Deck 27: Circuits

ملء الشاشة (f)
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سؤال
Resistances of 2.0 Ω\Omega , 4.0 Ω\Omega , and 6.0 Ω\Omega and a 24-V emf device are all in series.The potential difference across the 2.0- Ω\Omega resistor is:

A)4 V
B)8 V
C)12 V
D)24 V
E)48 V
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سؤال
Resistances of 2.0 Ω\Omega , 4.0 Ω\Omega , and 6.0 Ω\Omega and a 24-V battery are all in series.The current in the 2.0 Ω\Omega resistor is:

A)12 A
B)4.0 A
C)2.4 A
D)2.0 A
E)0.50 A
سؤال
A battery is connected across a series combination of two identical resistors.If the potential difference across the terminals is V and the current in the battery is i, then:

A)the potential difference across each resistor is V and the current in each resistor is i
B)the potential difference across each resistor is V/2 and the current in each resistor is i/2
C)the potential difference across each resistor is V and the current in each resistor is i/2
D)the potential difference across each resistor is V/2 and the current in each resistor is i
E)none of the above are true
سؤال
A series circuit consists of a battery with internal resistance r and an external resistor R.If these two resistances are equal (r = R)then the energy dissipated per unit time by the internal resistance r is:

A)the same as by R
B)half that by R
C)twice that by R
D)one third that by R
E)unknown unless the emf is given
سؤال
Nine identical wires, each of diameter d and length L, are connected in series.The combination has the same resistance as a single similar wire of length L but whose diameter is:

A)9d
B)3d
C)d/3
D)d/9
E)d/81
سؤال
Two 110-V light bulbs, one labeled 25 W and the other 100 W, are connected in series to a 110 V source.Then:

A)the current in the 100-W bulb is greater than that in the 25-W bulb
B)the current in the 100-W bulb is less than that in the 25-W bulb
C)both bulbs will light with equal brightness
D)each bulb will have a potential difference of 55 V
E)none of the above
سؤال
The emf of a battery is equal to its terminal potential difference:

A)under all conditions
B)only when the battery is being charged
C)only when a large current is in the battery
D)only when there is no current in the battery
E)under no conditions
سؤال
A battery with an emf of 12 V and an internal resistance of 1 Ω\Omega is used to charge a battery with an emf of 10 V and an internal resistance of 1 Ω\Omega .The current in the circuit is:

A)1 A
B)2 A
C)4 A
D)11 A
E)22 A
سؤال
Four 20- Ω\Omega resistors are connected in series and the combination is connected to a 20-V emf device.The current in any one of the resistors is:

A)0.25 A
B)1.0 A
C)4.0 A
D)5.0 A
E)100 A
سؤال
An emf source is defined in terms of:

A)the force it exerts on charges
B)the work it does on charges
C)the electric field it generates
D)the current it generates
E)the charge it emits
سؤال
An ideal battery has an emf of 12 V.If it is connected to a circuit and creates a current of 4.0 A, what is the power?

A)0.3 W
B)3.0 W
C)36 W
D)48 W
E)cannot tell without knowing the resistance of the circuit
سؤال
The terminal potential difference of a battery is less than its emf:

A)under all conditions
B)only when the battery is being charged
C)only when the battery is being discharged
D)only when there is no current in the battery
E)under no conditions
سؤال
Four 20- Ω\Omega resistors are connected in series and the combination is connected to a 20-V emf device.The potential difference across any one of the resistors is:

A)1 V
B)4 V
C)5 V
D)20 V
E)80 V
سؤال
"The sum of the emf's and potential differences around a closed loop equals zero" is a consequence of:

A)Newton's third law
B)Ohm's law
C)Newton's second law
D)conservation of energy
E)conservation of charge
سؤال
The resistance of resistor 1 is twice the resistance of resistor 2.The two are connected in series and a potential difference is maintained across the combination.Then:

A)the current in 1 is twice that in 2
B)the current in 1 is half that in 2
C)the potential difference across 1 is twice that across 2
D)the potential difference across 1 is half that across 2
E)none of the above are true
سؤال
Two wires made of the same material have the same length but different diameters.They are connected in series to a battery.The quantity that is the same for the wires is:

A)the end-to-end potential difference
B)the current
C)the current density
D)the electric field
E)the electron drift velocity
سؤال
Two wires are made of the same material and have the same length but different radii.They are joined end-to-end and a potential difference is maintained across the combination.Of the following the quantity that is the same for both wires is:

A)potential difference
B)current
C)current density
D)electric field
E)conduction electron drift speed
سؤال
In the diagram R1 > R2 > R3.Rank the three resistors according to the current in them, least to greatest. <strong>In the diagram R<sub>1</sub> > R<sub>2</sub> > R<sub>3</sub>.Rank the three resistors according to the current in them, least to greatest.  </strong> A)1, 2, 3 B)3, 2, 1 C)1, 3, 2 D)3, 1, 2 E)All are the same <div style=padding-top: 35px>

A)1, 2, 3
B)3, 2, 1
C)1, 3, 2
D)3, 1, 2
E)All are the same
سؤال
In the diagram, the current in the 3- Ω\Omega resistor is 4 A.The potential difference between points 1 and 2 is:  <strong>In the diagram, the current in the 3- \Omega  resistor is 4 A.The potential difference between points 1 and 2 is:  </strong> A)0.75 V B)0.8 V C)1.25 V D)12 V E)20 V <div style=padding-top: 35px>

A)0.75 V
B)0.8 V
C)1.25 V
D)12 V
E)20 V
سؤال
Resistor 1 has twice the resistance of resistor 2.The two are connected in series and a potential difference is maintained across the combination.The rate of thermal energy dissipation in 1 is:

A)the same as that in 2
B)twice that in 2
C)half that in 2
D)four times that in 2
E)one fourth that in 2
سؤال
A 120-V power line is protected by a 15-A fuse.What is the maximum number of 120 V, 500 W light bulbs that can be operated at full brightness from this line?

A)1
B)2
C)3
D)4
E)5
سؤال
Four 20- Ω\Omega resistors are connected in parallel and the combination is connected to a 20-V emf device.The current in any one of the resistors is:

A)0.25 A
B)1.0 A
C)4.0 A
D)5.0 A
E)100 A
سؤال
A resistor with resistance R1 and a resistor with resistance R2 are connected in parallel to an ideal battery with emf <strong>A resistor with resistance R<sub>1</sub> and a resistor with resistance R<sub>2</sub> are connected in parallel to an ideal battery with emf   .The rate of thermal energy generation in the resistor with resistance R<sub>1</sub> is:</strong> A)   <sup>2</sup>/R<sub>1</sub> B)   <sup>2 </sup>R<sub>1</sub>/(R<sub>1</sub> + R<sub>2</sub>)<sup>2</sup> C)   <sup>2 </sup>/(R<sub>1</sub> + R<sub>2</sub>) D)   <sup>2</sup>/R<sub>2</sub> E)   <div style=padding-top: 35px> .The rate of thermal energy generation in the resistor with resistance R1 is:

