacitor is doubled:

A) the electric field is doubled
B) the potential difference is halved
C) the charge on each plate is halved
D) the surface charge density on each plate is doubled
E) none of the above
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8
If the plate area of an isolated charged parallel-plate capacitor is doubled:

A) the electric field is doubled
B) the potential difference is halved
C) the charge on each plate is halved
D) the surface charge density on each plate is doubled
E) none of the above
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9
If both the plate area and the plate separation of a parallel-plate capacitor are doubled, the capacitance is:

A) doubled
B) halved
C) unchanged
D) tripled
E) quadrupled
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10
The capacitance of a cylindrical capacitor can be increased by:

A) decreasing both the radius of the inner cylinder and the length
B) increasing both the radius inner cylinder and the length
C) increasing the radius outer cylindrical shell and decreasing the length
D) decreasing the radius inner cylinder and increasing the radius of the outer cylindrical shell
E) only by decreasing the length
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11
To charge a 1-F capacitor with 2 C requires a potential difference of:

A) 2 V
B) 0.2 V
C) 5 V
D) 0.5 V
E) none of these
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12
The capacitance of a single isolated spherical conductor with radius R is proportional to:

A) R
B) R2
C) 1/R
D) 1/R2
E) none of these
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13
A parallel-plate capacitor has a plate area of 0.2 m2 and a plate separation of 0.1 mm. To obtain an electric field of 2.0 * 106 V/m between the plates, the magnitude of the charge on each plate should be:

A) 8.9 *10ˉ7C
B) 1.8* 10ˉ6C
C) 3.5 * 10ˉ6C
D) 7.1 *10ˉ6C
E) 1.4 *10ˉ5C
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14
A farad is the same as a:

A) J/V
B) V/J
C) C/V
D) V/C
E) N/C
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15
Two conducting spheres have radii of R1 and R2 with R1 greater than R2. If they are far apart the capacitance is proportional to:

A) R1R2/(R1 - R2)
B) <strong>Two conducting spheres have radii of R<sub>1</sub> and R<sub>2</sub> with R<sub>1</sub> greater than R<sub>2</sub>. If they are far apart the capacitance is proportional to:</strong> A) R<sub>1</sub>R<sub>2</sub>/(R<sub>1</sub> - R<sub>2</sub>) B)   C) (R<sub>1</sub> - R<sub>2</sub>)/R<sub>1</sub>R<sub>2</sub> D)   E) none of these
C) (R1 - R2)/R1R2
D) <strong>Two conducting spheres have radii of R<sub>1</sub> and R<sub>2</sub> with R<sub>1</sub> greater than R<sub>2</sub>. If they are far apart the capacitance is proportional to:</strong> A) R<sub>1</sub>R<sub>2</sub>/(R<sub>1</sub> - R<sub>2</sub>) B)   C) (R<sub>1</sub> - R<sub>2</sub>)/R<sub>1</sub>R<sub>2</sub> D)   E) none of these
E) none of these
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16
A capacitor C "has a charge Q". The actual charges on its plates are:

A) Q, Q
B) Q/2, Q/2
C) Q, -Q
D) Q/2, -Q/2
E) Q, 0
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17
The capacitance of a spherical capacitor with inner radius a and outer radius b is proportional to:

A) a/b
B) b - a
C) b2 - a2
D) ab/(b - a)
E) ab/(b2 - a2)
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18
The units of capacitance are equivalent to:

A) J/C
B) V/C
C) J2/C
D) C/J
E) C2/J
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19
The capacitance of a parallel-plate capacitor can be increased by:

A) increasing the charge
B) decreasing the charge
C) increasing the plate separation
D) decreasing the plate separation
E) decreasing the plate area
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20
The capacitance of a parallel-plate capacitor with plate area A and plate separation d is given by:

A) ε\varepsilon 0d/A
B) ε\varepsilon 0d/2A
C) ε\varepsilon 0A/d
D) ε\varepsilon 0A/2d
E) ε\varepsilon d/ ε\varepsilon 0
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21
A 2- μ\mu F and a 1- μ\mu F capacitor are connected in parallel and a potential difference is applied across the combination. The 2- μ\mu F capacitor has:

A) twice the charge of the 1- μ\mu F capacitor
B) half the charge of the 1- μ\mu F capacitor
C) twice the potential difference of the 1- μ\mu F capacitor
D) half the potential difference of the 1- μ\mu F capacitor
E) none of the above
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22
A battery is used to charge a series combination of two identical capacitors. If the potential difference across the battery terminals is V and total charge Q flows through the battery during the charging process then the charge on the positive plate of each capacitor and the potential difference across each capacitor are:

