A long, straight current carrying solenoid creates a uniform magnetic field B = 20 mTinside itself when the current is I = 44 A a) Calculate the number of turns per unit length, n, where the total number of turns is Nj. Turns per unit length, n Give your answer to at least three significance digits. b) Suppose this solenoid is connected to an AC circuit inside a physics laboratory. If the length of the solenoid is I = 28 cmand the diameter is d = 2 cm, calculate its self inductance L1. Self inductance, L Give your answer to at least three significance digits.

Glencoe Physics: Principles and Problems, Student Edition
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Chapter24: Magnetic Fields
Section: Chapter Questions
Problem 102A
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A long, straight current carrying solenoid creates
a uniform magnetic field B = 20 mTinside
itself when the current is I = 44 A
a) Calculate the number of turns per unit length,
n, where the total number of turns is N1.
Turns per unit length, n
Give your answer to at least three significance digits.
b) Suppose this solenoid is connected to an AC
circuit inside a physics laboratory. If the length of
the solenoid is l = 28 cm and the diameter is
d = 2 cm, calculate its self inductance L.
Self inductance, L
Give your answer to at least three significance digits.
F
Suppose we have a rectangular loop S2 made by
a conducting material with N2 = 60 turnsand
length, a = 40 cm and width b = 22 cm. Now
we take another coil S, with self inductance L1
and no. of turns N1 and keep it at some distance
away from the rectangular loop. We will not be
changing the position of the coil and rectangular
loop. The mutual inductance between the coil
and the rectangular loop is M = 7 mHand the
rate of change of current in the coil S, is 7 A/s.
c) Calculate the self induced emf in S1.
Self induced emf
Give your answer to at least three significance digits.
V
Transcribed Image Text:A long, straight current carrying solenoid creates a uniform magnetic field B = 20 mTinside itself when the current is I = 44 A a) Calculate the number of turns per unit length, n, where the total number of turns is N1. Turns per unit length, n Give your answer to at least three significance digits. b) Suppose this solenoid is connected to an AC circuit inside a physics laboratory. If the length of the solenoid is l = 28 cm and the diameter is d = 2 cm, calculate its self inductance L. Self inductance, L Give your answer to at least three significance digits. F Suppose we have a rectangular loop S2 made by a conducting material with N2 = 60 turnsand length, a = 40 cm and width b = 22 cm. Now we take another coil S, with self inductance L1 and no. of turns N1 and keep it at some distance away from the rectangular loop. We will not be changing the position of the coil and rectangular loop. The mutual inductance between the coil and the rectangular loop is M = 7 mHand the rate of change of current in the coil S, is 7 A/s. c) Calculate the self induced emf in S1. Self induced emf Give your answer to at least three significance digits. V
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