2. A square coil of resistance 4 Ω, 50 turns and side length 5 cm is placed with its plane making an angle of 400 with a uniform magnetic field of 2 T. In 4.5 s the coil rotates until its plane becomes parallel to the magnetic field. Find the current induced in the coil.

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Chapter25: Electromagnetic Induction
Section25.1: Electric Current From Changing Magnetic Fields
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2. A square coil of resistance 4 Ω, 50 turns and side length 5 cm is placed with its plane making an angle of 400 with a uniform magnetic field of 2 T. In 4.5 s the coil rotates until its plane becomes parallel to the magnetic field. Find the current induced in the coil.
2. A square coil of resistance 4 0, 50 turns and side length 5 cm is placed with its plane
making an angle of 40° with a uniform magnetic field of 2 T. In 4.5 s the coil rotates until
its plane becomes parallel to the magnetic field. Find the current induced in the coil.
3. Red light has a frequency of 4.0 x 1014 Hz.
a. Find the speed of red light in a vacuum if its wavelength is 7.5 x 107 m.
Transcribed Image Text:2. A square coil of resistance 4 0, 50 turns and side length 5 cm is placed with its plane making an angle of 40° with a uniform magnetic field of 2 T. In 4.5 s the coil rotates until its plane becomes parallel to the magnetic field. Find the current induced in the coil. 3. Red light has a frequency of 4.0 x 1014 Hz. a. Find the speed of red light in a vacuum if its wavelength is 7.5 x 107 m.
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