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Simple answer: Yes. If there's electricity, there is a magnetic field. I'm guessing that you're thinking that alternating current reverses current flow, as opposed to direct current. This isn't quite right. A.C. works by alternately advancing and reversing the movement of charge, basically pumping electricity down a wire. Capacitors store charge. That's all they do until some part of a circuit lets them release it. So a capacitor connected to an a.c. source will just store charge and a magnetic field will certainly be attached.

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What is the purpose of a capacitor in a circuit?

To store energy, in an electric field between separated charges. (An inductor stores energy in a magnetic field surrounding a current.)


What is the purpose of capacitor in the circuit?

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What is the role of the magnetic field inside a capacitor and how does it affect the overall behavior of the capacitor?

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The energy stored in the magnetic field of a capacitor is typically negligible compared to the energy stored in the electric field between the capacitor plates. In most practical capacitor applications, the dominant energy storage mechanism is the electric field between the plates.


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How is the magnetic field related to the Poynting flux in a charging capacitor?

The magnetic field is related to the Poynting flux in a charging capacitor through electromagnetic induction. As the capacitor charges, the changing electric field produces a magnetic field, which in turn affects the flow of energy in the form of electromagnetic waves known as the Poynting flux.


How does the magnetic field in a charging capacitor contribute to the understanding of concepts in Mastering Physics?

The magnetic field in a charging capacitor helps in understanding concepts in Mastering Physics by demonstrating the relationship between electric and magnetic fields, as well as how energy is stored and transferred in the system.


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