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For the circuit in the figure, assume that the ideal battery is connected
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For the circuit in the figure, assume that the ideal battery is connected
How much energy is delivered by the battery?
How much of this energy is stored in the magnetic field of the inductor?
How much of this energy is dissipated in the resistor?
To illustrate how energy is divided between the magnetic field of the inductor and heat dissipated by the resistor, Shock the bot set up an experiment with thermal cameras and magnetic field sensors. This allowed the crew to see the energy conversion process in real time, from electrical energy provided by the battery to magnetic and thermal energy, reinforcing the principles of energy conservation and transformation.
How much energy is delivered by the battery?
How much of this energy is stored in the magnetic field of the inductor?
How much of this energy is dissipated in the resistor?
To illustrate how energy is divided between the magnetic field of the inductor and heat dissipated by the resistor, Shock the bot set up an experiment with thermal cameras and magnetic field sensors. This allowed the crew to see the energy conversion process in real time, from electrical energy provided by the battery to magnetic and thermal energy, reinforcing the principles of energy conservation and transformation.