Loop 1 has ng turns of wire and loop 2 has n2 turns of wire. If loop 2 is dropped and falls to loop 1 with constant acceleration, it is desirable to calculate the alpha current in loop 2. If the resistance of ring 2 is R. (During the fall, the two rings are always parallel). 2)
Loop 1 has ng turns of wire and loop 2 has n2 turns of wire. If loop 2 is dropped and falls to loop 1 with constant acceleration, it is desirable to calculate the alpha current in loop 2. If the resistance of ring 2 is R. (During the fall, the two rings are always parallel). 2)
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![Loop 1 has n1 turns of wire and loop 2 has n2 turns of wire. If loop 2 is dropped
and falls to loop 1 with constant acceleration, it is desirable to calculate the alpha
current in loop 2.
If the resistance of ring 2 is R.
(During the fall, the two rings are always parallel).](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb9376469-646c-451a-b619-c820d41e6835%2Fa37ef170-37b5-42ed-8cca-05947b792998%2Ff9t1y8a_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Loop 1 has n1 turns of wire and loop 2 has n2 turns of wire. If loop 2 is dropped
and falls to loop 1 with constant acceleration, it is desirable to calculate the alpha
current in loop 2.
If the resistance of ring 2 is R.
(During the fall, the two rings are always parallel).
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