A) Q/2 and V/2, respectively
B) Q and V, respectively
C) Q/2 and V, respectively
D) Q and V/2, respectively
E) Q and 2V, respectively
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23
Two parallel-plate capacitors with the same plate separation but different capacitance are connected in parallel to a battery. Both capacitors are filled with air. The quantity that is NOT the same for both capacitors when they are fully charged is:

A) potential difference
B) energy density
C) electric field between the plates
D) charge on the positive plate
E) dielectric constant
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24
Two identical capacitors, each with capacitance C, are connected in parallel and the combination is connected in series to a third identical capacitor. The equivalent capacitance of this arrangement is:

A) 2C/3
B) C
C) 3C/2
D) 2C
E) 3C
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25
Capacitors C1 and C2 are connected in parallel and a potential difference is applied to the combination. If the capacitor that is equivalent to the combination has the same potential difference, then the charge on the equivalent capacitor is the same as:

A) the charge on C1
B) the sum of the charges on C1 and C2
C) the difference of the charges on C1 and C2
D) the product of the charges on C1 and C2
E) none of the above
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26
A 2- μ\mu F and a 1- μ\mu F capacitor are connected in parrael and a potential difference is applied across the combination. The 2- μ\mu F capacitor has:

A) twice the charge of the 1- μ\mu F capacitor
B) half the charge of the 1- μ\mu F capacitor
C) twice the potential difference of the 1- μ\mu F capacitor
D) half the potential difference of the 1- μ\mu F capacitor
E) none of the above
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27
Capacitor C1 and C2 are connected in parallel. The equivalent capacitance is given by:

A) C1C2/(C1 + C2)
B) (C1 + C2)/C1C2
C) 1/(C1 + C2)
D) C1/C2
E) C1 + C2
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28
Each of the three 25- μ\mu F capacitors shown is initially uncharged. How many coulombs of charge pass through the ammeter A after the switch S is closed?  <strong>Each of the three 25- \mu F capacitors shown is initially uncharged. How many coulombs of charge pass through the ammeter A after the switch S is closed?  </strong> A) 0.10 B) 0.20 C) 10 D) 0.05 E) none of these

A) 0.10
B) 0.20
C) 10
D) 0.05
E) none of these
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29
Capacitor C1 is connected alone to a battery and charged until the magnitude of the charge on each plate is 4.0 * 10-8 C. Then it is removed from the vattery and connected to two other capacitors C2 and C3, as shown. The charge ont he positive placte of C1 is then 1.0 * 10 - 8 C. The charges on the positive plates of C2 and C3 are: <strong>Capacitor C<sub>1</sub> is connected alone to a battery and charged until the magnitude of the charge on each plate is 4.0 * 10<sup>-</sup><sup>8 </sup>C. Then it is removed from the vattery and connected to two other capacitors C<sub>2 </sub>and C<sub>3</sub>, as shown. The charge ont he positive placte of C<sub>1</sub> is then 1.0 * 10 <sup>-</sup> <sup>8 </sup>C. The charges on the positive plates of C<sub>2</sub> and C<sub>3 </sub>are:  </strong> A) q<sub>2</sub> = 3.0 *10 <sup>-</sup> <sup>-8 </sup>C and q<sub>3</sub> = 3.0 * 10 <sup>-</sup> <sup>8 </sup>C B) q<sub>2</sub> = 2.0 *10 <sup>-</sup> <sup>8 </sup> Cand q<sub>3</sub> = 2.0 *10 <sup>-</sup> <sup>8 </sup>C C) q<sub>2</sub> = 5.0 *10 1<sup>-</sup> <sup>8 </sup> Cand q<sub>3</sub> = 1.0 *10  <sup>-</sup> <sup>8 </sup>C D) q<sub>2</sub> = 3.0 *10 <sup>-</sup> <sup>8 </sup>C and q<sub>3</sub> = 1.0 *10 <sup>-</sup> <sup>8 </sup>C E) q<sub>2</sub> = 1.0 * 10 <sup>-</sup> <sup>8 </sup> Cand q<sub>3</sub> = 3.0 *10 <sup>-</sup> <sup>8 </sup>C