A) <strong>A resistor with resistance R<sub>1</sub> and a resistor with resistance R<sub>2</sub> are connected in parallel to an ideal battery with emf   .The rate of thermal energy generation in the resistor with resistance R<sub>1</sub> is:</strong> A)   <sup>2</sup>/R<sub>1</sub> B)   <sup>2 </sup>R<sub>1</sub>/(R<sub>1</sub> + R<sub>2</sub>)<sup>2</sup> C)   <sup>2 </sup>/(R<sub>1</sub> + R<sub>2</sub>) D)   <sup>2</sup>/R<sub>2</sub> E)   <div style=padding-top: 35px> 2/R1
B) <strong>A resistor with resistance R<sub>1</sub> and a resistor with resistance R<sub>2</sub> are connected in parallel to an ideal battery with emf   .The rate of thermal energy generation in the resistor with resistance R<sub>1</sub> is:</strong> A)   <sup>2</sup>/R<sub>1</sub> B)   <sup>2 </sup>R<sub>1</sub>/(R<sub>1</sub> + R<sub>2</sub>)<sup>2</sup> C)   <sup>2 </sup>/(R<sub>1</sub> + R<sub>2</sub>) D)   <sup>2</sup>/R<sub>2</sub> E)   <div style=padding-top: 35px> 2 R1/(R1 + R2)2
C) <strong>A resistor with resistance R<sub>1</sub> and a resistor with resistance R<sub>2</sub> are connected in parallel to an ideal battery with emf   .The rate of thermal energy generation in the resistor with resistance R<sub>1</sub> is:</strong> A)   <sup>2</sup>/R<sub>1</sub> B)   <sup>2 </sup>R<sub>1</sub>/(R<sub>1</sub> + R<sub>2</sub>)<sup>2</sup> C)   <sup>2 </sup>/(R<sub>1</sub> + R<sub>2</sub>) D)   <sup>2</sup>/R<sub>2</sub> E)   <div style=padding-top: 35px> 2 /(R1 + R2)
D) <strong>A resistor with resistance R<sub>1</sub> and a resistor with resistance R<sub>2</sub> are connected in parallel to an ideal battery with emf   .The rate of thermal energy generation in the resistor with resistance R<sub>1</sub> is:</strong> A)   <sup>2</sup>/R<sub>1</sub> B)   <sup>2 </sup>R<sub>1</sub>/(R<sub>1</sub> + R<sub>2</sub>)<sup>2</sup> C)   <sup>2 </sup>/(R<sub>1</sub> + R<sub>2</sub>) D)   <sup>2</sup>/R<sub>2</sub> E)   <div style=padding-top: 35px> 2/R2
E) <strong>A resistor with resistance R<sub>1</sub> and a resistor with resistance R<sub>2</sub> are connected in parallel to an ideal battery with emf   .The rate of thermal energy generation in the resistor with resistance R<sub>1</sub> is:</strong> A)   <sup>2</sup>/R<sub>1</sub> B)   <sup>2 </sup>R<sub>1</sub>/(R<sub>1</sub> + R<sub>2</sub>)<sup>2</sup> C)   <sup>2 </sup>/(R<sub>1</sub> + R<sub>2</sub>) D)   <sup>2</sup>/R<sub>2</sub> E)   <div style=padding-top: 35px>
سؤال
A battery of emf 24 V is connected to a 6- Ω\Omega resistor.As a result, current of 3 A exists in the resistor.The terminal potential difference of the battery is:

A)0 V
B)6 V
C)12 V
D)18 V
E)24 V
سؤال
A portion of a circuit is shown, with the values of the currents given for some branches.What is the direction and value of the current i?  <strong>A portion of a circuit is shown, with the values of the currents given for some branches.What is the direction and value of the current i?  </strong> A)  \downarrow  , 6A B)  \uparrow  , 6A C)  \downarrow  , 4A D)  \uparrow  , 4A E)  \downarrow  , 2A <div style=padding-top: 35px>

A)" \downarrow , 6A"
B)" \uparrow , 6A"
C)" \downarrow , 4A"
D)" \uparrow , 4A"
E)" \downarrow , 2A"
سؤال
A total resistance of 3.0 Ω\Omega is to be produced by combining an unknown resistor R with a 12 Ω\Omega resistor.What is the value of R and how is it to be connected to the 12 Ω\Omega resistor?

A)2.4 Ω\Omega , parallel
B)2.4 Ω\Omega , series
C)4.0 Ω\Omega , parallel
D)4.0 Ω\Omega , series
E)9.0 Ω\Omega , series
سؤال
A battery is connected across a parallel combination of two identical resistors.If the potential difference across the terminals is V and the current in the battery is i, then:

A)the potential difference across each resistor is V and the current in each resistor is i
B)the potential difference across each resistor is V/2 and the current in each resistor is i/2
C)the potential difference across each resistor is V and the current in each resistor is i/2
D)the potential difference across each resistor is V/2 and the current in each resistor is i
E)none of the above are true
سؤال
In the context of the loop and junctions rules for electrical circuits a junction is:

A)where a wire is connected to a resistor
B)where a wire is connected to a battery
C)where only two wires are joined
D)where three or more wires are joined
E)where a wire is bent
سؤال
Four wires meet at a junction.The first carries 4 A into the junction, the second carries 5 A out of the junction, and the third carries 2 A out of the junction.The fourth carries:

A)7 A out of the junction
B)7 A into the junction
C)3 A out of the junction
D)3 A into the junction
E)1 A into the junction
سؤال
Two wires made of the same material have the same length but different diameter.They are connected in parallel to a battery.The quantity that is NOT the same for the wires is:

A)the end-to-end potential difference
B)the current
C)the current density
D)the electric field
E)the electron drift velocity
سؤال
The positive terminals of two batteries with emf's of <strong>The positive terminals of two batteries with emf's of   and  , respectively, are connected together. Here   > https://d2lvgg3v3hfg70.cloudfront.net/TB6585/ . The circuit is completed by connecting the negative terminals. If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:  </strong> A)A B)B C)C D)D E)E <div style=padding-top: 35px> and <strong>The positive terminals of two batteries with emf's of   and  , respectively, are connected together. Here   > https://d2lvgg3v3hfg70.cloudfront.net/TB6585/ . The circuit is completed by connecting the negative terminals. If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:  </strong> A)A B)B C)C D)D E)E <div style=padding-top: 35px> , respectively, are connected together. Here 11ec7f5a_ca78_ef7f_b078_11738fe4a163_TB6585_11 > https://d2lvgg3v3hfg70.cloudfront.net/TB6585/11ec7f5a_f26b_fc80_b078_d10fb369d738_TB6585_11. The circuit is completed by connecting the negative terminals. If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:
<strong>The positive terminals of two batteries with emf's of   and  , respectively, are connected together. Here   > https://d2lvgg3v3hfg70.cloudfront.net/TB6585/ . The circuit is completed by connecting the negative terminals. If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:  </strong> A)A B)B C)C D)D E)E <div style=padding-top: 35px>

A)A
B)B
C)C
D)D
E)E
سؤال
Resistances of 2.0 Ω\Omega , 4.0 Ω\Omega , and 6.0 Ω\Omega and a 24-V emf device are all in series.The circuit is initially ungrounded.After grounding, the current in the circuit:

A)increases
B)decreases
C)does not change
D)depends on where in the circuit the ground wire is attached
E)depends on what the circuit is grounded to
سؤال
A battery has an emf of 9 V and an internal resistance of 2 Ω\Omega .If the potential difference across its terminals is greater than 9 V:

A)it must be connected across a large external resistance
B)it must be connected across a small external resistance
C)the current must be out of the positive terminal
D)the current must be out of the negative terminal
E)the current must be zero
سؤال
In an antique automobile, a 6-V battery supplies a total of 48 W to two identical headlights in parallel.The resistance of each bulb is:

A)0.75 Ω
B)1.5 Ω
C)3 Ω
D)4 Ω
E)8 Ω
سؤال
The resistance of resistor 1 is twice the resistance of resistor 2.The two are connected in parallel and a potential difference is maintained across the combination.Then:

A)the current in 1 is twice that in 2
B)the current in 1 is half that in 2
C)the potential difference across 1 is twice that across 2
D)the potential difference across 1 is half that across 2
E)none of the above are true
سؤال
Four 20- Ω\Omega resistors are connected in parallel and the combination is connected to a 20-V emf device.The current in the device is:

A)0.25 A
B)1.0 A
C)4.0 A
D)5.0 A
E)100 A
سؤال
A battery of emf 24 V is connected to a 6.0- Ω\Omega resistor.As a result, current of 3.0 A exists in the resistor.The rate at which energy is being dissipated in the battery is:

A)3.0 W
B)6.0 W
C)18 W
D)54 W
E)72 W
سؤال
By using only two resistors, R1 and R2 a student is able to obtain resistances of 3 Ω\Omega , 4 Ω\Omega , 12 Ω\Omega , and 16 Ω\Omega .The values of R1 and R2 are:

A)3 Ω\Omega , 4 Ω\Omega
B)2 Ω\Omega , 12 Ω\Omega
C)3 Ω\Omega , 16 Ω\Omega
D)4 Ω\Omega , 12 Ω\Omega
E)4 Ω\Omega , 16 Ω\Omega
سؤال
"The sum of the currents into a junction equals the sum of the currents out of the junction" is a consequence of:

A)Newton's third law
B)Ohm's law
C)Newton's second law
D)conservation of energy
E)conservation of charge
سؤال
2. The circuit is completed by connecting the negative terminals.If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:

