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After having been open for a long time, the switch S was closed at time t = 0. T

ID: 2123566 • Letter: A

Question

After having been open for a long time, the switch S was closed at time t= 0. The EMF of the ideal battery is

(a) At what rate is energy being delivered by the battery at time t = 0.950 s?
     W

(b) How much energy has been delivered by the battery during the first 1.900 s after the switch has been closed?
     J

(c) At what rate is energy being stored in the magnetic field of the inductor at time t = 0.950 s?
     W

(d) How much energy has been stored in the magnetic field of the inductor during the first 1.900 s after the switch has been closed?
     J

(e) At what rate is thermal energy being produced in the resistor at time t = 0.950 s?
     W

(f) How much thermal energy has been dissipated in the resistor during the first 1.900 s after the switch has been closed?
     J

After having been open for a long time, the switch S was closed at time t= 0. The EMF of the ideal battery is 11.50 V, R = 7.10 Ohms, and L = 6.00 H. At what rate is energy being delivered by the battery at time t = 0.950 s? How much energy has been delivered by the battery during the first 1.900 s after the switch has been closed? At what rate is energy being stored in the magnetic field of the inductor at time t = 0.950 s? How much energy has been stored in the magnetic field of the inductor during the first 1.900 s after the switch has been closed? At what rate is thermal energy being produced in the resistor at time t = 0.950 s? How much thermal energy has been dissipated in the resistor during the first 1.900 s after the switch has been closed?

Explanation / Answer

the circuit is not visible.plz upload it or better send me at gurudev660@gmail.com i will solve it in 10 min

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