It is desired to construct a solenoid that will have a resistance of 2.46 ohm and produce a magnetic field of 4.00 x 10-2 T at its center when it carries a current of 4.07 A. The solenoid is to be constructed from copper wire having a radius of 0.250 mm and resistivity 1.7 x 10-82 m. If the radius of the solenoid is to be 1.00 cm, determine the following. 1. Based on the specified resistance, the number of wire turns (or windings) used to create the solenoid is 452.21 2. To produce the desired magnetic field with the specified current, these wire turns will be uniformly distributed over a solenoid length (in cm) of 7.82 cm.

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Chapter1: Units, Trigonometry. And Vectors
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It is desired to construct a solenoid that will have a resistance of 2.46 ohm and produce a magnetic field of 4.00 x 10-2 T at its
center when it carries a current of 4.07 A. The solenoid is to be constructed from copper wire having a radius of 0.250 mm and
resistivity 1.7 x 10-82 m. If the radius of the solenoid is to be 1.00 cm, determine the following.
1. Based on the specified resistance, the number of wire turns (or windings) used to create the solenoid is 452.21
2. To produce the desired magnetic field with the specified current, these wire turns will be uniformly distributed over a
solenoid length (in cm) of 7.82
cm.
Transcribed Image Text:It is desired to construct a solenoid that will have a resistance of 2.46 ohm and produce a magnetic field of 4.00 x 10-2 T at its center when it carries a current of 4.07 A. The solenoid is to be constructed from copper wire having a radius of 0.250 mm and resistivity 1.7 x 10-82 m. If the radius of the solenoid is to be 1.00 cm, determine the following. 1. Based on the specified resistance, the number of wire turns (or windings) used to create the solenoid is 452.21 2. To produce the desired magnetic field with the specified current, these wire turns will be uniformly distributed over a solenoid length (in cm) of 7.82 cm.
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