Deck 18: Electric Current and Circuits

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Question
If 64 coulombs flow along a wire in 4.0 seconds,what is the average current?

A) 64 A
B) 32 A
C) 16 A
D) 4.0 A
E) none of these choices are correct
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Question
A variable resistor has a voltage of 12.0 V placed across it.If the resistance is increased 20%,what happens to the current through it?

A) it increases 20%
B) it increases 25%
C) it decreases 20%
D) it decreases 25%
E) it decreases 17%
Question
A length of wire has a resistance of 18.0 Ω\Omega .When the wire is uniformly stretched to triple it original length,what resistance results?

A) 162 Ω\Omega
B) 54.0 Ω\Omega
C) 18.0 Ω\Omega
D) 6.00 Ω\Omega
E) 2.00 Ω\Omega
Question
A resistor has a resistance of 30 Ω\Omega at 20 ^{\circ} C.If the temperature coefficient is 4.5 ×\times 103 ^{\circ} C-1,what is its resistance at 200 ^{\circ} C?

A) 24 Ω\Omega
B) 27 Ω\Omega
C) 48 Ω\Omega
D) 54 Ω\Omega
E) 57 Ω\Omega
Question
One hundred meters of a certain type of wire has a resistance of 7.2 Ω\Omega .What is the resistance of 2.5 m of this wire?

A) 18 Ω\Omega
B) 1.8 Ω\Omega
C) 0.18 Ω\Omega
D) 3.0 Ω\Omega
E) 0.30 Ω\Omega
Question
A 12.0 V battery is placed across a 4.00 Ω\Omega resistor.If the current through the resistor is 2.80 A,what is the internal resistance of the battery?

A) 0.200 Ω\Omega
B) 0.290 Ω\Omega
C) 4.29 Ω\Omega
D) 3.71 Ω\Omega
E) 0.800 Ω\Omega
Question
When a current flows down a wire

A) electrons are moving in the direction of the current.
B) electrons are moving opposite the direction of the current.
C) protons are moving in the direction of the current.
D) protons are moving opposite the direction of the current.
E) both protons and electrons are moving in the direction of the current.
Question
A 2.50 A current is carried by a copper wire of radius 1.0 mm.If the density of conduction electrons is 8.0 ×\times 1028/m3,what is the drift velocity of the conduction electrons?

A) 3.0 ×\times 108 m/s
B) 3.2 ×\times 10 4 m/s
C) 1.6 ×\times 10 5 m/s
D) 6.2 ×\times 10 4 m/s
E) 6.2 ×\times 10 5 m/s
Question
Of the common battery sizes AAA,AA,C,and D,which provides the highest emf?

A) AAA
B) AA
C) C
D) D
E) all have the same emf
Question
One hundred meters of 2.00 mm diameter wire has a resistance of 0.532 Ω\Omega .What is the resistivity of the material from which the wire is made?

A) 1.59 ×\times 10 8 Ω\Omega m
B) 1.67 ×\times 10 8 Ω\Omega m
C) 2.35 ×\times 10 8 Ω\Omega m
D) 2.65 ×\times 10 8 Ω\Omega m
E) 5.40 ×\times 10 8 Ω\Omega ·m
Question
An ampere, A ,is equivalent to a

A) V/m.
B) V·C.
C) C/s.
D) C·s.
E) N/V.
Question
A 1.56-V battery has an internal resistance of 0.120 Ω\Omega .What is the maximum current that can be drawn from this battery?

A) infinite (or at least 1000's of amps)
B) 1.56 A
C) 0.190 A
D) 13.0 A
E) 7.50 A
Question
A length L0 of wire has a resistance of 32.0 Ω\Omega .The wire is uniformly stretched to four times its original length,i.e.,4 L0.If a length L0 is now cut from the stretched wire,what is its resistance?

A) 512 Ω\Omega
B) 128 Ω\Omega
C) 32.0 Ω\Omega
D) 8.00 Ω\Omega
E) 2.00 Ω\Omega
Question
The resistance of a wire increases 3.9% when the temperature of the wire is raised 100 ^{\circ} C.What is the temperature coefficient of resistivity of the wire material?

A) 3.9 ^{\circ} C-1
B) 0.39 ^{\circ} C-1
C) 0.039 ^{\circ} C-1
D) 0.0039 ^{\circ} C-1
E) 0.00039 ^{\circ} C-1
Question
An ohm is equivalent to a(n)

A) volt/meter.
B) coulomb/volt.
C) ampere/coulomb.
D) volt/ampere.
E) ampere·coulomb.
Question
A potential difference of 12.4 V is placed across a 4.1 Ω\Omega resistor.What is the current in the resistor?

A) 51 A
B) 3.0 A
C) 0.33 A
D) 16A
E) 8.3 A
Question
Silver contains 5.8 ×\times 1028 conduction electrons per m3.How many conduction electrons are in a 1.0 m length of silver wire of diameter 2.6 mm?

A) 1.9 ×\times 105
B) 4.7 ×\times 104
C) 3.1 ×\times 1023
D) 1.2 ×\times 1024
E) 6.0 ×\times 1023
Question
Two copper wires,one double the diameter of the other,have the same current flowing through them.If the thinner wire has a drift velocity v1,and the thicker wire has a drift velocity v2,how do the drift velocities of the charge carriers compare?

A) v1 = v2
B) v1 = 2 v2
C) 2 v1 = v2
D) v1 = 4 v2
E) 4 v1 = v2
Question
Aluminum has a resistivity of 2.65 ×\times 108 Ω\Omega m.What is the resistance of 15 m of aluminum wire of cross-sectional area 1.0 mm2?

