62. Alternating Current Alternating current is produced when an armature rotates about its axis in a magnetic field, as shown in the figure. Generators A and B rotate counterclock- wise at 60 Hz (cycles per second) and each generator pro- duces a maximum of 50 V. The voltage for each generator is modeled by E = 50 sin(12071) Eg = 50 sin 120nt - 4 (a) Find the voltage phase for each generator, and find the phase difference. (b) Are the generators producing voltage in phase? Through what angle should the armature in the second generator be rotated counterclockwise in order that the two genera- tors produce voltage in phase? - Magnets – N S Wire.

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62. Alternating Current Alternating current is produced when
an armature rotates about its axis in a magnetic field, as
shown in the figure. Generators A and B rotate counterclock-
wise at 60 Hz (cycles per second) and each generator pro-
duces a maximum of 50 V. The voltage for each generator is
modeled by
E = 50 sin(12071)
Eg = 50 sin 120nt -
4
(a) Find the voltage phase for each generator, and find the
phase difference.
(b) Are the generators producing voltage in phase? Through
what angle should the armature in the second generator
be rotated counterclockwise in order that the two genera-
tors produce voltage in phase?
- Magnets –
N
S
Wire.
Transcribed Image Text:62. Alternating Current Alternating current is produced when an armature rotates about its axis in a magnetic field, as shown in the figure. Generators A and B rotate counterclock- wise at 60 Hz (cycles per second) and each generator pro- duces a maximum of 50 V. The voltage for each generator is modeled by E = 50 sin(12071) Eg = 50 sin 120nt - 4 (a) Find the voltage phase for each generator, and find the phase difference. (b) Are the generators producing voltage in phase? Through what angle should the armature in the second generator be rotated counterclockwise in order that the two genera- tors produce voltage in phase? - Magnets – N S Wire.
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