A) <strong><sub>2.</sub> The circuit is completed by connecting the negative terminals.If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:</strong> A)   /r B)   /2r C)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/r D)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/2r E)   /2r <div style=padding-top: 35px> /r
B) <strong><sub>2.</sub> The circuit is completed by connecting the negative terminals.If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:</strong> A)   /r B)   /2r C)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/r D)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/2r E)   /2r <div style=padding-top: 35px> /2r
C)( <strong><sub>2.</sub> The circuit is completed by connecting the negative terminals.If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:</strong> A)   /r B)   /2r C)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/r D)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/2r E)   /2r <div style=padding-top: 35px> 2 -
<strong><sub>2.</sub> The circuit is completed by connecting the negative terminals.If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:</strong> A)   /r B)   /2r C)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/r D)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/2r E)   /2r <div style=padding-top: 35px> 1)
<strong><sub>2.</sub> The circuit is completed by connecting the negative terminals.If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:</strong> A)   /r B)   /2r C)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/r D)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/2r E)   /2r <div style=padding-top: 35px>
1/r
D)( <strong><sub>2.</sub> The circuit is completed by connecting the negative terminals.If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:</strong> A)   /r B)   /2r C)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/r D)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/2r E)   /2r <div style=padding-top: 35px> 2 -
<strong><sub>2.</sub> The circuit is completed by connecting the negative terminals.If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:</strong> A)   /r B)   /2r C)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/r D)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/2r E)   /2r <div style=padding-top: 35px> 1)
<strong><sub>2.</sub> The circuit is completed by connecting the negative terminals.If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:</strong> A)   /r B)   /2r C)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/r D)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/2r E)   /2r <div style=padding-top: 35px>
1/2r
E) <strong><sub>2.</sub> The circuit is completed by connecting the negative terminals.If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:</strong> A)   /r B)   /2r C)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/r D)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/2r E)   /2r <div style=padding-top: 35px> /2r
سؤال
To make a galvanometer into an ammeter, connect:

A)a high resistance in parallel
B)a high resistance in series
C)a low resistance in series
D)a low resistance in parallel
E)a source of emf in series
سؤال
A certain voltmeter has an internal resistance of 10,000 Ω\Omega and a range from 0 to 100 V.To give it a range from 0 to 1000 V, one should connect:

A)100,000 Ω\Omega in series
B)100,000 Ω\Omega in parallel
C)1000 Ω\Omega in series
D)1000 Ω\Omega in parallel
E)90,000 Ω\Omega in series
سؤال
Resistor 1 has twice the resistance of resistor 2.The two are connected in parallel and a potential difference is maintained across the combination.The rate of thermal energy dissipation in 1 is:

A)the same as that in 2
B)twice that in 2
C)half that in 2
D)four times that in 2
E)one fourth that in 2
سؤال
A 3- Ω\Omega and a 1.5- Ω\Omega resistor are wired in parallel and the combination is wired in series to a 4- Ω\Omega resistor and a 10-V emf device.The potential difference across the 3- Ω\Omega resistor is:

A)2.0 V
B)6.0 V
C)8.0 V
D)10 V
E)12 V
سؤال
For any circuit the number of independent equations containing emf's, resistances, and currents equals:

A)the number of junctions
B)the number of junctions minus 1
C)the number of branches
D)the number of branches minus 1
E)the number of closed loops
سؤال
The equivalent resistance between points 1 and 2 of the circuit shown is:  <strong>The equivalent resistance between points 1 and 2 of the circuit shown is:  </strong> A)2.5 \Omega  B)4.0  \Omega  C)5.0 \Omega  D)6.5  \Omega  E)16 \Omega  <div style=padding-top: 35px>

A)2.5 Ω\Omega
B)4.0 Ω\Omega
C)5.0 Ω\Omega
D)6.5 Ω\Omega
E)16 Ω\Omega
سؤال
Two identical batteries, each with an emf of 18 V and an internal resistance of 1 Ω\Omega , are wired in parallel by connecting their positive terminals together and connecting their negative terminals together.The combination is then wired across a 4- Ω\Omega resistor.The current in the 4- Ω\Omega resistor is:

A)2.0 A
B)3.6 A
C)4.0 A
D)7.2 A
E)9.0 A
سؤال
If a circuit has L closed loops, B branches, and J junctions the number of independent loop equations is:

A)B - J + 1
B)B - J
C)B
D)L
E)L - J
سؤال
When switch S is open, the ammeter in the circuit shown reads 2.0 A.When S is closed, the ammeter reading: <strong>When switch S is open, the ammeter in the circuit shown reads 2.0 A.When S is closed, the ammeter reading:  </strong> A)increases slightly B)remains the same C)decreases slightly D)doubles E)halves <div style=padding-top: 35px>

A)increases slightly
B)remains the same
C)decreases slightly
D)doubles
E)halves
سؤال
The circuit shown was wired for the purpose of measuring the resistance of the lamp L.Inspection shows that: <strong>The circuit shown was wired for the purpose of measuring the resistance of the lamp L.Inspection shows that:  </strong> A)voltmeter V and rheostat R should be interchanged B)the circuit is satisfactory C)the ammeter A should be in parallel with R, not L D)the meters, V and A, should be interchanged E)L and V should be interchanged <div style=padding-top: 35px>

A)voltmeter V and rheostat R should be interchanged
B)the circuit is satisfactory
C)the ammeter A should be in parallel with R, not L
D)the meters, V and A, should be interchanged
E)L and V should be interchanged
سؤال
The current in the 5.0- Ω\Omega resistor in the circuit shown is:  <strong>The current in the 5.0- \Omega resistor in the circuit shown is:  </strong> A)0.42 A B)0.67 A C)1.5 A D)2.4 A E)3.0 A <div style=padding-top: 35px>

A)0.42 A
B)0.67 A
C)1.5 A
D)2.4 A
E)3.0 A
سؤال
A certain galvanometer has a resistance of 100 Ω\Omega and requires 1 mA for full scale deflection.To make this into a voltmeter reading 1 V full scale, connect a resistance of:

A)1000 Ω\Omega in parallel
B)900 Ω\Omega in series
C)1000 Ω\Omega in series
D)10 Ω\Omega in parallel
E)0.1 Ω\Omega in series
سؤال
In the diagrams, all light bulbs are identical and all emf devices are identical.In which circuit (I, II, III, IV, V)will the bulbs glow with the same brightness as in circuit X? <strong>In the diagrams, all light bulbs are identical and all emf devices are identical.In which circuit (I, II, III, IV, V)will the bulbs glow with the same brightness as in circuit X?  </strong> A)I B)II C)III D)IV E)V <div style=padding-top: 35px>

A)I
B)II
C)III
D)IV
E)V
سؤال
Two identical batteries, each with an emf of 18 V and an internal resistance of 1 Ω\Omega , are wired in parallel by connecting their positive terminals together and connecting their negative terminals together.The combination is then wired across a 4- Ω\Omega resistor.The current in each battery is:

A)1.0 A
B)2.0 A
C)3.6 A
D)4.0 A
E)4.5 A
سؤال
Each of the resistors in the diagram is 12 Ω\Omega .The resistance of the entire circuit is:  <strong>Each of the resistors in the diagram is 12  \Omega .The resistance of the entire circuit is:  </strong> A)5.8  \Omega  B)25  \Omega  C)48  \Omega  D)120 \Omega  E)none of these <div style=padding-top: 35px>

A)5.8 Ω\Omega
B)25 Ω\Omega
C)48 Ω\Omega
D)120 Ω\Omega
E)none of these
سؤال
In the figure, voltmeter V1 reads 600 V, voltmeter V2 reads 580 V, and ammeter A reads 100 A.The power wasted in the transmission line connecting the power house to the consumer is: <strong>In the figure, voltmeter V<sub>1</sub> reads 600 V, voltmeter V<sub>2</sub> reads 580 V, and ammeter A reads 100 A.The power wasted in the transmission line connecting the power house to the consumer is:  </strong> A)1 kW B)2 kW C)58 kW D)59 kW E)60 kW <div style=padding-top: 35px>

A)1 kW
B)2 kW
C)58 kW
D)59 kW
E)60 kW
سؤال
A 3- Ω\Omega and a 1.5- Ω\Omega resistor are wired in parallel and the combination is wired in series to a 4- Ω\Omega resistor and a 10-V emf device.The current in the 3- Ω\Omega resistor is:

A)0.33 A
B)0.67 A
C)2.0 A
D)3.3 A
E)6.7 A
سؤال
Resistor 1 has twice the resistance of resistor 2.They are connected in parallel to a battery.The ratio of the thermal energy dissipation by 1 to that by 2 is:

A)1:4
B)1:2
C)1:1
D)2:1
E)4:1
سؤال
In the diagrams, all light bulbs are identical and all emf devices are identical.In which circuit (I, II, III, IV, V)will the bulbs be dimmest? <strong>In the diagrams, all light bulbs are identical and all emf devices are identical.In which circuit (I, II, III, IV, V)will the bulbs be dimmest?  </strong> A)I B)II C)III D)IV E)V <div style=padding-top: 35px>

