A circular coil with a diameter of 14.1 cm is made up of thin wire wound into 736 turns. It is placed in a spatially constant magnetic field region such that its plane is oriented 17.3° with respect to the field. Suppose that the field is increasing at a rate of 18.9 mT/s, the magnitude of the induced emf in the coil is most nearly (A) 0.0249 mV. (B) 208 mV. (C) 0.0880 mV. (D) 259 mV. (E) 64.8 mV.

University Physics Volume 2
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Chapter13: Electromagnetic Induction
Section: Chapter Questions
Problem 24P: A 50-turn coil has a diameter of 15 cm. The coil is placed in a spatially uniform magnetic field of...
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A circular coil with a diameter of 14.1 cm is made up of thin
wire wound into 736 turns. It is placed in a spatially constant magnetic
field region such that its plane is oriented 17.3° with respect to the field.
Suppose that the field is increasing at a rate of 18.9 mT/s, the magnitude
of the induced emf in the coil is most nearly
(A) 0.0249 mV.
(B) 208 mV.
(C) 0.0880 mV.
(D) 259 mV.
(E) 64.8 mV.
Transcribed Image Text:A circular coil with a diameter of 14.1 cm is made up of thin wire wound into 736 turns. It is placed in a spatially constant magnetic field region such that its plane is oriented 17.3° with respect to the field. Suppose that the field is increasing at a rate of 18.9 mT/s, the magnitude of the induced emf in the coil is most nearly (A) 0.0249 mV. (B) 208 mV. (C) 0.0880 mV. (D) 259 mV. (E) 64.8 mV.
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