1. A diode will pass only. alternation of a sine wave. 2. A half-wave rectifier can produce positive or negative pulsating dc, depending on the that the diode is placed in the circuit. 3. A full-wave rectifier passes both of a sine wave.

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1. A diode will pass only
alternation of a sine wave.
2. A half-wave rectifier can produce positive or negative pulsating dc, depending on the
that the
diode is placed in the circuit.
of a sine wave.
4. In terms of polarity, the output of a full-wave rectifier has both alternations of the sine wave input
3. A full-wave rectifier passes both.
voltage going in the
direction.
5. What is the main advantage of full-wave rectifier over the half-wave rectifier?
6. The main advantage of the bridge rectifier over the standard full-wave rectifier is that it does not
require a
transformer.
7. When one of the diodes in the bridge circuit opens, one of the
will be missing at the output.
8. From the data, what conclusion can you draw about the relationship between the dc voltage across RL
and peak voltage in a full-wave rectifier?
Transcribed Image Text:1. A diode will pass only alternation of a sine wave. 2. A half-wave rectifier can produce positive or negative pulsating dc, depending on the that the diode is placed in the circuit. of a sine wave. 4. In terms of polarity, the output of a full-wave rectifier has both alternations of the sine wave input 3. A full-wave rectifier passes both. voltage going in the direction. 5. What is the main advantage of full-wave rectifier over the half-wave rectifier? 6. The main advantage of the bridge rectifier over the standard full-wave rectifier is that it does not require a transformer. 7. When one of the diodes in the bridge circuit opens, one of the will be missing at the output. 8. From the data, what conclusion can you draw about the relationship between the dc voltage across RL and peak voltage in a full-wave rectifier?
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