19. A long straight wire is parallel to one edge and is in the plane of a single-turn rectangular loop as shown in the Figure. If the loop is moving in the plane shown so that the distance y changes at a constant rate of 20 cm/s, what is the magnitude of the emf induced in the loop at the instant y = 5.0 cm? Let I= 50 A, a = 50 cm, b = 6 cm. a. 11 μν b. 22 μν C. 27 μν d. 16 μν e. 34 μν
19. A long straight wire is parallel to one edge and is in the plane of a single-turn rectangular loop as shown in the Figure. If the loop is moving in the plane shown so that the distance y changes at a constant rate of 20 cm/s, what is the magnitude of the emf induced in the loop at the instant y = 5.0 cm? Let I= 50 A, a = 50 cm, b = 6 cm. a. 11 μν b. 22 μν C. 27 μν d. 16 μν e. 34 μν
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![19. A long straight wire is parallel to one edge and is in the plane of a single-turn rectangular loop
as shown in the Figure. If the loop is moving in the plane shown so that the distance y changes
at a constant rate of 20 cm/s, what is the magnitude of the emf induced in the loop at the instant
y = 5.0 cm? Let I= 50 A, a = 50 cm, b = 6 cm.
a.
11 μν
b.
22 μν
C.
27 μν
d.
16 μν
e.
34 μν](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fd682b274-4e99-48cd-a523-5d9708c5a297%2Ff8c54d8f-0429-4712-90d6-6072d8f2e9f8%2Felxv5b_processed.png&w=3840&q=75)
Transcribed Image Text:19. A long straight wire is parallel to one edge and is in the plane of a single-turn rectangular loop
as shown in the Figure. If the loop is moving in the plane shown so that the distance y changes
at a constant rate of 20 cm/s, what is the magnitude of the emf induced in the loop at the instant
y = 5.0 cm? Let I= 50 A, a = 50 cm, b = 6 cm.
a.
11 μν
b.
22 μν
C.
27 μν
d.
16 μν
e.
34 μν
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