A)I
B)II
C)III
D)IV
E)V
سؤال
Two identical batteries, each with an emf of 18 V and an internal resistance of 1 Ω\Omega , are wired in parallel by connecting their positive terminals together and connecting their negative terminals together.The combination is then wired across a 4- Ω\Omega resistor.The potential difference across the 4- Ω\Omega resistor is:

A)4.0 V
B)8.0 V
C)14 V
D)16 V
E)29 V
سؤال
Four circuits have the form shown in the diagram.The capacitor is initially uncharged and the switch S is open. <strong>Four circuits have the form shown in the diagram.The capacitor is initially uncharged and the switch S is open.    Rank the circuits according to the current just after switch S is closed least to greatest.</strong> A)1, 2, 3, 4 B)4, 3, 2, 1 C)4, 2, 3, 1 D)4, 2, 1, 3 E)3, 1, 2, 4 <div style=padding-top: 35px> <strong>Four circuits have the form shown in the diagram.The capacitor is initially uncharged and the switch S is open.    Rank the circuits according to the current just after switch S is closed least to greatest.</strong> A)1, 2, 3, 4 B)4, 3, 2, 1 C)4, 2, 3, 1 D)4, 2, 1, 3 E)3, 1, 2, 4 <div style=padding-top: 35px> Rank the circuits according to the current just after switch S is closed least to greatest.

A)1, 2, 3, 4
B)4, 3, 2, 1
C)4, 2, 3, 1
D)4, 2, 1, 3
E)3, 1, 2, 4
سؤال
A certain capacitor, in series with a resistor, is being charged.At the end of 10 ms its charge is half the final value.The time constant for the process is about:

A)5.0 ms
B)6.9 ms
C)10 ms
D)14 ms
E)20 ms
سؤال
A certain voltmeter has an internal resistance of 10,000 Ω\Omega and a range from 0 to 12 V.To extend its range to 120 V, use a series resistance of:

A)1,111 Ω\Omega
B)90,000 Ω\Omega
C)100,000 Ω\Omega
D)108,000 Ω\Omega
E)120,000 Ω\Omega
سؤال
In the capacitor discharge formula q = q0e-t/RC the symbol t represents:

A)the time constant
B)the time it takes for C to lose the fraction 1/e of its initial charge
C)the time it takes for C to lose the fraction (1 - 1/e)of its initial charge
D)the time it takes for C to lose essentially all of its initial charge
E)none of the above
سؤال
A certain ammeter has an internal resistance of 1 Ω\Omega and a range from 0 to 50 mA.To make its range from 0 to 5 A, use:

A)a series resistance of 99 Ω\Omega
B)an extremely large (say 106 Ω\Omega series resistance
C)a resistance of 99 Ω\Omega in parallel
D)a resistance of 1/99 Ω\Omega in parallel
E)a resistance of 1/1000 Ω\Omega in parallel
سؤال
A certain capacitor, in series with a 720- Ω\Omega resistor, is being charged.At the end of 10 ms its charge is half the final value.The capacitance is about:

A)9.6 μ\mu F
B)14 μ\mu F
C)20 μ\mu F
D)7.2 F
E)10 F
سؤال
Suppose the current charging a capacitor is kept constant.Which graph below correctly gives the potential difference V across the capacitor as a function of time? <strong>Suppose the current charging a capacitor is kept constant.Which graph below correctly gives the potential difference V across the capacitor as a function of time?  </strong> A)I B)II C)III D)IV E)V <div style=padding-top: 35px>

A)I
B)II
C)III
D)IV
E)V
سؤال
An initially uncharged capacitor C is connected in series with resistor R.This combination is then connected to a battery of emf V0.Sufficient time elapses so that a steady state is reached.Which of the following statements is NOT true?

A)The time constant is independent of V0
B)The final charge on C is independent of R
C)The total energy dissipated by R is independent of R
D)The total energy dissipated by R is independent of V0
E)The initial current (just after the battery was connected)is independent of C
سؤال
A charged capacitor is being discharged through a resistor.At the end of one time constant the charge has been reduced by (1 - 1/e)= 63% of its initial value.At the end of two time constants the charge has been reduced by what percent of its initial value?

A)82%
B)86%
C)100%
D)between 90% and 100%
E)need to know more data to answer the question
سؤال
In the circuit shown, both resistors have the same value R.Suppose switch S is initially closed and capacitor C is charged.When switch S is then opened, the circuit has a time constant <strong>In the circuit shown, both resistors have the same value R.Suppose switch S is initially closed and capacitor C is charged.When switch S is then opened, the circuit has a time constant    <sub>a</sub>.Conversely, suppose S is initially open and capacitor C is uncharged.When switch S is then closed, the circuit has a time constant    <sub>b</sub>.The ratio    <sub>a</sub>/   <sub>b</sub> is:  </strong> A)0.5 B)0.67 C)1 D)1.5 E)2 <div style=padding-top: 35px> a.Conversely, suppose S is initially open and capacitor C is uncharged.When switch S is then closed, the circuit has a time constant 11ef00bf_7880_91f1_bc85_1792c21a71f3_TB6585_11 b.The ratio 11ef00bf_7880_91f1_bc85_1792c21a71f3_TB6585_11 a/ 11ef00bf_7880_91f1_bc85_1792c21a71f3_TB6585_11 b is: <strong>In the circuit shown, both resistors have the same value R.Suppose switch S is initially closed and capacitor C is charged.When switch S is then opened, the circuit has a time constant    <sub>a</sub>.Conversely, suppose S is initially open and capacitor C is uncharged.When switch S is then closed, the circuit has a time constant    <sub>b</sub>.The ratio    <sub>a</sub>/   <sub>b</sub> is:  </strong> A)0.5 B)0.67 C)1 D)1.5 E)2 <div style=padding-top: 35px>

A)0.5
B)0.67
C)1
D)1.5
E)2
سؤال
Four circuits have the form shown in the diagram.The capacitor is initially uncharged and the switch S is open. <strong>Four circuits have the form shown in the diagram.The capacitor is initially uncharged and the switch S is open.    Rank the circuits according to the time after switch S is closed for the capacitors to reach half their final charges, least to greatest.</strong> A)1, 2, 3, 4 B)2, 4, 3, 1 C)1, 3, 4, 2 D)4, 2, 1, 3 E)3, 1, 2, 4 <div style=padding-top: 35px> <strong>Four circuits have the form shown in the diagram.The capacitor is initially uncharged and the switch S is open.    Rank the circuits according to the time after switch S is closed for the capacitors to reach half their final charges, least to greatest.</strong> A)1, 2, 3, 4 B)2, 4, 3, 1 C)1, 3, 4, 2 D)4, 2, 1, 3 E)3, 1, 2, 4 <div style=padding-top: 35px> Rank the circuits according to the time after switch S is closed for the capacitors to reach half their final charges, least to greatest.

A)1, 2, 3, 4
B)2, 4, 3, 1
C)1, 3, 4, 2
D)4, 2, 1, 3
E)3, 1, 2, 4
سؤال
In the circuit shown, the capacitor is initially uncharged, and V = 10 V.At time t = 0, switch S is closed.If  <strong>In the circuit shown, the capacitor is initially uncharged, and V = 10 V.At time t = 0, switch S is closed.If    denotes the time constant, the approximate current through the 3   \mu   resistor when t =    /10 is:  </strong> A)0.50 A B)0.75 A C)1.0 A D)1.5 A E)3.0 A <div style=padding-top: 35px>  denotes the time constant, the approximate current through the 3 μ\mu resistor when t =  <strong>In the circuit shown, the capacitor is initially uncharged, and V = 10 V.At time t = 0, switch S is closed.If    denotes the time constant, the approximate current through the 3   \mu   resistor when t =    /10 is:  </strong> A)0.50 A B)0.75 A C)1.0 A D)1.5 A E)3.0 A <div style=padding-top: 35px>  /10 is:  <strong>In the circuit shown, the capacitor is initially uncharged, and V = 10 V.At time t = 0, switch S is closed.If    denotes the time constant, the approximate current through the 3   \mu   resistor when t =    /10 is:  </strong> A)0.50 A B)0.75 A C)1.0 A D)1.5 A E)3.0 A <div style=padding-top: 35px>

A)0.50 A
B)0.75 A
C)1.0 A
D)1.5 A
E)3.0 A
سؤال
The time constant RC has units of:

A)second/farad
B)second/ohm
C)1/second
D)second/watt
E)none of these
سؤال
Here is a loop equation: <strong>Here is a loop equation:   .What does this equation represent?</strong> A)a charging capacitor B)a discharging capacitor C)a capacitor that has been disconnected D)a charging resistor E)an oscillating circuit <div style=padding-top: 35px> .What does this equation represent?

