A rigid coil has a 4.00 cm radius and contains 500 turns. It is placed in a uniform magnetic field that varies with time according to the following equation: B = (0.0120 T/s)t + (3.00 × 10−5T/54)t4 The coil is connected to a 600 2 resistor and its plane is perpendicular to the magnetic field. You can ignore the internal resistance of the coil. Find: (a.) The magnitude of the induced emf in the coil as a function of time. Hint: put together an equation. (b.) What is the current in the resistor at a time t = 5.00 s?
A rigid coil has a 4.00 cm radius and contains 500 turns. It is placed in a uniform magnetic field that varies with time according to the following equation: B = (0.0120 T/s)t + (3.00 × 10−5T/54)t4 The coil is connected to a 600 2 resistor and its plane is perpendicular to the magnetic field. You can ignore the internal resistance of the coil. Find: (a.) The magnitude of the induced emf in the coil as a function of time. Hint: put together an equation. (b.) What is the current in the resistor at a time t = 5.00 s?
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![Q.04
A rigid coil has a 4.00 cm radius and contains 500 turns. It is placed in a uniform magnetic field that varies with time
according to the following equation:
5T/54)t4
B = (0.0120 T/s)t + (3.00 × 10-5 T
The coil is connected to a 600 2 resistor and its plane is perpendicular to the magnetic field. You can ignore the internal
resistance of the coil. Find:
(a.) The magnitude of the induced emf in the coil as a function of time. Hint: put together an equation.
(b.) What is the current in the resistor at a time t = 5.00 s?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb54c94dc-8fa5-45f1-a08b-382951c33f95%2F9b93446c-67b7-41c3-8bf1-7f21ab493395%2F28nw1ww_processed.png&w=3840&q=75)
Transcribed Image Text:Q.04
A rigid coil has a 4.00 cm radius and contains 500 turns. It is placed in a uniform magnetic field that varies with time
according to the following equation:
5T/54)t4
B = (0.0120 T/s)t + (3.00 × 10-5 T
The coil is connected to a 600 2 resistor and its plane is perpendicular to the magnetic field. You can ignore the internal
resistance of the coil. Find:
(a.) The magnitude of the induced emf in the coil as a function of time. Hint: put together an equation.
(b.) What is the current in the resistor at a time t = 5.00 s?
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