6. Two solenoids A and B, spaced close to each other and sharing the same cylindrical axis, have 450 and 750 turns, respectively. A current of 4.00 A in coil A produces an average flux of 300 uWb through each turn of A and a flux of 90 uWb through each turn of B. (a) Calculate the mutual inductance of the two solenoids. (b) What is the self-inductance of A? (c) What emf is induced in B when the current in A increases at the rate of 0.400 A/s? 7. In a particular circuit, assume that E = 12 V, R = 40 Q, and L = 5 mH. How much energy is stored in the inductor's magnetic field when the current reaches its maximum steady-state value?

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6. Two solenoids A and B, spaced close to each other and sharing the same cylindrical
axis, have 450 and 750 turns, respectively. A current of 4.00 A in coil A produces an
average flux of 300 uWb through each turn of A and a flux of 90 uWb through each
turn of B. (a) Calculate the mutual inductance of the two solenoids. (b) What is the
self-inductance of A? (c) What emf is induced in B when the current in A increases at
the rate of 0.400 A/s?
7. In a particular circuit, assume that E = 12 V, R = 40 Q, and L = 5 mH. How much
energy is stored in the inductor's magnetic field when the current reaches its maximum
steady-state value?
Transcribed Image Text:6. Two solenoids A and B, spaced close to each other and sharing the same cylindrical axis, have 450 and 750 turns, respectively. A current of 4.00 A in coil A produces an average flux of 300 uWb through each turn of A and a flux of 90 uWb through each turn of B. (a) Calculate the mutual inductance of the two solenoids. (b) What is the self-inductance of A? (c) What emf is induced in B when the current in A increases at the rate of 0.400 A/s? 7. In a particular circuit, assume that E = 12 V, R = 40 Q, and L = 5 mH. How much energy is stored in the inductor's magnetic field when the current reaches its maximum steady-state value?
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