A circular coil with 6 loops of copper wire is placed in the horizontal plane. The magnetic field is uniform and is oriented 20 degrees above the plane of the loop. The radius of the loops of wire is 3.50 cm. If the magnetic field changes at a uniform rate of 12.0 mT/s, what is the absolute value of induced emf in the coil? QUESTION 6 OA 260 µV O B. None of the options given Oc 94.8 µV O D. 15.8 µV O E. 277 µV

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Can someone help ASAP both questions
A loop of wire ABCD with two circular and two straight segments carries a current I of 550 mA as shown below. The segment DC has a
radius of 16.0 cm and the segment AB has a radius of 9.00 cm. What is the net magnetic field at point P?
C
60
P.
O A. 1.00 µT, into the screen
O B. 1.68 µT, out of the screen
OC None of the given options
O D. 1 68 uT into the screen.
Transcribed Image Text:A loop of wire ABCD with two circular and two straight segments carries a current I of 550 mA as shown below. The segment DC has a radius of 16.0 cm and the segment AB has a radius of 9.00 cm. What is the net magnetic field at point P? C 60 P. O A. 1.00 µT, into the screen O B. 1.68 µT, out of the screen OC None of the given options O D. 1 68 uT into the screen.
A circular coil with 6 loops of copper wire is placed in the horizontal plane. The magnetic field is uniform and is oriented 20 degrees
above the plane of the loop. The radius of the loops of wire is 3.50 cm. If the magnetic field changes at a uniform rate of 12.0 mT/s,
what is the absolute value of induced emf in the coil?
QUESTION 6
OA 260 µV
O B. None of the options given
Oc 94.8 µV
O D. 15.8 µV
O E. 277 µV
Transcribed Image Text:A circular coil with 6 loops of copper wire is placed in the horizontal plane. The magnetic field is uniform and is oriented 20 degrees above the plane of the loop. The radius of the loops of wire is 3.50 cm. If the magnetic field changes at a uniform rate of 12.0 mT/s, what is the absolute value of induced emf in the coil? QUESTION 6 OA 260 µV O B. None of the options given Oc 94.8 µV O D. 15.8 µV O E. 277 µV
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