A solenoid with 495 turns has a length of 7.50 cm and a cross-sectional area of 3.10 x 10-9 m2. Find the solenoid's inductance and the average emf around the solenoid if the current changes from +3.50 A to -3.50 A in 5.33 x 10-3 s. HINT Apply the expression for the self-inductance of a solenoid and the self-induced emf of an inductor. Click the hint button again to remove this hint. (a) the solenoid's inductance (in H) (b) the average emf around the solenoid (in V)
A solenoid with 495 turns has a length of 7.50 cm and a cross-sectional area of 3.10 x 10-9 m2. Find the solenoid's inductance and the average emf around the solenoid if the current changes from +3.50 A to -3.50 A in 5.33 x 10-3 s. HINT Apply the expression for the self-inductance of a solenoid and the self-induced emf of an inductor. Click the hint button again to remove this hint. (a) the solenoid's inductance (in H) (b) the average emf around the solenoid (in V)
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
Transcribed Image Text:A solenoid with 495 turns has a length of 7.50 cm and a cross-sectional area of 3.10 × 10-9 m2. Find the solenoid's inductance and the average emf around the solenoid if the current changes from +3.50 A to
-3.50 A in 5.33 x 10-3 s.
HINT
Apply the expression for the self-inductance of a solenoid and the self-induced emf of an inductor.
Click the hint button again to remove this hint.
(a) the solenoid's inductance (in H)
H
(b) the average emf around the solenoid (in V)
V
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