A) q2 = 3.0 *10 - -8 C and q3 = 3.0 * 10 - 8 C
B) q2 = 2.0 *10 - 8 Cand q3 = 2.0 *10 - 8 C
C) q2 = 5.0 *10 1- 8 Cand q3 = 1.0 *10 - 8 C
D) q2 = 3.0 *10 - 8 C and q3 = 1.0 *10 - 8 C
E) q2 = 1.0 * 10 - 8 Cand q3 = 3.0 *10 - 8 C
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30
A battery is used to charge a parallel combination of two identical capacitors. If the potential difference across the battery terminals is V and the total charge Q flows through the battery during the charging process then the charge on the positive plate of each capacitor and the potential difference across each capacitor are:

A) Q/2 and V/2, respectively
B) Q and V, respectively
C) Q/2 and V, respectively
D) Q and V/2, respectively
E) Q and 2V, respectively
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31
Each of the four capacitors shown is 500 μ\mu F. The voltmeter reads 1000V. The magnitude of the charge, in coulombs, on each capacitor plate is:  <strong>Each of the four capacitors shown is 500  \mu F. The voltmeter reads 1000V. The magnitude of the charge, in coulombs, on each capacitor plate is:  </strong> A) 0.2 B) 0.5 C) 20 D) 50 E) none of these

A) 0.2
B) 0.5
C) 20
D) 50
E) none of these
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32
The diagram shows six 6- μ\mu F capacitors. The capacitance between points a and b is:  <strong>The diagram shows six 6- \mu F capacitors. The capacitance between points a and b is:  </strong> A) 3  \mu F B) 4  \mu F C) 6  \mu F D) 9  \mu F E) 1 \mu F

A) 3 μ\mu F
B) 4 μ\mu F
C) 6 μ\mu F
D) 9 μ\mu F
E) 1 μ\mu F
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33
Let Q denote charge, V denote potential difference and U denote stored energy. Of these quantities, capacitors in parallel must have the same:

A) Q only
B) V only
C) U only
D) Q and U only
E) V and U only
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34
Two parallel-plate capacitors with the same plate area but different capacitance are connected in parallel to a battery. Both capacitors are filled with air. The quantity that is the same for both capacitors when they are fully charged is:

A) potential difference
B) energy density
C) electric field between the plates
D) charge on the positive plate
E) plate separation
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35
Two identical capacitors are connected in series and two, each identical to the first, are connected in parallel. The equivalent capacitance of the series connection is ________ the equivalent capacitance of parallel connection.

A) twice
B) four times
C) half
D) one fourth
E) the same as
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36
Capacitors C1 and C2 are connected in series. The equivalent capacitance is given by:

A) C1C2/(C1 + C2)
B) (C1 + C2)/C1C2
C) 1/(C1 + C2)
D) C1/C2
E) C1 + C2
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37
Let Q denote charge, V denote potential difference and U denote stored energy. Of these quantities, capacitors in series must have the same:

A) Q only
B) V only
C) U only
D) Q and U only
E) V and U only
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38
Capacitors C1 and C2 are connected in series and a potential difference is applied to the combination. If the capacitor that is equivalent to the combination has the same potential difference, then the charge on the equivalent capacitor is the same as:

A) the charge on C1
B) the sum of the charges on C1 and C2
C) the difference of the charges on C1 and C2
D) the product of the charges on C1 and C2
E) none of the above
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39
Two parallel-plate capacitors with different plate separation but the same capacitance are connected in series to a battery. Both capacitors are filled with air. The quantity that is NOT the same for both capacitors when they are fully charged is:

A) potential difference
B) stored energy
C) electric field between the plates
D) charge on the positive plate
E) dielectric constant
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40
A 2- μ\mu F and a 1- μ\mu F capacitor are connected in series and charged from a battery. They store charges P and Q, respectively. When disconnected and charged separately using the same battery, they have charges R and S, respectively. Then:

A) R > S > Q = P
B) P > Q > R = S
C) R > P = Q > S
D) R = P > S = Q
E) R > P > S = Q
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41
Two capacitors are identical except that one is filled with air and the other with oil. Both capacitors carry the same charge. The ratio of the electric fields Eair/Eoil is:

A) between 0 and 1
B) 0
C) 1
D) between 1 and infinity
E) infinite
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42
An air-filled parallel-plate capacitor has a capacitance of 1 pF. The plate separation is then doubled and a wax dielectric is inserted, completely filling the space between the plates. As a result, the capacitance becomes 2 pF. The dielectric constant of the wax is:

