A circular coil 50 cm in diameter is rotating in a magnetic field directed upward with a magnitude of 65 mT. Calculate the magnetic flux of a (#13) and b (#14) through the coil at the positions shown below.

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Chapter13: Electromagnetic Induction
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Problem 43P: A 25-cm nod moves at 5.0 m/s in a plane perpendicular to a magnetic field of strength 0.25 T. The...
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A circular coil 50 cm in diameter is rotating in a magnetic field directed upward with a magnitude of 65 mT. Calculate the magnetic flux of a (#13) and b (#14) through the coil at the positions shown below.

For numbers 13-14.
A circular coil 50 cm in diameter
is rotating in a magnetic field
directed upward with a magnitude
of 65 mT. Calculate the magnetic
flux through the coil at the
positions shown below.
13. (a)
Α. 10.ο Τ.m2
(a) B
(b) B
7600
В. О.10 Wъ
С. 1.00 Т-n?
D. -0.01 Wb
14. (b)
A. 5.00 Wb
В. 50.0 Т-m?
С. о.05 Wb
D. 0.50 T·m²
Transcribed Image Text:For numbers 13-14. A circular coil 50 cm in diameter is rotating in a magnetic field directed upward with a magnitude of 65 mT. Calculate the magnetic flux through the coil at the positions shown below. 13. (a) Α. 10.ο Τ.m2 (a) B (b) B 7600 В. О.10 Wъ С. 1.00 Т-n? D. -0.01 Wb 14. (b) A. 5.00 Wb В. 50.0 Т-m? С. о.05 Wb D. 0.50 T·m²
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