Deck 10: Internal Resistance of Voltage Sources

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Question
A voltage source's internal resistance is effectively in __________ with its external load

A) series
B) parallel
C) series-parallel
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Question
The potential difference appearing across a voltage source's terminals, when there is no load connected is termed its

A) no-load voltage
B) open-circuit voltage
C) electromotive force
D) any of the above
Question
The potential difference appearing across a voltage source's terminals, when supplying a load, will be

A) lower than its e.m.f.
B) equal to its e.m.f.
C) greater than its e.m.f
Question
As the load increases, the terminal voltage of a voltage source will

A) decrease further
B) remain unaffected
C) increase further
Question
The sum of the voltage drops around any closed loop, including the internal voltage drop within a voltage source, is equal to the

A) internal voltage drop
B) e.m.f. of the voltage source
C) external voltage drop
Question
A battery has an e.m.f. of 12 V and an internal resistance of 500 milliohms. What will be its terminal voltage, when supplying a load of 20 ohms?

A) 0.293 V
B) 11.7 V
C) 12V
Question
If the load supplied by the battery, described above, should increase, what will happen to its terminal voltage?

A) It will decrease further
B) It will remain unchanged
C) It will increase
Question
What's likely to happen to the internal resistance of a generator when its load increases?

A) It will remain the same
B) It will increase, due to an increase in its temperature
C) It will decrease, due to a decrease in its temperature
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Deck 10: Internal Resistance of Voltage Sources
1
A voltage source's internal resistance is effectively in __________ with its external load

A) series
B) parallel
C) series-parallel
series
2
The potential difference appearing across a voltage source's terminals, when there is no load connected is termed its

A) no-load voltage
B) open-circuit voltage
C) electromotive force
D) any of the above
any of the above
3
The potential difference appearing across a voltage source's terminals, when supplying a load, will be

A) lower than its e.m.f.
B) equal to its e.m.f.
C) greater than its e.m.f
lower than its e.m.f.
4
As the load increases, the terminal voltage of a voltage source will

A) decrease further
B) remain unaffected
C) increase further
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5
The sum of the voltage drops around any closed loop, including the internal voltage drop within a voltage source, is equal to the

A) internal voltage drop
B) e.m.f. of the voltage source
C) external voltage drop
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6
A battery has an e.m.f. of 12 V and an internal resistance of 500 milliohms. What will be its terminal voltage, when supplying a load of 20 ohms?

A) 0.293 V
B) 11.7 V
C) 12V
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Unlock for access to all 8 flashcards in this deck.
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k this deck
7
If the load supplied by the battery, described above, should increase, what will happen to its terminal voltage?

A) It will decrease further
B) It will remain unchanged
C) It will increase
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8
What's likely to happen to the internal resistance of a generator when its load increases?

A) It will remain the same
B) It will increase, due to an increase in its temperature
C) It will decrease, due to a decrease in its temperature
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Unlock for access to all 8 flashcards in this deck.
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Unlock for access to all 8 flashcards in this deck.