A) 0.25
B) 0.5
C) 2.0
D) 4.0
E) 8.0
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43
Capacitors A and B are identical. Capacitor A is charged so it stores 4 J of energy and capacitor B is uncharged. The capacitors are then connected in parallel. The total stored energy in the capacitors is now:

A) 16 J
B) 8 J
C) 4 J
D) 2 J
E) 1 J
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44
Two parallel-plate capacitors with different capacitance but the same plate separation are connected in series to a battery. Both capacitors are filled with air. The quantity that is the same for both capacitors when they are fully charged is:

A) potential difference
B) stored energy
C) energy density
D) electric field between the plates
E) charge on the positive plate
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45
A certain capacitor has a capacitance of 5.0 μ\mu F. After it is charged to 5 μ\mu C and isolated, the plates are brought closer together so its capacitance becomes 10 μ\mu F. The work done by the agent is about:

A) 0
B) 1.25 *10-6 J
C) -1.25 * 10-6 J
D) 8.3* 10-7 J
E) -8.3 * 10-7 J
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46
A 2- μ\mu F and a 1- μ\mu F capacitor are connected in series and charged by a battery. They store energies P and Q, respectively. When disconnected and charged separately using the same battery, they have energies R and S, respectively. Then:

A) R > P > S > Q
B) P > Q > R > S
C) R > P > Q > S
D) P > R > S > Q
E) R > S > Q > P
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47
One of the materials listed below is to be placed between two indenticle metal sheets, with no air gap, to form a parallel-plate capacititance. Which produces the greates capacitance?

A) material of thickness 0.1 mm and dielectric constant 2
B) material of thickness 0.2 mm and dielectric constant 3
C) material of thickness 0.3 mm and dielectric constant 2
D) material of thickness 0.4 mm and dielectric constant 8
E) material of thickness 0.5 mm and dielectric constant 11
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48
To store a total of 0.040 J of energy in the two identical capacitors shown, each should have a capacitance of:  <strong>To store a total of 0.040 J of energy in the two identical capacitors shown, each should have a capacitance of:  </strong> A) 0.10  \mu F B) 0.50  \mu F0.10  \mu F C) 1.0  \mu F D) 1.5  \mu F E) 2.0  \mu F

A) 0.10 μ\mu F
B) 0.50 μ\mu F0.10 μ\mu F
C) 1.0 μ\mu F
D) 1.5 μ\mu F
E) 2.0 μ\mu F
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49
A battery is used to charge a parallel-plate capacitor, after which it is disconnected. Then the plates are pulled apart to twice their original separation. This process will double the:

A) capacitance
B) surface charge density on each plate
C) stored energy
D) electric field between the two places
E) charge on each plate
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50
A 20-F capacitor is charged to 200 V. Its stored energy is:

A) 4000 J
B) 4 J
C) 0.4 J
D) 2000 J
E) 0.1 J
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51
A dielectric slab is slowly inserted between the plates of a parallel plate capacitor, while the potential difference between the plates is held constant by a battery. As it is being inserted:

A) the capacitance, the potential difference between the plates, and the charge on the positive plate all increase
B) the capacitance, the potential difference between the plates, the charge on the positive plate all decrease
C) the potential difference between the plates increases, the charge on the positive plate decreases, and the capacitance remains the same
D) the capacitance and the charge on the positive plate decrease but the potential difference between the plates remains the same
E) the capacitance and the charge on the plate increase but the potential difference between the plates remains the same
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52
The quantity (1/2) ε\varepsilon 0E2 has the significance of:

A) energy/farad
B) energy/coulomb
C) energy
D) energy/volume
E) energy/volt
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53
A charged capacitor stores 10 C at 40 V. Its stored energy is:

A) 400 J
B) 4 J
C) 0.2 J
D) 2.5 J
E) 200 J
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54
A parallel-plate capacitor, with air dielectric, is charged by a battery, after which the battery is disconnected. A slab of glass dielectric is then slowly inserted between the plates. As it is being inserted:

A) a force repels the glass out of the capacitor
B) a force attracts the glass into the capacitor
C) no force acts on the glass
D) a net charge appears on the glass
E) the glass makes the plates repel each other
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55
A parallel-plate capacitor has a plate area of 0.3 m2 and a plate separation of 0.1 mm. If the charge on each plate has a magnitude of 5 *10-6 C then the force exerted by one plate on the other has a magnitude of about:

A) 0
B) 5 N
C) 9 N
D) 1 *104 N
E) 9 *105 N
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