For a technical application, an electrical engineer needs to create a solenoid using copper wire with diameter d=0.500 mm. The resistance of the solenoid needs to be 3.90 Q and the magnetic field of the solenoid with a current of 3.10 A should be 5.70 x 10-2 T. Assume the resistance does not change significantly with temperature, and the radius of the solenoid is 1.00 cm. (Use p = 1.70 x 10-80 m for the resistivity of copper.) • (a) How many turns of wire does the electrical engineer need? turns (b) Determine the required length (in cm) of the solenoid. cm Need Help? Submit Answer Read It

College Physics
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Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
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For a technical application, an electrical engineer needs to create a solenoid using copper wire with diameter d=0.500 mm. The resistance of the solenoid needs to be 3.90 Q and the magnetic field of the solenoid with a current of
3.10 A should be 5.70 x 10-2 T. Assume the resistance does not change significantly with temperature, and the radius of the solenoid is 1.00 cm. (Use p = 1.70 x 10-80 m for the resistivity of copper.)
•
(a) How many turns of wire does the electrical engineer need?
turns
(b) Determine the required length (in cm) of the solenoid.
cm
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Submit Answer
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Transcribed Image Text:For a technical application, an electrical engineer needs to create a solenoid using copper wire with diameter d=0.500 mm. The resistance of the solenoid needs to be 3.90 Q and the magnetic field of the solenoid with a current of 3.10 A should be 5.70 x 10-2 T. Assume the resistance does not change significantly with temperature, and the radius of the solenoid is 1.00 cm. (Use p = 1.70 x 10-80 m for the resistivity of copper.) • (a) How many turns of wire does the electrical engineer need? turns (b) Determine the required length (in cm) of the solenoid. cm Need Help? Submit Answer Read It
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