A)a charging capacitor
B)a discharging capacitor
C)a capacitor that has been disconnected
D)a charging resistor
E)an oscillating circuit
سؤال
A galvanometer has an internal resistance of 12 Ω\Omega and requires 0.01 A for full scale deflection.To convert it to a voltmeter reading 3 V full scale, one must use a series resistance of:

A)102 Ω\Omega
B)288 Ω\Omega
C)300 Ω\Omega
D)360 Ω\Omega
E)412 Ω\Omega
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Deck 27: Circuits
1
Resistances of 2.0 Ω\Omega , 4.0 Ω\Omega , and 6.0 Ω\Omega and a 24-V emf device are all in series.The potential difference across the 2.0- Ω\Omega resistor is:

A)4 V
B)8 V
C)12 V
D)24 V
E)48 V
4 V
2
Resistances of 2.0 Ω\Omega , 4.0 Ω\Omega , and 6.0 Ω\Omega and a 24-V battery are all in series.The current in the 2.0 Ω\Omega resistor is:

A)12 A
B)4.0 A
C)2.4 A
D)2.0 A
E)0.50 A
2.0 A
3
A battery is connected across a series combination of two identical resistors.If the potential difference across the terminals is V and the current in the battery is i, then:

A)the potential difference across each resistor is V and the current in each resistor is i
B)the potential difference across each resistor is V/2 and the current in each resistor is i/2
C)the potential difference across each resistor is V and the current in each resistor is i/2
D)the potential difference across each resistor is V/2 and the current in each resistor is i
E)none of the above are true
the potential difference across each resistor is V/2 and the current in each resistor is i
4
A series circuit consists of a battery with internal resistance r and an external resistor R.If these two resistances are equal (r = R)then the energy dissipated per unit time by the internal resistance r is:

A)the same as by R
B)half that by R
C)twice that by R
D)one third that by R
E)unknown unless the emf is given
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5
Nine identical wires, each of diameter d and length L, are connected in series.The combination has the same resistance as a single similar wire of length L but whose diameter is:

A)9d
B)3d
C)d/3
D)d/9
E)d/81
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6
Two 110-V light bulbs, one labeled 25 W and the other 100 W, are connected in series to a 110 V source.Then:

A)the current in the 100-W bulb is greater than that in the 25-W bulb
B)the current in the 100-W bulb is less than that in the 25-W bulb
C)both bulbs will light with equal brightness
D)each bulb will have a potential difference of 55 V
E)none of the above
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7
The emf of a battery is equal to its terminal potential difference:

A)under all conditions
B)only when the battery is being charged
C)only when a large current is in the battery
D)only when there is no current in the battery
E)under no conditions
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8
A battery with an emf of 12 V and an internal resistance of 1 Ω\Omega is used to charge a battery with an emf of 10 V and an internal resistance of 1 Ω\Omega .The current in the circuit is:

A)1 A
B)2 A
C)4 A
D)11 A
E)22 A
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9
Four 20- Ω\Omega resistors are connected in series and the combination is connected to a 20-V emf device.The current in any one of the resistors is:

A)0.25 A
B)1.0 A
C)4.0 A
D)5.0 A
E)100 A
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10
An emf source is defined in terms of:

A)the force it exerts on charges
B)the work it does on charges
C)the electric field it generates
D)the current it generates
E)the charge it emits
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11
An ideal battery has an emf of 12 V.If it is connected to a circuit and creates a current of 4.0 A, what is the power?

A)0.3 W
B)3.0 W
C)36 W
D)48 W
E)cannot tell without knowing the resistance of the circuit
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12
The terminal potential difference of a battery is less than its emf:

A)under all conditions
B)only when the battery is being charged
C)only when the battery is being discharged
D)only when there is no current in the battery
E)under no conditions
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13
Four 20- Ω\Omega resistors are connected in series and the combination is connected to a 20-V emf device.The potential difference across any one of the resistors is:

A)1 V
B)4 V
C)5 V
D)20 V
E)80 V
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14
"The sum of the emf's and potential differences around a closed loop equals zero" is a consequence of:

A)Newton's third law
B)Ohm's law
C)Newton's second law
D)conservation of energy
E)conservation of charge
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15
The resistance of resistor 1 is twice the resistance of resistor 2.The two are connected in series and a potential difference is maintained across the combination.Then:

A)the current in 1 is twice that in 2
B)the current in 1 is half that in 2
C)the potential difference across 1 is twice that across 2
D)the potential difference across 1 is half that across 2
E)none of the above are true
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16
Two wires made of the same material have the same length but different diameters.They are connected in series to a battery.The quantity that is the same for the wires is:

A)the end-to-end potential difference
B)the current
C)the current density
D)the electric field
E)the electron drift velocity
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17
Two wires are made of the same material and have the same length but different radii.They are joined end-to-end and a potential difference is maintained across the combination.Of the following the quantity that is the same for both wires is:

A)potential difference
B)current
C)current density
D)electric field
E)conduction electron drift speed
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18
In the diagram R1 > R2 > R3.Rank the three resistors according to the current in them, least to greatest. <strong>In the diagram R<sub>1</sub> > R<sub>2</sub> > R<sub>3</sub>.Rank the three resistors according to the current in them, least to greatest.  </strong> A)1, 2, 3 B)3, 2, 1 C)1, 3, 2 D)3, 1, 2 E)All are the same

A)1, 2, 3
B)3, 2, 1
C)1, 3, 2
D)3, 1, 2
E)All are the same
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19
In the diagram, the current in the 3- Ω\Omega resistor is 4 A.The potential difference between points 1 and 2 is:  <strong>In the diagram, the current in the 3- \Omega  resistor is 4 A.The potential difference between points 1 and 2 is:  </strong> A)0.75 V B)0.8 V C)1.25 V D)12 V E)20 V

A)0.75 V
B)0.8 V
C)1.25 V
D)12 V
E)20 V
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20
Resistor 1 has twice the resistance of resistor 2.The two are connected in series and a potential difference is maintained across the combination.The rate of thermal energy dissipation in 1 is:

A)the same as that in 2
B)twice that in 2
C)half that in 2
D)four times that in 2
E)one fourth that in 2
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21
A 120-V power line is protected by a 15-A fuse.What is the maximum number of 120 V, 500 W light bulbs that can be operated at full brightness from this line?

A)1
B)2
C)3
D)4
E)5
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22
Four 20- Ω\Omega resistors are connected in parallel and the combination is connected to a 20-V emf device.The current in any one of the resistors is:

A)0.25 A
B)1.0 A
C)4.0 A
D)5.0 A
E)100 A
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23
A resistor with resistance R1 and a resistor with resistance R2 are connected in parallel to an ideal battery with emf <strong>A resistor with resistance R<sub>1</sub> and a resistor with resistance R<sub>2</sub> are connected in parallel to an ideal battery with emf   .The rate of thermal energy generation in the resistor with resistance R<sub>1</sub> is:</strong> A)   <sup>2</sup>/R<sub>1</sub> B)   <sup>2 </sup>R<sub>1</sub>/(R<sub>1</sub> + R<sub>2</sub>)<sup>2</sup> C)   <sup>2 </sup>/(R<sub>1</sub> + R<sub>2</sub>) D)   <sup>2</sup>/R<sub>2</sub> E)   .The rate of thermal energy generation in the resistor with resistance R1 is:

A) <strong>A resistor with resistance R<sub>1</sub> and a resistor with resistance R<sub>2</sub> are connected in parallel to an ideal battery with emf   .The rate of thermal energy generation in the resistor with resistance R<sub>1</sub> is:</strong> A)   <sup>2</sup>/R<sub>1</sub> B)   <sup>2 </sup>R<sub>1</sub>/(R<sub>1</sub> + R<sub>2</sub>)<sup>2</sup> C)   <sup>2 </sup>/(R<sub>1</sub> + R<sub>2</sub>) D)   <sup>2</sup>/R<sub>2</sub> E)   2/R1
B) <strong>A resistor with resistance R<sub>1</sub> and a resistor with resistance R<sub>2</sub> are connected in parallel to an ideal battery with emf   .The rate of thermal energy generation in the resistor with resistance R<sub>1</sub> is:</strong> A)   <sup>2</sup>/R<sub>1</sub> B)   <sup>2 </sup>R<sub>1</sub>/(R<sub>1</sub> + R<sub>2</sub>)<sup>2</sup> C)   <sup>2 </sup>/(R<sub>1</sub> + R<sub>2</sub>) D)   <sup>2</sup>/R<sub>2</sub> E)   2 R1/(R1 + R2)2
C) <strong>A resistor with resistance R<sub>1</sub> and a resistor with resistance R<sub>2</sub> are connected in parallel to an ideal battery with emf   .The rate of thermal energy generation in the resistor with resistance R<sub>1</sub> is:</strong> A)   <sup>2</sup>/R<sub>1</sub> B)   <sup>2 </sup>R<sub>1</sub>/(R<sub>1</sub> + R<sub>2</sub>)<sup>2</sup> C)   <sup>2 </sup>/(R<sub>1</sub> + R<sub>2</sub>) D)   <sup>2</sup>/R<sub>2</sub> E)   2 /(R1 + R2)
D) <strong>A resistor with resistance R<sub>1</sub> and a resistor with resistance R<sub>2</sub> are connected in parallel to an ideal battery with emf   .The rate of thermal energy generation in the resistor with resistance R<sub>1</sub> is:</strong> A)   <sup>2</sup>/R<sub>1</sub> B)   <sup>2 </sup>R<sub>1</sub>/(R<sub>1</sub> + R<sub>2</sub>)<sup>2</sup> C)   <sup>2 </sup>/(R<sub>1</sub> + R<sub>2</sub>) D)   <sup>2</sup>/R<sub>2</sub> E)   2/R2
E) <strong>A resistor with resistance R<sub>1</sub> and a resistor with resistance R<sub>2</sub> are connected in parallel to an ideal battery with emf   .The rate of thermal energy generation in the resistor with resistance R<sub>1</sub> is:</strong> A)   <sup>2</sup>/R<sub>1</sub> B)   <sup>2 </sup>R<sub>1</sub>/(R<sub>1</sub> + R<sub>2</sub>)<sup>2</sup> C)   <sup>2 </sup>/(R<sub>1</sub> + R<sub>2</sub>) D)   <sup>2</sup>/R<sub>2</sub> E)
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24
A battery of emf 24 V is connected to a 6- Ω\Omega resistor.As a result, current of 3 A exists in the resistor.The terminal potential difference of the battery is:

A)0 V
B)6 V
C)12 V
D)18 V
E)24 V
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25
A portion of a circuit is shown, with the values of the currents given for some branches.What is the direction and value of the current i?  <strong>A portion of a circuit is shown, with the values of the currents given for some branches.What is the direction and value of the current i?  </strong> A)  \downarrow  , 6A B)  \uparrow  , 6A C)  \downarrow  , 4A D)  \uparrow  , 4A E)  \downarrow  , 2A

A)" \downarrow , 6A"
B)" \uparrow , 6A"
C)" \downarrow , 4A"
D)" \uparrow , 4A"
E)" \downarrow , 2A"
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26
A total resistance of 3.0 Ω\Omega is to be produced by combining an unknown resistor R with a 12 Ω\Omega resistor.What is the value of R and how is it to be connected to the 12 Ω\Omega resistor?

A)2.4 Ω\Omega , parallel
B)2.4 Ω\Omega , series
C)4.0 Ω\Omega , parallel
D)4.0 Ω\Omega , series
E)9.0 Ω\Omega , series
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27
A battery is connected across a parallel combination of two identical resistors.If the potential difference across the terminals is V and the current in the battery is i, then:

A)the potential difference across each resistor is V and the current in each resistor is i
B)the potential difference across each resistor is V/2 and the current in each resistor is i/2
C)the potential difference across each resistor is V and the current in each resistor is i/2
D)the potential difference across each resistor is V/2 and the current in each resistor is i
E)none of the above are true
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28
In the context of the loop and junctions rules for electrical circuits a junction is:

A)where a wire is connected to a resistor
B)where a wire is connected to a battery
C)where only two wires are joined
D)where three or more wires are joined
E)where a wire is bent
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29
Four wires meet at a junction.The first carries 4 A into the junction, the second carries 5 A out of the junction, and the third carries 2 A out of the junction.The fourth carries:

A)7 A out of the junction
B)7 A into the junction
C)3 A out of the junction
D)3 A into the junction
E)1 A into the junction
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30
Two wires made of the same material have the same length but different diameter.They are connected in parallel to a battery.The quantity that is NOT the same for the wires is:

A)the end-to-end potential difference
B)the current
C)the current density
D)the electric field
E)the electron drift velocity
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31
The positive terminals of two batteries with emf's of <strong>The positive terminals of two batteries with emf's of   and  , respectively, are connected together. Here   > https://d2lvgg3v3hfg70.cloudfront.net/TB6585/ . The circuit is completed by connecting the negative terminals. If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:  </strong> A)A B)B C)C D)D E)E and <strong>The positive terminals of two batteries with emf's of   and  , respectively, are connected together. Here   > https://d2lvgg3v3hfg70.cloudfront.net/TB6585/ . The circuit is completed by connecting the negative terminals. If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:  </strong> A)A B)B C)C D)D E)E , respectively, are connected together. Here 11ec7f5a_ca78_ef7f_b078_11738fe4a163_TB6585_11 > https://d2lvgg3v3hfg70.cloudfront.net/TB6585/11ec7f5a_f26b_fc80_b078_d10fb369d738_TB6585_11. The circuit is completed by connecting the negative terminals. If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:
<strong>The positive terminals of two batteries with emf's of   and  , respectively, are connected together. Here   > https://d2lvgg3v3hfg70.cloudfront.net/TB6585/ . The circuit is completed by connecting the negative terminals. If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:  </strong> A)A B)B C)C D)D E)E

A)A
B)B
C)C
D)D
E)E
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32
Resistances of 2.0 Ω\Omega , 4.0 Ω\Omega , and 6.0 Ω\Omega and a 24-V emf device are all in series.The circuit is initially ungrounded.After grounding, the current in the circuit:

A)increases
B)decreases
C)does not change
D)depends on where in the circuit the ground wire is attached
E)depends on what the circuit is grounded to
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33
A battery has an emf of 9 V and an internal resistance of 2 Ω\Omega .If the potential difference across its terminals is greater than 9 V:

A)it must be connected across a large external resistance
B)it must be connected across a small external resistance
C)the current must be out of the positive terminal
D)the current must be out of the negative terminal
E)the current must be zero
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34
In an antique automobile, a 6-V battery supplies a total of 48 W to two identical headlights in parallel.The resistance of each bulb is:

A)0.75 Ω
B)1.5 Ω
C)3 Ω
D)4 Ω
E)8 Ω
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35
The resistance of resistor 1 is twice the resistance of resistor 2.The two are connected in parallel and a potential difference is maintained across the combination.Then:

A)the current in 1 is twice that in 2
B)the current in 1 is half that in 2
C)the potential difference across 1 is twice that across 2
D)the potential difference across 1 is half that across 2
E)none of the above are true
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36
Four 20- Ω\Omega resistors are connected in parallel and the combination is connected to a 20-V emf device.The current in the device is:

A)0.25 A
B)1.0 A
C)4.0 A
D)5.0 A
E)100 A
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37
A battery of emf 24 V is connected to a 6.0- Ω\Omega resistor.As a result, current of 3.0 A exists in the resistor.The rate at which energy is being dissipated in the battery is:

A)3.0 W
B)6.0 W
C)18 W
D)54 W
E)72 W
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38
By using only two resistors, R1 and R2 a student is able to obtain resistances of 3 Ω\Omega , 4 Ω\Omega , 12 Ω\Omega , and 16 Ω\Omega .The values of R1 and R2 are:

A)3 Ω\Omega , 4 Ω\Omega
B)2 Ω\Omega , 12 Ω\Omega
C)3 Ω\Omega , 16 Ω\Omega
D)4 Ω\Omega , 12 Ω\Omega
E)4 Ω\Omega , 16 Ω\Omega
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39
"The sum of the currents into a junction equals the sum of the currents out of the junction" is a consequence of:

A)Newton's third law
B)Ohm's law
C)Newton's second law
D)conservation of energy
E)conservation of charge
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40
2. The circuit is completed by connecting the negative terminals.If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:

A) <strong><sub>2.</sub> The circuit is completed by connecting the negative terminals.If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:</strong> A)   /r B)   /2r C)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/r D)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/2r E)   /2r /r
B) <strong><sub>2.</sub> The circuit is completed by connecting the negative terminals.If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:</strong> A)   /r B)   /2r C)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/r D)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/2r E)   /2r /2r
C)( <strong><sub>2.</sub> The circuit is completed by connecting the negative terminals.If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:</strong> A)   /r B)   /2r C)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/r D)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/2r E)   /2r 2 -
<strong><sub>2.</sub> The circuit is completed by connecting the negative terminals.If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:</strong> A)   /r B)   /2r C)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/r D)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/2r E)   /2r 1)
<strong><sub>2.</sub> The circuit is completed by connecting the negative terminals.If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:</strong> A)   /r B)   /2r C)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/r D)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/2r E)   /2r
1/r
D)( <strong><sub>2.</sub> The circuit is completed by connecting the negative terminals.If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:</strong> A)   /r B)   /2r C)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/r D)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/2r E)   /2r 2 -
<strong><sub>2.</sub> The circuit is completed by connecting the negative terminals.If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:</strong> A)   /r B)   /2r C)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/r D)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/2r E)   /2r 1)
<strong><sub>2.</sub> The circuit is completed by connecting the negative terminals.If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:</strong> A)   /r B)   /2r C)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/r D)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/2r E)   /2r
1/2r
E) <strong><sub>2.</sub> The circuit is completed by connecting the negative terminals.If each battery has an internal resistance of r, the rate in watts at which electrical energy is converted to chemical energy in the smaller battery is:</strong> A)   /r B)   /2r C)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/r D)(   <sub>2</sub> -   <sub>1</sub>)   <sub> </sub> <sub> </sub><sub>1</sub>/2r E)   /2r /2r
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41
To make a galvanometer into an ammeter, connect:

A)a high resistance in parallel
B)a high resistance in series
C)a low resistance in series
D)a low resistance in parallel
E)a source of emf in series
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42
A certain voltmeter has an internal resistance of 10,000 Ω\Omega and a range from 0 to 100 V.To give it a range from 0 to 1000 V, one should connect:

A)100,000 Ω\Omega in series
B)100,000 Ω\Omega in parallel
C)1000 Ω\Omega in series
D)1000 Ω\Omega in parallel
E)90,000 Ω\Omega in series
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43
Resistor 1 has twice the resistance of resistor 2.The two are connected in parallel and a potential difference is maintained across the combination.The rate of thermal energy dissipation in 1 is:

A)the same as that in 2
B)twice that in 2
C)half that in 2
D)four times that in 2
E)one fourth that in 2
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44
A 3- Ω\Omega and a 1.5- Ω\Omega resistor are wired in parallel and the combination is wired in series to a 4- Ω\Omega resistor and a 10-V emf device.The potential difference across the 3- Ω\Omega resistor is:

A)2.0 V
B)6.0 V
C)8.0 V
D)10 V
E)12 V
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45
For any circuit the number of independent equations containing emf's, resistances, and currents equals:

A)the number of junctions
B)the number of junctions minus 1
C)the number of branches
D)the number of branches minus 1
E)the number of closed loops
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46
The equivalent resistance between points 1 and 2 of the circuit shown is:  <strong>The equivalent resistance between points 1 and 2 of the circuit shown is:  </strong> A)2.5 \Omega  B)4.0  \Omega  C)5.0 \Omega  D)6.5  \Omega  E)16 \Omega

A)2.5 Ω\Omega
B)4.0 Ω\Omega
C)5.0 Ω\Omega
D)6.5 Ω\Omega
E)16 Ω\Omega
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47
Two identical batteries, each with an emf of 18 V and an internal resistance of 1 Ω\Omega , are wired in parallel by connecting their positive terminals together and connecting their negative terminals together.The combination is then wired across a 4- Ω\Omega resistor.The current in the 4- Ω\Omega resistor is:

A)2.0 A
B)3.6 A
C)4.0 A
D)7.2 A
E)9.0 A
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48
If a circuit has L closed loops, B branches, and J junctions the number of independent loop equations is:

A)B - J + 1
B)B - J
C)B
D)L
E)L - J
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49
When switch S is open, the ammeter in the circuit shown reads 2.0 A.When S is closed, the ammeter reading: <strong>When switch S is open, the ammeter in the circuit shown reads 2.0 A.When S is closed, the ammeter reading:  </strong> A)increases slightly B)remains the same C)decreases slightly D)doubles E)halves

A)increases slightly
B)remains the same
C)decreases slightly
D)doubles
E)halves
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50
The circuit shown was wired for the purpose of measuring the resistance of the lamp L.Inspection shows that: <strong>The circuit shown was wired for the purpose of measuring the resistance of the lamp L.Inspection shows that:  </strong> A)voltmeter V and rheostat R should be interchanged B)the circuit is satisfactory C)the ammeter A should be in parallel with R, not L D)the meters, V and A, should be interchanged E)L and V should be interchanged

A)voltmeter V and rheostat R should be interchanged
B)the circuit is satisfactory
C)the ammeter A should be in parallel with R, not L
D)the meters, V and A, should be interchanged
E)L and V should be interchanged
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51
The current in the 5.0- Ω\Omega resistor in the circuit shown is:  <strong>The current in the 5.0- \Omega resistor in the circuit shown is:  </strong> A)0.42 A B)0.67 A C)1.5 A D)2.4 A E)3.0 A

A)0.42 A
B)0.67 A
C)1.5 A
D)2.4 A
E)3.0 A
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52
A certain galvanometer has a resistance of 100 Ω\Omega and requires 1 mA for full scale deflection.To make this into a voltmeter reading 1 V full scale, connect a resistance of:

A)1000 Ω\Omega in parallel
B)900 Ω\Omega in series
C)1000 Ω\Omega in series
D)10 Ω\Omega in parallel
E)0.1 Ω\Omega in series
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53
In the diagrams, all light bulbs are identical and all emf devices are identical.In which circuit (I, II, III, IV, V)will the bulbs glow with the same brightness as in circuit X? <strong>In the diagrams, all light bulbs are identical and all emf devices are identical.In which circuit (I, II, III, IV, V)will the bulbs glow with the same brightness as in circuit X?  </strong> A)I B)II C)III D)IV E)V

A)I
B)II
C)III
D)IV
E)V
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54
Two identical batteries, each with an emf of 18 V and an internal resistance of 1 Ω\Omega , are wired in parallel by connecting their positive terminals together and connecting their negative terminals together.The combination is then wired across a 4- Ω\Omega resistor.The current in each battery is:

A)1.0 A
B)2.0 A
C)3.6 A
D)4.0 A
E)4.5 A
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55
Each of the resistors in the diagram is 12 Ω\Omega .The resistance of the entire circuit is:  <strong>Each of the resistors in the diagram is 12  \Omega .The resistance of the entire circuit is:  </strong> A)5.8  \Omega  B)25  \Omega  C)48  \Omega  D)120 \Omega  E)none of these

A)5.8 Ω\Omega
B)25 Ω\Omega
C)48 Ω\Omega
D)120 Ω\Omega
E)none of these
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56
In the figure, voltmeter V1 reads 600 V, voltmeter V2 reads 580 V, and ammeter A reads 100 A.The power wasted in the transmission line connecting the power house to the consumer is: <strong>In the figure, voltmeter V<sub>1</sub> reads 600 V, voltmeter V<sub>2</sub> reads 580 V, and ammeter A reads 100 A.The power wasted in the transmission line connecting the power house to the consumer is:  </strong> A)1 kW B)2 kW C)58 kW D)59 kW E)60 kW

A)1 kW
B)2 kW
C)58 kW
D)59 kW
E)60 kW
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57
A 3- Ω\Omega and a 1.5- Ω\Omega resistor are wired in parallel and the combination is wired in series to a 4- Ω\Omega resistor and a 10-V emf device.The current in the 3- Ω\Omega resistor is:

A)0.33 A
B)0.67 A
C)2.0 A
D)3.3 A
E)6.7 A
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58
Resistor 1 has twice the resistance of resistor 2.They are connected in parallel to a battery.The ratio of the thermal energy dissipation by 1 to that by 2 is:

A)1:4
B)1:2
C)1:1
D)2:1
E)4:1
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59
In the diagrams, all light bulbs are identical and all emf devices are identical.In which circuit (I, II, III, IV, V)will the bulbs be dimmest? <strong>In the diagrams, all light bulbs are identical and all emf devices are identical.In which circuit (I, II, III, IV, V)will the bulbs be dimmest?  </strong> A)I B)II C)III D)IV E)V

A)I
B)II
C)III
D)IV
E)V
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60
Two identical batteries, each with an emf of 18 V and an internal resistance of 1 Ω\Omega , are wired in parallel by connecting their positive terminals together and connecting their negative terminals together.The combination is then wired across a 4- Ω\Omega resistor.The potential difference across the 4- Ω\Omega resistor is:

A)4.0 V
B)8.0 V
C)14 V
D)16 V
E)29 V
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61
Four circuits have the form shown in the diagram.The capacitor is initially uncharged and the switch S is open. <strong>Four circuits have the form shown in the diagram.The capacitor is initially uncharged and the switch S is open.    Rank the circuits according to the current just after switch S is closed least to greatest.</strong> A)1, 2, 3, 4 B)4, 3, 2, 1 C)4, 2, 3, 1 D)4, 2, 1, 3 E)3, 1, 2, 4 <strong>Four circuits have the form shown in the diagram.The capacitor is initially uncharged and the switch S is open.    Rank the circuits according to the current just after switch S is closed least to greatest.</strong> A)1, 2, 3, 4 B)4, 3, 2, 1 C)4, 2, 3, 1 D)4, 2, 1, 3 E)3, 1, 2, 4 Rank the circuits according to the current just after switch S is closed least to greatest.

