A) In the figure, the voltage v(t) increases linearly in the time interval to seconds from zero to vo and then remains constant. Get the energy stored in the inductor after the electrical transitions have elapsed. B) If at a constant voltage vo , the air distance from go to g1 increases, determine the change in stored magnetic energy after the passage of electrical currents. C) If the voltage source is v(t)=vo coswt and the air distance in go remains constant, determine the instantaneous and mean time values of the energy stored in the inductor and the output power of the source. A Core cross section v(t) far N . Wiring R Resistance

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter23: Faraday’s Law And Inductance
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please just solve part B
A) In the figure, the voltage v(t) increases linearly in the time interval to seconds from zero to vo and then
remains constant. Get the energy stored in the inductor after the electrical transitions have elapsed.
B) If at a constant voltage vo , the air distance from go to gi increases, determine the change in stored
magnetic energy after the passage of electrical currents.
C) If the voltage source is v(t)=vo coswt and the air distance in go remains constant, determine the
instantaneous and mean time values of the energy stored in the inductor and the output power of the
source.
Core cross section
v(t)
far N Wiring
R Resistance
Transcribed Image Text:A) In the figure, the voltage v(t) increases linearly in the time interval to seconds from zero to vo and then remains constant. Get the energy stored in the inductor after the electrical transitions have elapsed. B) If at a constant voltage vo , the air distance from go to gi increases, determine the change in stored magnetic energy after the passage of electrical currents. C) If the voltage source is v(t)=vo coswt and the air distance in go remains constant, determine the instantaneous and mean time values of the energy stored in the inductor and the output power of the source. Core cross section v(t) far N Wiring R Resistance
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