A) 1.6 Ω\Omega
B) 0.40 Ω\Omega
C) 0.13 Ω\Omega
D) 1.3 ×\times 102 Ω\Omega
E) 56 Ω\Omega
Question
If a 22 Ω\Omega resistor has a current of 2.0 A flowing through it,what is the potential difference across it?

A) 0.091 V
B) 44 V
C) 11 V
D) 24 V
E) 20 V
Question
The arrangement is composed of four 6.0 mF capacitors.What is the capacitance of the combination? <strong>The arrangement is composed of four 6.0 mF capacitors.What is the capacitance of the combination?  </strong> A) 24.0 mF B) 4.5 mF C) 8.0 mF D) 9.0 mF E) 12.5 mF <div style=padding-top: 35px>

A) 24.0 mF
B) 4.5 mF
C) 8.0 mF
D) 9.0 mF
E) 12.5 mF
Question
A 6.0 Ω\Omega resistor and a 3.0 Ω\Omega resistor are connected in parallel to a 1.5 V battery of negligible internal resistance.What is the current in the 3.0 Ω\Omega resistor?

A) 2.0 A
B) 0.50 A
C) 0.25 A
D) 0.17 A
E) 0.75 A
Question
Capacitors of values 6.00 mF and 9.00 mF are connected in series to a 30.0 V power supply.What is the resulting charge on the 6.00 mF capacitor?

A) 180 mC
B) 270 mC
C) 90.0 mC
D) 108 mC
E) 200 mC
Question
If R1 = 6.0 Ω\Omega , R2 = 8.0 Ω\Omega , R3 = 2.0 Ω\Omega , ε\varepsilon 1 = 4.0 V, and ε\varepsilon 2 = 14 V,what is the power supplied to the circuit by ε\varepsilon 1?  <strong>If R<sub>1</sub> = 6.0  \Omega , R<sub>2</sub> = 8.0  \Omega , R<sub>3</sub> = 2.0  \Omega ,  \varepsilon <sub>1</sub> = 4.0 V, and  \varepsilon <sub>2</sub> = 14 V,what is the power supplied to the circuit by  \varepsilon <sub>1</sub>?  </strong> A) 4.0 W B) 8.0 W C) 12 W D) 16 W E) 20 W <div style=padding-top: 35px>

A) 4.0 W
B) 8.0 W
C) 12 W
D) 16 W
E) 20 W
Question
A 6.0 Ω\Omega resistor and a 3.0 Ω\Omega resistor are connected in series to a 1.5 V battery of negligible internal resistance.What is the current in the 3.0 Ω\Omega resistor?

A) 2.0 A
B) 0.50 A
C) 0.25 A
D) 0.17 A
E) 0.75 A
Question
What is the resistance of the combination of resistors?  <strong>What is the resistance of the combination of resistors?  </strong> A) 4.0  \Omega  B) 12  \Omega  C) 13  \Omega  D) 14  \Omega  E) 15  \Omega  <div style=padding-top: 35px>

A) 4.0 Ω\Omega
B) 12 Ω\Omega
C) 13 Ω\Omega
D) 14 Ω\Omega
E) 15 Ω\Omega
Question
If R1 = 6 Ω\Omega , R2 = 8 Ω\Omega , R3 = 2 Ω\Omega , ε\varepsilon 1 = 4 V, and ε\varepsilon 2 = 14 V, what is the current in R2?  <strong>If R<sub>1</sub> = 6  \Omega , R<sub>2</sub> = 8  \Omega , R<sub>3</sub> = 2  \Omega ,  \varepsilon <sub>1</sub> = 4 V, and  \varepsilon <sub>2</sub> = 14 V, what is the current in R<sub>2</sub>?  </strong> A) 1 A B) 2 A C) 3 A D) 4 A E) 5 A <div style=padding-top: 35px>

A) 1 A
B) 2 A
C) 3 A
D) 4 A
E) 5 A
Question
Capacitors of values 1.0 F, 2.0 F, 3.0 F, and 6.0 F are connected in series across a 12 V power supply.Which capacitor has the greatest charge on it?

A) the 1.0 F capacitor
B) the 2.0 F capacitor
C) the 3.0 F capacitor
D) the 6.0 F capacitor
E) they are all equal
Question
In the diagram,each resistor is 3 ohms and the battery is 9 volts.What is the current through the middle resistor? <strong>In the diagram,each resistor is 3 ohms and the battery is 9 volts.What is the current through the middle resistor?  </strong> A) 3 A to the right B) 3 A to the left C) 9 A to the right D) 9 A to the left E) 1 A to the left <div style=padding-top: 35px>

A) 3 A to the right
B) 3 A to the left
C) 9 A to the right
D) 9 A to the left
E) 1 A to the left
Question
Four 12 Ω\Omega resistors are connected together.

A) 12 Ω\Omega
B) 24 Ω\Omega
C) 36 Ω\Omega
D) 48 Ω\Omega
E) 44 Ω\Omega
Question
Capacitors of values 6.0 mF and 9.0 mF are connected in series to a 30.0 V power supply.What is the resulting potential difference across the 6.0 mF capacitor?

A) 30 V
B) 18 V
C) 12 V
D) 6.0 V
E) 3.0 V
Question
Four 12 Ω\Omega resistors are connected together.What is the least resistance that can be attained with these resistors?

A) 12 Ω\Omega
B) 6.0 Ω\Omega
C) 3.0 Ω\Omega
D) 2.0 Ω\Omega
E) 1.0 Ω\Omega
Question
Four 12 Ω\Omega resistors are connected together.Which of the following resistances cannot be formed using all 4 resistors?

