Given a toroid with 308 turns and 15.34 amperes of current. Determine the amount of flux, in microwebers, passing normal through the cross-section of the core (μ = 1.07 × 4π × 10-7 H/m) if the radius of each turn is 19.71 centimeters. The radius of the toroid itself, not of each turn, is 1.40 meters.
Given a toroid with 308 turns and 15.34 amperes of current. Determine the amount of flux, in microwebers, passing normal through the cross-section of the core (μ = 1.07 × 4π × 10-7 H/m) if the radius of each turn is 19.71 centimeters. The radius of the toroid itself, not of each turn, is 1.40 meters.
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Given a toroid with 308 turns and 15.34 amperes of current. Determine the amount of flux, in microwebers, passing normal through the cross-section of the core (μ = 1.07 × 4π × 10-7 H/m) if the radius of each turn is 19.71 centimeters. The radius of the toroid itself, not of each turn, is 1.40 meters.
![Given a toroid with 308 turns and 15.34 amperes of current. Determine the amount of flux, in microwebers, passing normal through the cross-section of the core (u= 1.07 x 47 x 10-7 H/m) if the radius of each turn is 19.71 centimeters. The radius of the
toroid itself, not of each turn, is 1.40 meters.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F1e3b878a-4acf-4efa-b065-80573985c8ea%2F04cdc8b6-0301-4dd2-9f40-89dfe1627060%2Fdyct92s_processed.png&w=3840&q=75)
Transcribed Image Text:Given a toroid with 308 turns and 15.34 amperes of current. Determine the amount of flux, in microwebers, passing normal through the cross-section of the core (u= 1.07 x 47 x 10-7 H/m) if the radius of each turn is 19.71 centimeters. The radius of the
toroid itself, not of each turn, is 1.40 meters.
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