Deck 2: Separately Excited DC Generator

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Question
What happens if the field circuit is closed momentarily with the battery connections reversed?
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Question
The output voltage of a separately excited generator can be varied by adjusting the speed of the ____________________ or the field current.
Question
If the machine is stopped and then driven in the opposite direction, the ____________________ is cut in the opposite direction and the brush polarity changes.
Question
Brush polarity changes when the field current is zero.
Question
How can a field rheostat be used to vary the output voltage?
Question
The magnitude of the voltage depends on the rate at which the flux is cut.
Question
Residual flux is caused by the residual magnetism left in the ____________________.
Question
____________________ the resistance increases the output voltage.
Question
How is magnetic saturation achieved in a separately excited DC generator and what is the impact?
Question
In a separately excited generator, an output voltage increase is ____________________ to an increase in the armature speed.
Question
What causes residual flux?
Question
How is the upper limit of the voltage determined?
Question
If both the armature direction and the direction of the field current change, the brush polarity remains the same.
Question
Field control of the output voltage is accomplished by varying the total resistance of the field circuit with a field rheostat.
Question
The brush polarity in a separately excited generator cannot be changed by reversing the rotation of the armature or the direction of the field current.
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Deck 2: Separately Excited DC Generator
1
What happens if the field circuit is closed momentarily with the battery connections reversed?
If the field circuit is closed momentarily with the battery connections reversed, the residual flux reverses and the brush polarity reverses.
2
The output voltage of a separately excited generator can be varied by adjusting the speed of the ____________________ or the field current.
armature rotation
3
If the machine is stopped and then driven in the opposite direction, the ____________________ is cut in the opposite direction and the brush polarity changes.
Falseield flux
4
Brush polarity changes when the field current is zero.
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5
How can a field rheostat be used to vary the output voltage?
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6
The magnitude of the voltage depends on the rate at which the flux is cut.
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7
Residual flux is caused by the residual magnetism left in the ____________________.
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8
____________________ the resistance increases the output voltage.
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9
How is magnetic saturation achieved in a separately excited DC generator and what is the impact?
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10
In a separately excited generator, an output voltage increase is ____________________ to an increase in the armature speed.
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11
What causes residual flux?
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12
How is the upper limit of the voltage determined?
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13
If both the armature direction and the direction of the field current change, the brush polarity remains the same.
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14
Field control of the output voltage is accomplished by varying the total resistance of the field circuit with a field rheostat.
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15
The brush polarity in a separately excited generator cannot be changed by reversing the rotation of the armature or the direction of the field current.
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