A) 48 Ω\Omega
B) 9.0 Ω\Omega
C) 12 Ω\Omega
D) 60 Ω\Omega
E) 20 Ω\Omega
Question
In the diagram,if the current through R1 is 5 A up and if the current through R3 is 3 A up, what is the current in R2? <strong>In the diagram,if the current through R<sub>1</sub> is 5 A up and if the current through R<sub>3</sub> is 3 A up, what is the current in R<sub>2</sub>?  </strong> A) 8 A up B) 8 A down C) 2 A up D) 2 A down E) more information is needed <div style=padding-top: 35px>

A) 8 A up
B) 8 A down
C) 2 A up
D) 2 A down
E) more information is needed
Question
Capacitors of values 1.0 F, 2.0 F, 3.0 F, and 6.0 F are connected in series across a 12 V power supply.Which capacitor has the greatest potential difference across it?

A) the 1.0 F capacitor
B) the 2.0 F capacitor
C) the 3.0 F capacitor
D) the 6.0 F capacitor
E) they all are equal
Question
A three-cell flashlight has 3 batteries in series each with an emf of 1.5 V.If the bulb has a resistance of 50 Ω\Omega ,what current is flowing when the flashlight is operating? (Assume the internal resistance of the batteries is negligible.)

A) 30 mA
B) 10 mA
C) 27 mA
D) 90 mA
E) 11 A
Question
A 12.0 V battery is placed across a 4.00 Ω\Omega resistor.If the current through the resistor is 2.80 A,what is the terminal voltage of the battery?

A) 12.0 V
B) 12.8 V
C) 11.6 V
D) 11.2 V
E) 9.6 V
Question
Capacitors of values 6.0 mF and 9.0 mF are connected in series.What is the capacitance of the combination?

A) 15 mF
B) 7.5 mF
C) 3.0 mF
D) 3.6 mF
E) 54 mF
Question
A 12.0 V battery has an internal resistance of 0.080 Ω\Omega .If the battery supplies 100 A when connected to a starter motor,what is the resistance of the motor?

A) 0.080 Ω\Omega
B) 0.20 Ω\Omega
C) 0.0012 Ω\Omega
D) 0.040 Ω\Omega
E) 0.012 Ω\Omega
Question
Wire A carries 4 A into a junction,wire B carries 5 A into the same junction,and another wire is connected to the junction.What is the current in this last wire?

A) 4 A away from the junction
B) 9 A away from the junction
C) 4 A into the junction
D) 9 A into the junction
E) 1 A away from the junction
Question
A variable resistor is connected to a constant voltage source.When the resistance is increased from 5.5 Ω\Omega to 9.3 Ω\Omega ,what happens to the power dissipated?

A) no change
B) a 35% decrease
C) a 41% decrease
D) a 59% decrease
E) a 69% decrease
Question
A capacitor is connected in series with a resistor and a switch.With the switch open,the capacitor is charged to 9.0 V.When the switch is closed,how long will it take for the voltage across the capacitor to drop to 6.0 V if the time constant of the circuit is 4.0 s?

A) 0.3 s
B) 1.2 s
C) 1.6 s
D) 2.7 s
E) 12 s
Question
When the voltage across a resistor is decreased by 50%,what happens to the power dissipated?

A) it increases by 50%
B) it decreases by 50%
C) it decreases by 25%
D) it decreases by 71%
E) it decreases by 75%
Question
A 1000 Ω\Omega resistor is in a circuit with 30.0 mA flowing through it.A voltmeter with internal resistance 1000 Ω\Omega is used to measure the voltage across the resistor.What is the reading from the voltmeter if 30.0 mA still flows in the circuit?

A) 30.0 V
B) 29.9 V
C) 27.0 V
D) 15.0 V
E) 3.00 V
Question
By how much does the current fall after the switch is closed in a series RC circuit when three time constants have elapsed?

A) 5.0%
B) 38%
C) 62%
D) 95%
E) 100% since after 2 time constants the current is 0
Question
A flashlight,which uses two 1.5 V batteries in series,is turned on for 2.0 minutes.If the current in the flashlight is 100 mA,what is the energy dissipated?

A) 12 J
B) 9.0 J
C) 72 J
D) 36 J
E) 18 J
Question
A series circuit consists of a 12.0 V source of emf,a 2.00 mF capacitor,a 1000 Ω\Omega resistor,and a switch.When the switch is closed,how long does it take for the current to reach one-tenth its maximum value?

A) 0.693 s
B) 2.30 s
C) 4.61 s
D) 9.00 s
E) 18.0 s
Question
Three resistors, R1 = 9.0 Ω\Omega , R2 = 3.0 Ω\Omega , and R3 = 1.0 Ω\Omega , are connected in parallel to a 9.0 V battery.What is the power dissipated by the R2?

A) 2.0 W
B) 3.0 W
C) 9.0 W
D) 27 W
E) 81 W
Question
Raising the current through a resistor from 8.50 A to 11.3 A increases the power by

A) 33.0%.
B) 77.0%.
C) 113%.
D) 157%.
E) 0% (no change).
Question
A series circuit consists of a 1.02 V source of emf, a 2.00 mF capacitor, a 1000 Ω\Omega resistor, and a switch.When the switch is closed, how long does it take for the current to reach one-half its maximum value?

A) 0.693 s
B) 1.39 s
C) 2.00 s
D) 1.69 s
E) 0.0250 s
Question
Copper has 8.5 ×\times 1028 current carrying electrons per m3. A copper wire of radius 0.15 mm carries a current of 17 mA.What is the average drift velocity for the electrons?

A) 2.7 ×\times 10-9 m/s
B) 56 ×\times 10-6 m/s
C) 18 ×\times 10-6 m/s
D) more information is needed for this calculation
Question
Three resistors, R1 = 4 Ω\Omega , R2 = 3.0 Ω\Omega , and R3 = 2.0 Ω\Omega , are connected in series to a 9.0 V battery.What is the power dissipated by R1?

