A very long, straight solenoid with a cross-sectional area of 2.27 cm² is wound with 91.5 turns of wire per centimeter. Starting at t = 0, the current in the solenoid is increasing according to i (t) = (0.163 A/s² )t². A secondary winding of 5 turns encircles the solenoid at its center, such that the secondary winding has the same cross-sectional area as the solenoid. Part A What is the magnitude the emf induced in the secondary winding at the instant that the current in the solenoid is 3.2 A ? Express your answer with the appropriate units. |E| = Submit PA Value Request Ap Units ?

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Problem 29.49
A very long, straight solenoid with a cross-sectional
area of 2.27 cm² is wound with 91.5 turns of wire
per centimeter. Starting at t = 0, the current in the
solenoid is increasing according to i (t) = ( 0.163
A/s² )t². A secondary winding of 5 turns encircles
the solenoid at its center, such that the secondary
winding has the same cross-sectional area as the
solenoid.
Part A
What is the magnitude of the emf induced in the secondary winding at the instant that the current in the solenoid is 3.2 A ?
Express your answer with the appropriate units.
|E| =
Submit
μÃ
Value
Provide Feedback
Request Answer
Units
?
<
4 of 15
Review | Constants
Next >
Transcribed Image Text:Problem 29.49 A very long, straight solenoid with a cross-sectional area of 2.27 cm² is wound with 91.5 turns of wire per centimeter. Starting at t = 0, the current in the solenoid is increasing according to i (t) = ( 0.163 A/s² )t². A secondary winding of 5 turns encircles the solenoid at its center, such that the secondary winding has the same cross-sectional area as the solenoid. Part A What is the magnitude of the emf induced in the secondary winding at the instant that the current in the solenoid is 3.2 A ? Express your answer with the appropriate units. |E| = Submit μà Value Provide Feedback Request Answer Units ? < 4 of 15 Review | Constants Next >
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