3. A square loop whose sides are 10 cm is placed inside a uniform magnetic field that is increasing at a rate of 0.5 T/s. (a) The magnetic field is initially pointing in the direction and the plane of the loop lies on the x-y plane. Find the magnitude of the induced emf. (b) If the loop is tilted such that it makes an angle of 30° with x-y plane, find the magnitude of the induced emf again.
3. A square loop whose sides are 10 cm is placed inside a uniform magnetic field that is increasing at a rate of 0.5 T/s. (a) The magnetic field is initially pointing in the direction and the plane of the loop lies on the x-y plane. Find the magnitude of the induced emf. (b) If the loop is tilted such that it makes an angle of 30° with x-y plane, find the magnitude of the induced emf again.
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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![3. A square loop whose sides are 10 cm is placed inside a uniform magnetic field that
is increasing at a rate of 0.5 T/s.
(a) The magnetic field is initially pointing in the z direction and the plane of the loop
lies on the x-y plane. Find the magnitude of the induced emf.
(b) If the loop is tilted such that it makes an angle of 30° with x-y plane, find the
magnitude of the induced emf again.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F4488d82d-9aac-4035-8259-a331a76b9b0b%2Fe2bdafd1-5677-41f6-af6c-ec1dc51c04d8%2Fbhzqdjh_processed.png&w=3840&q=75)
Transcribed Image Text:3. A square loop whose sides are 10 cm is placed inside a uniform magnetic field that
is increasing at a rate of 0.5 T/s.
(a) The magnetic field is initially pointing in the z direction and the plane of the loop
lies on the x-y plane. Find the magnitude of the induced emf.
(b) If the loop is tilted such that it makes an angle of 30° with x-y plane, find the
magnitude of the induced emf again.
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