A) 2.0 W
B) 4.0 W
C) 5.1 W
D) 9.0 W
E) 2.3 W
Question
A 2.0 Ω\Omega resistor is connected across a 6.0 V power supply.An ammeter with internal resistance of 1.0 Ω\Omega is used to measure the current in this circuit.What is the ammeter reading?

A) 4.0 A
B) 3.0 A
C) 2.0 A
D) 1.0 A
E) an ammeter with less resistance than the rest of the circuit will not produce a reading
Question
A good ammeter has ________ resistance and a good voltmeter has ________ resistance."Good" means that it affects the system being measured by very little.

A) low,low
B) low,high
C) high,high
D) high,low
E) medium,no
Question
In a series circuit consisting of a 12.0 emf,a 2.00 mF capacitor,a 1.00 k Ω\Omega resistor and a switch,what is the voltage across the capacitor at a time τ\tau after the switch is closed?

A) .632 V
B) 6.32 V
C) 7.58 V
D) 8.65 V
Question
Three resistors, R1 = 9.00 Ω\Omega , R2 = 3.00 Ω\Omega , and R3 = 1.00 Ω\Omega , are connected in parallel to a 9.00 V battery.What is the total power dissipated in the circuit?

A) 180 W
B) 117 W
C) 99.0 W
D) 80.1 W
E) 18.0 W
Question
The watt, W, is equivalent to which of the following?

A) A·V
B) C·J
C) C/J
D) A/V
E) V2/A
Question
A series circuit consists of a 12.0 V source of emf, a 2.00 mF capacitor,a 1000 Ω\Omega resistor, and a switch.What is the time constant for this circuit?

A) 10.0 s
B) 2.00 s
C) 0.693 s
D) 0.0825 s
E) 1.00 ms
Question
A wire of radius 0.15 mm is made of an unknown metal and carries a current of 8.4 mA.The drift velocity for electrons in the wire is measured to be 36 ×\times 10-6 m/s.What is the carrier density of the metal from which the wire is made?

A) 1.3 ×\times 1029 m-3
B) 4.2 ×\times 1028 m-3
C) need more information to do this calculation.
D) 4.2 ×\times 1030 m-3
Question
Three resistors, R1 = 4.0 Ω\Omega , R2 = 3.0 Ω\Omega , and R3 = 2.0 Ω\Omega , are connected in series to a 9.0 V battery.What is the total power dissipated by the circuit?

A) 2.0 W
B) 4.0 W
C) 5.1 W
D) 9.0 W
E) 20 W
Question
A carbon resistor is made of a cylinder of carbon,of diameter 7.4 mm.If the resistivity of carbon is 3.5 ×\times 10-5 Ω\Omega m and when placed in a circuit a potential difference of 0.15 V exists when 12 A flows across the resistor,what is the length of the cylinder?

A) 6.1 cm
B) 1.5 cm
C) 0.15 cm
D) 0.5 cm
Question
In an RC circuit with an initially uncharged capacitor,the time constant is the time that is required for the charge on the capacitor to reach what percentage of its final value?

A) 50%
B) 37%
C) 100%
D) 63%
E) 90%
Question
Two carbon cylinders have radii r and 2r and they both have length L.What is the resistance of the first if the resistance of the second is 12 Ω\Omega ?

A) 48 Ω\Omega
B) 12 Ω\Omega
C) 24 Ω\Omega
D) 3 Ω\Omega
E) 6 Ω\Omega
Question
Two carbon cylinders have radii 2r and r and the first has length 2L,while the second has length L.What is the resistance of the first if the resistance of the second is 12 Ω\Omega ?

A) 48 Ω\Omega
B) 6 Ω\Omega
C) 12 Ω\Omega
D) 24 Ω\Omega
Question
A carbon resistor is made of a cylinder of carbon,of length 1.5 cm.If the resistivity of carbon is 3.5 ×\times 10-5 Ω\Omega m and when placed in a circuit a potential difference of 0.15 V exists when 12 A flows across the resistor,what is the radius of the cylinder?

A) 6.5 mm
B) 12 mm
C) 3.7 mm
D) 1.2 mm
Question
A bird can safely land on a bare high voltage power line because

A) If both feet are touching the bare wire,they are at the same potential - and therefore no current can flow between the feet and through the bird's body
B) Its internal resistance is very high,so very little current will flow
C) The line cannot deliver enough current to harm it
D) Its feet are good insulators,and therefore it is protected
Question
In an RC circuit with an initially uncharged capacitor,the time constant is the time that is required for the current through the resistor to reach what percentage of its final value?

A) 63%
B) 90%
C) 37%
D) 100%
E) 50%
Question
An electron beam contains 1.5 ×\times 1017 electrons per m3 and is confined to circular region of diameter 0.025 mm.The electrons in the beam are extremely energetic,and travel at nearly the speed of light.What is the current in the beam?

A) 1.4 A
B) 3.5 mA
C) 350 mA
D) 14 mA
Question
A capacitor in an RC circuit is charged,storing energy 1.25 mJ.What is the time required to discharge this capacitor,as compared to the time required to discharge an identical capacitor in an identical RC circuit which has stored 2.5 mJ?

A) twice the time
B) half the time
C) the same time
D) the answer depends on the values of R and C.
Question
Copper has 8.5 ×\times 1028 current carrying electrons per m3.A copper wire carries a current of 17 mA,and the drift velocity of the electrons is measured to be 18 ×\times 10-6 m/s.What is the wire radius?

