EASE HELP ME CHOOSE WHAT CORRECT LETTER OR ANSWER 1. The direction of induced voltage in a conductor can be changed by a. increasing the field strength. d. decreasing conductor size. b. reversing the field direction. e. reversing meter connections. c. increasing conductor length. 2. Direct current can be supplied to a load by a loop of wire rotating through a field with the use of a. slip rings. b. c. brushes. electromagnets. d. commutator. e. conductor. 3. Induced voltage can be increased in magnitude by a. increasing the number of lines cut per second. b. using a commutator. c. using slip rings. d. decreasing conductor length. e. properly applying the left-hand generator rule.

Introductory Circuit Analysis (13th Edition)
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Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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PLEASE HELP ME CHOOSE WHAT CORRECT LETTER OR ANSWER
1. The direction of induced voltage in a conductor can be changed by
a. increasing the field strength.
b. reversing the field direction.
c. increasing conductor length.
d. decreasing conductor size.
e. reversing meter connections.
2. Direct current can be supplied to a load by a loop of wire rotating
through a field with the use of
a. slip rings.
b.
c. brushes.
electromagnets.
d. commutator.
e. conductor.
3. Induced voltage can be increased in magnitude by
a. increasing the number of lines cut per second.
b. using a commutator.
c. using slip rings.
d. decreasing conductor length.
e. properly applying the left-hand generator rule.
Transcribed Image Text:PLEASE HELP ME CHOOSE WHAT CORRECT LETTER OR ANSWER 1. The direction of induced voltage in a conductor can be changed by a. increasing the field strength. b. reversing the field direction. c. increasing conductor length. d. decreasing conductor size. e. reversing meter connections. 2. Direct current can be supplied to a load by a loop of wire rotating through a field with the use of a. slip rings. b. c. brushes. electromagnets. d. commutator. e. conductor. 3. Induced voltage can be increased in magnitude by a. increasing the number of lines cut per second. b. using a commutator. c. using slip rings. d. decreasing conductor length. e. properly applying the left-hand generator rule.
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