A)1, 2, 3, 4
B)4, 3, 2, 1
C)4, 2, 3, 1
D)4, 2, 1, 3
E)3, 1, 2, 4
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62
A certain capacitor, in series with a resistor, is being charged.At the end of 10 ms its charge is half the final value.The time constant for the process is about:

A)5.0 ms
B)6.9 ms
C)10 ms
D)14 ms
E)20 ms
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63
A certain voltmeter has an internal resistance of 10,000 Ω\Omega and a range from 0 to 12 V.To extend its range to 120 V, use a series resistance of:

A)1,111 Ω\Omega
B)90,000 Ω\Omega
C)100,000 Ω\Omega
D)108,000 Ω\Omega
E)120,000 Ω\Omega
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64
In the capacitor discharge formula q = q0e-t/RC the symbol t represents:

A)the time constant
B)the time it takes for C to lose the fraction 1/e of its initial charge
C)the time it takes for C to lose the fraction (1 - 1/e)of its initial charge
D)the time it takes for C to lose essentially all of its initial charge
E)none of the above
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65
A certain ammeter has an internal resistance of 1 Ω\Omega and a range from 0 to 50 mA.To make its range from 0 to 5 A, use:

A)a series resistance of 99 Ω\Omega
B)an extremely large (say 106 Ω\Omega series resistance
C)a resistance of 99 Ω\Omega in parallel
D)a resistance of 1/99 Ω\Omega in parallel
E)a resistance of 1/1000 Ω\Omega in parallel
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66
A certain capacitor, in series with a 720- Ω\Omega resistor, is being charged.At the end of 10 ms its charge is half the final value.The capacitance is about:

A)9.6 μ\mu F
B)14 μ\mu F
C)20 μ\mu F
D)7.2 F
E)10 F
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67
Suppose the current charging a capacitor is kept constant.Which graph below correctly gives the potential difference V across the capacitor as a function of time? <strong>Suppose the current charging a capacitor is kept constant.Which graph below correctly gives the potential difference V across the capacitor as a function of time?  </strong> A)I B)II C)III D)IV E)V

A)I
B)II
C)III
D)IV
E)V
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68
An initially uncharged capacitor C is connected in series with resistor R.This combination is then connected to a battery of emf V0.Sufficient time elapses so that a steady state is reached.Which of the following statements is NOT true?

A)The time constant is independent of V0
B)The final charge on C is independent of R
C)The total energy dissipated by R is independent of R
D)The total energy dissipated by R is independent of V0
E)The initial current (just after the battery was connected)is independent of C
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69
A charged capacitor is being discharged through a resistor.At the end of one time constant the charge has been reduced by (1 - 1/e)= 63% of its initial value.At the end of two time constants the charge has been reduced by what percent of its initial value?

A)82%
B)86%
C)100%
D)between 90% and 100%
E)need to know more data to answer the question
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70
In the circuit shown, both resistors have the same value R.Suppose switch S is initially closed and capacitor C is charged.When switch S is then opened, the circuit has a time constant <strong>In the circuit shown, both resistors have the same value R.Suppose switch S is initially closed and capacitor C is charged.When switch S is then opened, the circuit has a time constant    <sub>a</sub>.Conversely, suppose S is initially open and capacitor C is uncharged.When switch S is then closed, the circuit has a time constant    <sub>b</sub>.The ratio    <sub>a</sub>/   <sub>b</sub> is:  </strong> A)0.5 B)0.67 C)1 D)1.5 E)2 a.Conversely, suppose S is initially open and capacitor C is uncharged.When switch S is then closed, the circuit has a time constant 11ef00bf_7880_91f1_bc85_1792c21a71f3_TB6585_11 b.The ratio 11ef00bf_7880_91f1_bc85_1792c21a71f3_TB6585_11 a/ 11ef00bf_7880_91f1_bc85_1792c21a71f3_TB6585_11 b is: <strong>In the circuit shown, both resistors have the same value R.Suppose switch S is initially closed and capacitor C is charged.When switch S is then opened, the circuit has a time constant    <sub>a</sub>.Conversely, suppose S is initially open and capacitor C is uncharged.When switch S is then closed, the circuit has a time constant    <sub>b</sub>.The ratio    <sub>a</sub>/   <sub>b</sub> is:  </strong> A)0.5 B)0.67 C)1 D)1.5 E)2

A)0.5
B)0.67
C)1
D)1.5
E)2
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71
Four circuits have the form shown in the diagram.The capacitor is initially uncharged and the switch S is open. <strong>Four circuits have the form shown in the diagram.The capacitor is initially uncharged and the switch S is open.    Rank the circuits according to the time after switch S is closed for the capacitors to reach half their final charges, least to greatest.</strong> A)1, 2, 3, 4 B)2, 4, 3, 1 C)1, 3, 4, 2 D)4, 2, 1, 3 E)3, 1, 2, 4 <strong>Four circuits have the form shown in the diagram.The capacitor is initially uncharged and the switch S is open.    Rank the circuits according to the time after switch S is closed for the capacitors to reach half their final charges, least to greatest.</strong> A)1, 2, 3, 4 B)2, 4, 3, 1 C)1, 3, 4, 2 D)4, 2, 1, 3 E)3, 1, 2, 4 Rank the circuits according to the time after switch S is closed for the capacitors to reach half their final charges, least to greatest.

A)1, 2, 3, 4
B)2, 4, 3, 1
C)1, 3, 4, 2
D)4, 2, 1, 3
E)3, 1, 2, 4
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72
In the circuit shown, the capacitor is initially uncharged, and V = 10 V.At time t = 0, switch S is closed.If  <strong>In the circuit shown, the capacitor is initially uncharged, and V = 10 V.At time t = 0, switch S is closed.If    denotes the time constant, the approximate current through the 3   \mu   resistor when t =    /10 is:  </strong> A)0.50 A B)0.75 A C)1.0 A D)1.5 A E)3.0 A  denotes the time constant, the approximate current through the 3 μ\mu resistor when t =  <strong>In the circuit shown, the capacitor is initially uncharged, and V = 10 V.At time t = 0, switch S is closed.If    denotes the time constant, the approximate current through the 3   \mu   resistor when t =    /10 is:  </strong> A)0.50 A B)0.75 A C)1.0 A D)1.5 A E)3.0 A  /10 is:  <strong>In the circuit shown, the capacitor is initially uncharged, and V = 10 V.At time t = 0, switch S is closed.If    denotes the time constant, the approximate current through the 3   \mu   resistor when t =    /10 is:  </strong> A)0.50 A B)0.75 A C)1.0 A D)1.5 A E)3.0 A

A)0.50 A
B)0.75 A
C)1.0 A
D)1.5 A
E)3.0 A
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73
The time constant RC has units of:

A)second/farad
B)second/ohm
C)1/second
D)second/watt
E)none of these
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74
Here is a loop equation: <strong>Here is a loop equation:   .What does this equation represent?</strong> A)a charging capacitor B)a discharging capacitor C)a capacitor that has been disconnected D)a charging resistor E)an oscillating circuit .What does this equation represent?

A)a charging capacitor
B)a discharging capacitor
C)a capacitor that has been disconnected
D)a charging resistor
E)an oscillating circuit
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75
A galvanometer has an internal resistance of 12 Ω\Omega and requires 0.01 A for full scale deflection.To convert it to a voltmeter reading 3 V full scale, one must use a series resistance of:

A)102 Ω\Omega
B)288 Ω\Omega
C)300 Ω\Omega
D)360 Ω\Omega
E)412 Ω\Omega
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