nsider a fnat rectangular coll 150 turms. This coll with the plane of the Coll parallel to the this applled field. Then thiS coll is rolated in 0.33 from parallel position to a position where its plane perpendicular to the applied field. The dimension of rectangular coil is given by 10 cm x 40 cm. (1) What is the total magnetic flux through the coil before it is rotated? (ii) What is the total magnetic flux through the coil after it is rotated? (iii) What is the magnitude of the average emf induced in this coil during this rotation? $E- dl = .E%3D dt , OB = B. A O a. (i) 0.90 Tm?, (1) 0.00 Tm?, (ii) 2.73 V O b. (1) 0.00 Tm?, (i) 9.00 Tm?, (ii) 27.30 V O . () 0.00 Tm?, (i) 0.90 Tm?, (ii) 2.73 V O d. () 0.90 Tm², (m) 0.00 Tm?, (ii) 2.73 V O e. () 0.90 Tm?, (i) 0.90 Tm?, (ii) 27.3 V

Principles of Physics: A Calculus-Based Text
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Chapter23: Faraday’s Law And Inductance
Section: Chapter Questions
Problem 4OQ: A circular loop of wire with a radius of 4.0 cm is in a uniform magnetic field of magnitude 0.060 T....
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Consider a flat rectangular coil with 150 turns. This coil is placed in a uniform magnetic field of 1.50 T with the plane of the coil parallel to the this applied field. Then this coil is rotated in 0.33 s
from parallel position to a position where its plane perpendicular to the applied field. The dimension of rectangular coil is given by 10 cm x 40 cm.
(i) What is the total magnetic flux through the coil before it is rotated?
(ii) What is the total magnetic flux through the coil after it is rotated?
(iii) What is the magnitude of the average emf induced in this coil during this rotation?
ƒ É- di
В.А
de E =
At, PB =
O a. (i) 0.90 Tm?, (ii) 0.00 Tm2, (ii) 2.73 V
O b. (i) 0.00 Tm², (ii) 9.00 Tm?, (ii) 27.30 V
O .(1) 0.00 Tm2, (i) 0.90 Tm?, (iii) 2.73 V
O d. (1) 0.90 Tm², (ii) 0.00 Tm?, (ii 2.73 V
O e. (1) 0.90 Tm?, (i) 0.90 Tm?, (iii) 27.3 V
Transcribed Image Text:Consider a flat rectangular coil with 150 turns. This coil is placed in a uniform magnetic field of 1.50 T with the plane of the coil parallel to the this applied field. Then this coil is rotated in 0.33 s from parallel position to a position where its plane perpendicular to the applied field. The dimension of rectangular coil is given by 10 cm x 40 cm. (i) What is the total magnetic flux through the coil before it is rotated? (ii) What is the total magnetic flux through the coil after it is rotated? (iii) What is the magnitude of the average emf induced in this coil during this rotation? ƒ É- di В.А de E = At, PB = O a. (i) 0.90 Tm?, (ii) 0.00 Tm2, (ii) 2.73 V O b. (i) 0.00 Tm², (ii) 9.00 Tm?, (ii) 27.30 V O .(1) 0.00 Tm2, (i) 0.90 Tm?, (iii) 2.73 V O d. (1) 0.90 Tm², (ii) 0.00 Tm?, (ii 2.73 V O e. (1) 0.90 Tm?, (i) 0.90 Tm?, (iii) 27.3 V
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