A) 0.15 mm
B) 0.27 mm
C) 2.7 mm
D) 1.5 mm
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Deck 18: Electric Current and Circuits
1
If 64 coulombs flow along a wire in 4.0 seconds,what is the average current?

A) 64 A
B) 32 A
C) 16 A
D) 4.0 A
E) none of these choices are correct
16 A
2
A variable resistor has a voltage of 12.0 V placed across it.If the resistance is increased 20%,what happens to the current through it?

A) it increases 20%
B) it increases 25%
C) it decreases 20%
D) it decreases 25%
E) it decreases 17%
it decreases 17%
3
A length of wire has a resistance of 18.0 Ω\Omega .When the wire is uniformly stretched to triple it original length,what resistance results?

A) 162 Ω\Omega
B) 54.0 Ω\Omega
C) 18.0 Ω\Omega
D) 6.00 Ω\Omega
E) 2.00 Ω\Omega
162 Ω\Omega
4
A resistor has a resistance of 30 Ω\Omega at 20 ^{\circ} C.If the temperature coefficient is 4.5 ×\times 103 ^{\circ} C-1,what is its resistance at 200 ^{\circ} C?

A) 24 Ω\Omega
B) 27 Ω\Omega
C) 48 Ω\Omega
D) 54 Ω\Omega
E) 57 Ω\Omega
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5
One hundred meters of a certain type of wire has a resistance of 7.2 Ω\Omega .What is the resistance of 2.5 m of this wire?

A) 18 Ω\Omega
B) 1.8 Ω\Omega
C) 0.18 Ω\Omega
D) 3.0 Ω\Omega
E) 0.30 Ω\Omega
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6
A 12.0 V battery is placed across a 4.00 Ω\Omega resistor.If the current through the resistor is 2.80 A,what is the internal resistance of the battery?

A) 0.200 Ω\Omega
B) 0.290 Ω\Omega
C) 4.29 Ω\Omega
D) 3.71 Ω\Omega
E) 0.800 Ω\Omega
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7
When a current flows down a wire

A) electrons are moving in the direction of the current.
B) electrons are moving opposite the direction of the current.
C) protons are moving in the direction of the current.
D) protons are moving opposite the direction of the current.
E) both protons and electrons are moving in the direction of the current.
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8
A 2.50 A current is carried by a copper wire of radius 1.0 mm.If the density of conduction electrons is 8.0 ×\times 1028/m3,what is the drift velocity of the conduction electrons?

A) 3.0 ×\times 108 m/s
B) 3.2 ×\times 10 4 m/s
C) 1.6 ×\times 10 5 m/s
D) 6.2 ×\times 10 4 m/s
E) 6.2 ×\times 10 5 m/s
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9
Of the common battery sizes AAA,AA,C,and D,which provides the highest emf?

A) AAA
B) AA
C) C
D) D
E) all have the same emf
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10
One hundred meters of 2.00 mm diameter wire has a resistance of 0.532 Ω\Omega .What is the resistivity of the material from which the wire is made?

A) 1.59 ×\times 10 8 Ω\Omega m
B) 1.67 ×\times 10 8 Ω\Omega m
C) 2.35 ×\times 10 8 Ω\Omega m
D) 2.65 ×\times 10 8 Ω\Omega m
E) 5.40 ×\times 10 8 Ω\Omega ·m
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11
An ampere, A ,is equivalent to a

A) V/m.
B) V·C.
C) C/s.
D) C·s.
E) N/V.
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12
A 1.56-V battery has an internal resistance of 0.120 Ω\Omega .What is the maximum current that can be drawn from this battery?

A) infinite (or at least 1000's of amps)
B) 1.56 A
C) 0.190 A
D) 13.0 A
E) 7.50 A
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13
A length L0 of wire has a resistance of 32.0 Ω\Omega .The wire is uniformly stretched to four times its original length,i.e.,4 L0.If a length L0 is now cut from the stretched wire,what is its resistance?

A) 512 Ω\Omega
B) 128 Ω\Omega
C) 32.0 Ω\Omega
D) 8.00 Ω\Omega
E) 2.00 Ω\Omega
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14
The resistance of a wire increases 3.9% when the temperature of the wire is raised 100 ^{\circ} C.What is the temperature coefficient of resistivity of the wire material?

A) 3.9 ^{\circ} C-1
B) 0.39 ^{\circ} C-1
C) 0.039 ^{\circ} C-1
D) 0.0039 ^{\circ} C-1
E) 0.00039 ^{\circ} C-1
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15
An ohm is equivalent to a(n)

A) volt/meter.
B) coulomb/volt.
C) ampere/coulomb.
D) volt/ampere.
E) ampere·coulomb.
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16
A potential difference of 12.4 V is placed across a 4.1 Ω\Omega resistor.What is the current in the resistor?

A) 51 A
B) 3.0 A
C) 0.33 A
D) 16A
E) 8.3 A
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17
Silver contains 5.8 ×\times 1028 conduction electrons per m3.How many conduction electrons are in a 1.0 m length of silver wire of diameter 2.6 mm?

A) 1.9 ×\times 105
B) 4.7 ×\times 104
C) 3.1 ×\times 1023
D) 1.2 ×\times 1024
E) 6.0 ×\times 1023
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18
Two copper wires,one double the diameter of the other,have the same current flowing through them.If the thinner wire has a drift velocity v1,and the thicker wire has a drift velocity v2,how do the drift velocities of the charge carriers compare?

A) v1 = v2
B) v1 = 2 v2
C) 2 v1 = v2
D) v1 = 4 v2
E) 4 v1 = v2
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19
Aluminum has a resistivity of 2.65 ×\times 108 Ω\Omega m.What is the resistance of 15 m of aluminum wire of cross-sectional area 1.0 mm2?

