2) A circular loop of radius 65cm rotates within a uniform 0.34T magnetic field. loop's normal vector is oriented at 84° with respect to the magnetic field and 2.7 s later makes an angle of 13° with the magnetic field. a. What is the change in magnetic flux through the loop during this time interval? b. What is the induced emf in the wire? 8 y = x 9₁ 9₂ 0.34 X27 = 0.918
2) A circular loop of radius 65cm rotates within a uniform 0.34T magnetic field. loop's normal vector is oriented at 84° with respect to the magnetic field and 2.7 s later makes an angle of 13° with the magnetic field. a. What is the change in magnetic flux through the loop during this time interval? b. What is the induced emf in the wire? 8 y = x 9₁ 9₂ 0.34 X27 = 0.918
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![2) A circular loop of radius 65cm rotates within a uniform 0.34T magnetic field.
loop's normal vector is oriented at 84° with respect to the magnetic field and 2.7 s later makes
an angle of 13° with the magnetic field.
a. What is the change in magnetic flux through the loop during this time interval?
b. What is the induced emf in the wire?
0.34 x2.7
B
V=K9₁ 92
=0.918](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fe1ed7099-18ad-4a4e-bdb3-91122be345cc%2F4f981868-ef4a-4072-86c5-edd3327240a2%2F9t5b0wm_processed.jpeg&w=3840&q=75)
Transcribed Image Text:2) A circular loop of radius 65cm rotates within a uniform 0.34T magnetic field.
loop's normal vector is oriented at 84° with respect to the magnetic field and 2.7 s later makes
an angle of 13° with the magnetic field.
a. What is the change in magnetic flux through the loop during this time interval?
b. What is the induced emf in the wire?
0.34 x2.7
B
V=K9₁ 92
=0.918
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