A long, straight solenoid with a radius of rs = 3.0 cm and a length of y = 25 cm is wound with 1,500 closely packed turns of wire. The windings carry an upward current of I1 = 20 A that is delivered by a power supply. A conducting loop of radius re= 2.0 cm is inside the solenoid and is oriented parallel to the solenoid windings as shown in the figure below. Find the induced EMF in the conducting loop when the power supply is adjusted to increase the current in the solenoid to l2 = 35 A in a time of t= 0.40 s. Solenoid Axis O a. 0.624 volts O b.0.410 volts Oc. 0.714 volts O d.0.533 volts O e.0.255 volts
A long, straight solenoid with a radius of rs = 3.0 cm and a length of y = 25 cm is wound with 1,500 closely packed turns of wire. The windings carry an upward current of I1 = 20 A that is delivered by a power supply. A conducting loop of radius re= 2.0 cm is inside the solenoid and is oriented parallel to the solenoid windings as shown in the figure below. Find the induced EMF in the conducting loop when the power supply is adjusted to increase the current in the solenoid to l2 = 35 A in a time of t= 0.40 s. Solenoid Axis O a. 0.624 volts O b.0.410 volts Oc. 0.714 volts O d.0.533 volts O e.0.255 volts
Chapter14: Inductance
Section: Chapter Questions
Problem 77AP: A solenoid with 4 x 107turns/m has an iron core placed in it whose magnetic susceptibility is 4.0 x...
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