A) 1.6 Ω\Omega
B) 0.40 Ω\Omega
C) 0.13 Ω\Omega
D) 1.3 ×\times 102 Ω\Omega
E) 56 Ω\Omega
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20
If a 22 Ω\Omega resistor has a current of 2.0 A flowing through it,what is the potential difference across it?

A) 0.091 V
B) 44 V
C) 11 V
D) 24 V
E) 20 V
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21
The arrangement is composed of four 6.0 mF capacitors.What is the capacitance of the combination? <strong>The arrangement is composed of four 6.0 mF capacitors.What is the capacitance of the combination?  </strong> A) 24.0 mF B) 4.5 mF C) 8.0 mF D) 9.0 mF E) 12.5 mF

A) 24.0 mF
B) 4.5 mF
C) 8.0 mF
D) 9.0 mF
E) 12.5 mF
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22
A 6.0 Ω\Omega resistor and a 3.0 Ω\Omega resistor are connected in parallel to a 1.5 V battery of negligible internal resistance.What is the current in the 3.0 Ω\Omega resistor?

A) 2.0 A
B) 0.50 A
C) 0.25 A
D) 0.17 A
E) 0.75 A
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23
Capacitors of values 6.00 mF and 9.00 mF are connected in series to a 30.0 V power supply.What is the resulting charge on the 6.00 mF capacitor?

A) 180 mC
B) 270 mC
C) 90.0 mC
D) 108 mC
E) 200 mC
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24
If R1 = 6.0 Ω\Omega , R2 = 8.0 Ω\Omega , R3 = 2.0 Ω\Omega , ε\varepsilon 1 = 4.0 V, and ε\varepsilon 2 = 14 V,what is the power supplied to the circuit by ε\varepsilon 1?  <strong>If R<sub>1</sub> = 6.0  \Omega , R<sub>2</sub> = 8.0  \Omega , R<sub>3</sub> = 2.0  \Omega ,  \varepsilon <sub>1</sub> = 4.0 V, and  \varepsilon <sub>2</sub> = 14 V,what is the power supplied to the circuit by  \varepsilon <sub>1</sub>?  </strong> A) 4.0 W B) 8.0 W C) 12 W D) 16 W E) 20 W

A) 4.0 W
B) 8.0 W
C) 12 W
D) 16 W
E) 20 W
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25
A 6.0 Ω\Omega resistor and a 3.0 Ω\Omega resistor are connected in series to a 1.5 V battery of negligible internal resistance.What is the current in the 3.0 Ω\Omega resistor?

A) 2.0 A
B) 0.50 A
C) 0.25 A
D) 0.17 A
E) 0.75 A
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26
What is the resistance of the combination of resistors?  <strong>What is the resistance of the combination of resistors?  </strong> A) 4.0  \Omega  B) 12  \Omega  C) 13  \Omega  D) 14  \Omega  E) 15  \Omega

A) 4.0 Ω\Omega
B) 12 Ω\Omega
C) 13 Ω\Omega
D) 14 Ω\Omega
E) 15 Ω\Omega
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27
If R1 = 6 Ω\Omega , R2 = 8 Ω\Omega , R3 = 2 Ω\Omega , ε\varepsilon 1 = 4 V, and ε\varepsilon 2 = 14 V, what is the current in R2?  <strong>If R<sub>1</sub> = 6  \Omega , R<sub>2</sub> = 8  \Omega , R<sub>3</sub> = 2  \Omega ,  \varepsilon <sub>1</sub> = 4 V, and  \varepsilon <sub>2</sub> = 14 V, what is the current in R<sub>2</sub>?  </strong> A) 1 A B) 2 A C) 3 A D) 4 A E) 5 A

A) 1 A
B) 2 A
C) 3 A
D) 4 A
E) 5 A
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28
Capacitors of values 1.0 F, 2.0 F, 3.0 F, and 6.0 F are connected in series across a 12 V power supply.Which capacitor has the greatest charge on it?

A) the 1.0 F capacitor
B) the 2.0 F capacitor
C) the 3.0 F capacitor
D) the 6.0 F capacitor
E) they are all equal
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29
In the diagram,each resistor is 3 ohms and the battery is 9 volts.What is the current through the middle resistor? <strong>In the diagram,each resistor is 3 ohms and the battery is 9 volts.What is the current through the middle resistor?  </strong> A) 3 A to the right B) 3 A to the left C) 9 A to the right D) 9 A to the left E) 1 A to the left

A) 3 A to the right
B) 3 A to the left
C) 9 A to the right
D) 9 A to the left
E) 1 A to the left
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30
Four 12 Ω\Omega resistors are connected together.

A) 12 Ω\Omega
B) 24 Ω\Omega
C) 36 Ω\Omega
D) 48 Ω\Omega
E) 44 Ω\Omega
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31
Capacitors of values 6.0 mF and 9.0 mF are connected in series to a 30.0 V power supply.What is the resulting potential difference across the 6.0 mF capacitor?

A) 30 V
B) 18 V
C) 12 V
D) 6.0 V
E) 3.0 V
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32
Four 12 Ω\Omega resistors are connected together.What is the least resistance that can be attained with these resistors?

A) 12 Ω\Omega
B) 6.0 Ω\Omega
C) 3.0 Ω\Omega
D) 2.0 Ω\Omega
E) 1.0 Ω\Omega
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33
Four 12 Ω\Omega resistors are connected together.Which of the following resistances cannot be formed using all 4 resistors?

