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To calculate the potential difference across a capacitor, you can use the formula V Q/C, where V is the potential difference, Q is the charge stored on the capacitor, and C is the capacitance of the capacitor.

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3mo ago

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Related Questions

What is the relationship between potential difference and capacitance in a capacitor?

The relationship between potential difference and capacitance in a capacitor is that the potential difference across a capacitor is directly proportional to its capacitance. This means that as the capacitance of a capacitor increases, the potential difference across it also increases, and vice versa.


How can one determine the potential difference across a capacitor?

The potential difference across a capacitor can be determined by using the formula V Q/C, where V is the potential difference, Q is the charge stored on the capacitor, and C is the capacitance of the capacitor.


What is the potential difference across each capacitor when the plate separation is doubled?

When the plate separation of a capacitor is doubled, the potential difference across each capacitor remains the same.


How does the energy stored in a capacitor change when the potential difference across it is doubled?

When the potential difference across a capacitor is doubled, the energy stored in the capacitor increases by a factor of four.


What is the formula for calculating the potential difference across a capacitor in an electric circuit?

The formula for calculating the potential difference across a capacitor in an electric circuit is V Q/C, where V represents the potential difference, Q is the charge stored on the capacitor, and C is the capacitance of the capacitor.


Suppose a parallel plate capacitor (with capacitance) is connected to a battery, what is the relationship between the charge stored on the capacitor and the potential difference across its plates?

The relationship between the charge stored on a capacitor and the potential difference across its plates is that the charge stored on the capacitor is directly proportional to the potential difference across its plates. This relationship is described by the formula Q CV, where Q is the charge stored on the capacitor, C is the capacitance of the capacitor, and V is the potential difference across the plates.


What is the relationship between the potential difference across a capacitor and the amount of charge stored on it?

The potential difference across a capacitor is directly proportional to the amount of charge stored on it. This means that as the potential difference increases, the amount of charge stored on the capacitor also increases.


How is the change of potential difference across the capacitor determined?

The change in potential difference across a capacitor is determined by the amount of charge stored on the capacitor and the capacitance of the capacitor. The relationship is given by V = Q/C, where V is the potential difference, Q is the charge stored on the capacitor, and C is the capacitance.


Why does the voltage reading drop in measuring the potential difference across the capacitors?

Because the capacitor discharges. so voltage across the capacitor decreases.


Is it true that a capacitor is initially uncharged the potential difference across it is zero?

yes


Why is there a maximum limit to the potential difference that can be placed across a capacitor?

Five cubic penors splats


What is the potential difference between two plates of a capacitor and how does it affect the overall behavior of the capacitor?

The potential difference between two plates of a capacitor is the voltage across the capacitor. This voltage affects the amount of electric charge stored in the capacitor and determines the energy stored in the capacitor. A higher potential difference results in a greater charge and energy stored in the capacitor. This affects the overall behavior of the capacitor by influencing its capacitance, charging and discharging rates, and the amount of energy it can store and release.