A magnetic field of 100 G (1 G = 10-* T) is required which is uniform in a region of linear dimension about 10 cm and area of cross-section about 10-3 m?. The maximum current- carrying capacity of a given coil of wire is 15 A and the number of turns per unit length that can be wound round a core is at most 1000 turns m-1. Suggest some appropriate design particulars of a solenoid for the required purpose. Assume the core is not ferromagnetic
A magnetic field of 100 G (1 G = 10-* T) is required which is uniform in a region of linear dimension about 10 cm and area of cross-section about 10-3 m?. The maximum current- carrying capacity of a given coil of wire is 15 A and the number of turns per unit length that can be wound round a core is at most 1000 turns m-1. Suggest some appropriate design particulars of a solenoid for the required purpose. Assume the core is not ferromagnetic
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![A magnetic field of 100 G (1 G = 10-* T) is required which is uniform in a region of linear
dimension about 10 cm and area of cross-section about 10-3 m?. The maximum current-
carrying capacity of a given coil of wire is 15 A and the number of turns per unit length
that can be wound round a core is at most 1000 turns m1. Suggest some appropriate
design particulars of a solenoid for the required purpose. Assume the core is not
ferromagnetic](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa86f606b-0d96-4cff-85e6-76ae7673a32d%2Fb56fa8f7-a189-4e70-b92c-d1bbcdb01525%2Frqo8qhl_processed.png&w=3840&q=75)
Transcribed Image Text:A magnetic field of 100 G (1 G = 10-* T) is required which is uniform in a region of linear
dimension about 10 cm and area of cross-section about 10-3 m?. The maximum current-
carrying capacity of a given coil of wire is 15 A and the number of turns per unit length
that can be wound round a core is at most 1000 turns m1. Suggest some appropriate
design particulars of a solenoid for the required purpose. Assume the core is not
ferromagnetic
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