A) 48 Ω\Omega
B) 9.0 Ω\Omega
C) 12 Ω\Omega
D) 60 Ω\Omega
E) 20 Ω\Omega
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34
In the diagram,if the current through R1 is 5 A up and if the current through R3 is 3 A up, what is the current in R2? <strong>In the diagram,if the current through R<sub>1</sub> is 5 A up and if the current through R<sub>3</sub> is 3 A up, what is the current in R<sub>2</sub>?  </strong> A) 8 A up B) 8 A down C) 2 A up D) 2 A down E) more information is needed

A) 8 A up
B) 8 A down
C) 2 A up
D) 2 A down
E) more information is needed
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35
Capacitors of values 1.0 F, 2.0 F, 3.0 F, and 6.0 F are connected in series across a 12 V power supply.Which capacitor has the greatest potential difference across it?

A) the 1.0 F capacitor
B) the 2.0 F capacitor
C) the 3.0 F capacitor
D) the 6.0 F capacitor
E) they all are equal
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36
A three-cell flashlight has 3 batteries in series each with an emf of 1.5 V.If the bulb has a resistance of 50 Ω\Omega ,what current is flowing when the flashlight is operating? (Assume the internal resistance of the batteries is negligible.)

A) 30 mA
B) 10 mA
C) 27 mA
D) 90 mA
E) 11 A
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37
A 12.0 V battery is placed across a 4.00 Ω\Omega resistor.If the current through the resistor is 2.80 A,what is the terminal voltage of the battery?

A) 12.0 V
B) 12.8 V
C) 11.6 V
D) 11.2 V
E) 9.6 V
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38
Capacitors of values 6.0 mF and 9.0 mF are connected in series.What is the capacitance of the combination?

A) 15 mF
B) 7.5 mF
C) 3.0 mF
D) 3.6 mF
E) 54 mF
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39
A 12.0 V battery has an internal resistance of 0.080 Ω\Omega .If the battery supplies 100 A when connected to a starter motor,what is the resistance of the motor?

A) 0.080 Ω\Omega
B) 0.20 Ω\Omega
C) 0.0012 Ω\Omega
D) 0.040 Ω\Omega
E) 0.012 Ω\Omega
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40
Wire A carries 4 A into a junction,wire B carries 5 A into the same junction,and another wire is connected to the junction.What is the current in this last wire?

A) 4 A away from the junction
B) 9 A away from the junction
C) 4 A into the junction
D) 9 A into the junction
E) 1 A away from the junction
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41
A variable resistor is connected to a constant voltage source.When the resistance is increased from 5.5 Ω\Omega to 9.3 Ω\Omega ,what happens to the power dissipated?

A) no change
B) a 35% decrease
C) a 41% decrease
D) a 59% decrease
E) a 69% decrease
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42
A capacitor is connected in series with a resistor and a switch.With the switch open,the capacitor is charged to 9.0 V.When the switch is closed,how long will it take for the voltage across the capacitor to drop to 6.0 V if the time constant of the circuit is 4.0 s?

A) 0.3 s
B) 1.2 s
C) 1.6 s
D) 2.7 s
E) 12 s
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43
When the voltage across a resistor is decreased by 50%,what happens to the power dissipated?

A) it increases by 50%
B) it decreases by 50%
C) it decreases by 25%
D) it decreases by 71%
E) it decreases by 75%
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44
A 1000 Ω\Omega resistor is in a circuit with 30.0 mA flowing through it.A voltmeter with internal resistance 1000 Ω\Omega is used to measure the voltage across the resistor.What is the reading from the voltmeter if 30.0 mA still flows in the circuit?

A) 30.0 V
B) 29.9 V
C) 27.0 V
D) 15.0 V
E) 3.00 V
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45
By how much does the current fall after the switch is closed in a series RC circuit when three time constants have elapsed?

A) 5.0%
B) 38%
C) 62%
D) 95%
E) 100% since after 2 time constants the current is 0
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46
A flashlight,which uses two 1.5 V batteries in series,is turned on for 2.0 minutes.If the current in the flashlight is 100 mA,what is the energy dissipated?

A) 12 J
B) 9.0 J
C) 72 J
D) 36 J
E) 18 J
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47
A series circuit consists of a 12.0 V source of emf,a 2.00 mF capacitor,a 1000 Ω\Omega resistor,and a switch.When the switch is closed,how long does it take for the current to reach one-tenth its maximum value?

A) 0.693 s
B) 2.30 s
C) 4.61 s
D) 9.00 s
E) 18.0 s
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48
Three resistors, R1 = 9.0 Ω\Omega , R2 = 3.0 Ω\Omega , and R3 = 1.0 Ω\Omega , are connected in parallel to a 9.0 V battery.What is the power dissipated by the R2?

A) 2.0 W
B) 3.0 W
C) 9.0 W
D) 27 W
E) 81 W
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49
Raising the current through a resistor from 8.50 A to 11.3 A increases the power by

A) 33.0%.
B) 77.0%.
C) 113%.
D) 157%.
E) 0% (no change).
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50
A series circuit consists of a 1.02 V source of emf, a 2.00 mF capacitor, a 1000 Ω\Omega resistor, and a switch.When the switch is closed, how long does it take for the current to reach one-half its maximum value?

A) 0.693 s
B) 1.39 s
C) 2.00 s
D) 1.69 s
E) 0.0250 s
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51
Copper has 8.5 ×\times 1028 current carrying electrons per m3. A copper wire of radius 0.15 mm carries a current of 17 mA.What is the average drift velocity for the electrons?

A) 2.7 ×\times 10-9 m/s
B) 56 ×\times 10-6 m/s
C) 18 ×\times 10-6 m/s
D) more information is needed for this calculation
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52
Three resistors, R1 = 4 Ω\Omega , R2 = 3.0 Ω\Omega , and R3 = 2.0 Ω\Omega , are connected in series to a 9.0 V battery.What is the power dissipated by R1?

A) 2.0 W
B) 4.0 W
C) 5.1 W
D) 9.0 W
E) 2.3 W
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53
A 2.0 Ω\Omega resistor is connected across a 6.0 V power supply.An ammeter with internal resistance of 1.0 Ω\Omega is used to measure the current in this circuit.What is the ammeter reading?

A) 4.0 A
B) 3.0 A
C) 2.0 A
D) 1.0 A
E) an ammeter with less resistance than the rest of the circuit will not produce a reading
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54
A good ammeter has ________ resistance and a good voltmeter has ________ resistance."Good" means that it affects the system being measured by very little.

A) low,low
B) low,high
C) high,high
D) high,low
E) medium,no
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55
In a series circuit consisting of a 12.0 emf,a 2.00 mF capacitor,a 1.00 k Ω\Omega resistor and a switch,what is the voltage across the capacitor at a time τ\tau after the switch is closed?

A) .632 V
B) 6.32 V
C) 7.58 V
D) 8.65 V
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56
Three resistors, R1 = 9.00 Ω\Omega , R2 = 3.00 Ω\Omega , and R3 = 1.00 Ω\Omega , are connected in parallel to a 9.00 V battery.What is the total power dissipated in the circuit?

A) 180 W
B) 117 W
C) 99.0 W
D) 80.1 W
E) 18.0 W
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57
The watt, W, is equivalent to which of the following?

A) A·V
B) C·J
C) C/J
D) A/V
E) V2/A
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58
A series circuit consists of a 12.0 V source of emf, a 2.00 mF capacitor,a 1000 Ω\Omega resistor, and a switch.What is the time constant for this circuit?

A) 10.0 s
B) 2.00 s
C) 0.693 s
D) 0.0825 s
E) 1.00 ms
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59
A wire of radius 0.15 mm is made of an unknown metal and carries a current of 8.4 mA.The drift velocity for electrons in the wire is measured to be 36 ×\times 10-6 m/s.What is the carrier density of the metal from which the wire is made?

A) 1.3 ×\times 1029 m-3
B) 4.2 ×\times 1028 m-3
C) need more information to do this calculation.
D) 4.2 ×\times 1030 m-3
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60
Three resistors, R1 = 4.0 Ω\Omega , R2 = 3.0 Ω\Omega , and R3 = 2.0 Ω\Omega , are connected in series to a 9.0 V battery.What is the total power dissipated by the circuit?

A) 2.0 W
B) 4.0 W
C) 5.1 W
D) 9.0 W
E) 20 W
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61
A carbon resistor is made of a cylinder of carbon,of diameter 7.4 mm.If the resistivity of carbon is 3.5 ×\times 10-5 Ω\Omega m and when placed in a circuit a potential difference of 0.15 V exists when 12 A flows across the resistor,what is the length of the cylinder?

A) 6.1 cm
B) 1.5 cm
C) 0.15 cm
D) 0.5 cm
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62
In an RC circuit with an initially uncharged capacitor,the time constant is the time that is required for the charge on the capacitor to reach what percentage of its final value?

A) 50%
B) 37%
C) 100%
D) 63%
E) 90%
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63
Two carbon cylinders have radii r and 2r and they both have length L.What is the resistance of the first if the resistance of the second is 12 Ω\Omega ?

A) 48 Ω\Omega
B) 12 Ω\Omega
C) 24 Ω\Omega
D) 3 Ω\Omega
E) 6 Ω\Omega
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64
Two carbon cylinders have radii 2r and r and the first has length 2L,while the second has length L.What is the resistance of the first if the resistance of the second is 12 Ω\Omega ?

A) 48 Ω\Omega
B) 6 Ω\Omega
C) 12 Ω\Omega
D) 24 Ω\Omega
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65
A carbon resistor is made of a cylinder of carbon,of length 1.5 cm.If the resistivity of carbon is 3.5 ×\times 10-5 Ω\Omega m and when placed in a circuit a potential difference of 0.15 V exists when 12 A flows across the resistor,what is the radius of the cylinder?

A) 6.5 mm
B) 12 mm
C) 3.7 mm
D) 1.2 mm
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66
A bird can safely land on a bare high voltage power line because

A) If both feet are touching the bare wire,they are at the same potential - and therefore no current can flow between the feet and through the bird's body
B) Its internal resistance is very high,so very little current will flow
C) The line cannot deliver enough current to harm it
D) Its feet are good insulators,and therefore it is protected
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67
In an RC circuit with an initially uncharged capacitor,the time constant is the time that is required for the current through the resistor to reach what percentage of its final value?

A) 63%
B) 90%
C) 37%
D) 100%
E) 50%
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68
An electron beam contains 1.5 ×\times 1017 electrons per m3 and is confined to circular region of diameter 0.025 mm.The electrons in the beam are extremely energetic,and travel at nearly the speed of light.What is the current in the beam?

A) 1.4 A
B) 3.5 mA
C) 350 mA
D) 14 mA
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69
A capacitor in an RC circuit is charged,storing energy 1.25 mJ.What is the time required to discharge this capacitor,as compared to the time required to discharge an identical capacitor in an identical RC circuit which has stored 2.5 mJ?

A) twice the time
B) half the time
C) the same time
D) the answer depends on the values of R and C.
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70
Copper has 8.5 ×\times 1028 current carrying electrons per m3.A copper wire carries a current of 17 mA,and the drift velocity of the electrons is measured to be 18 ×\times 10-6 m/s.What is the wire radius?

A) 0.15 mm
B) 0.27 mm
C) 2.7 mm
D) 1.5 mm
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