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Why does each plate of capacitor receive same amount of charge during charging process?

Why does each plate of capacitor receive same amount of charge during charging process?

The battery creates a potential difference between its terminals. Because, in a steady state situation, the total voltage through a closed circuit is zero, this will create, when the capacitor is charged, the same voltage over this component.

Do the plates in a capacitor have the same charge?

Current is the same in each branch. Therefore the two plates have the same charge. Capacitance function is voltage.

When a battery is connected to a capacitor Why do the two plates acquire charges?

You attach a battery, which at first adds a single electron to one side of the capacitor. The electron has an electric field that repels other electrons, and this field reaches through space and pushes on the electrons in the other plate, causing that plate to acquire an induced positive charge.

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When a capacitor is charged by a battery both the plates receive charge?

When a capacitor is connected to a battery, the two plates of the capacitor will get charged depending on the polarity of the terminal of the battery to which each plate is connected. On disconnecting the battery, the charge formed on the plates will remain the same. The capacitor thus stores energy.

When a battery is connected to a capacitor Why do the two plates acquire charges of the same magnitude will this be true if the two plates are different in sizes or shapes?

Capacitance is a function of the projected area of one plate to the other and the dielectric constant of the medium between the two plates. Having one plate larger than the other will affect the capacitance but not the charge on each plate. Charge will never effected.

How should the voltage across the battery relate to the voltage across the capacitor when it is fully charged?

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Since V = IR, once the current is zero, the voltage across the resistor is zero. If there’s no voltage across the resistor, then all the voltage must be across the capacitor. So the battery and capacitor voltages must be the same.

When a capacitor is connected to a battery?

A capacitor, when connected to a battery, conducts for awhile but short while after that it acts as an open circuit. If an uncharged capacitor C is connected to a battery of potential V, then a transient current flows as the capacitor plates get charged.

When a parallel plate capacitor is connected to a battery A?

connected capacitor continue to be the same as capacitor is still connected with battery. Hence, the charge stored decreases as Q = CV. Case B: When key K is opened and plates of capacitors are moved apart using insulating handle. The charge stored by isolated charged capacitor remains conserved.

When a capacitor is connected across a battery it gets?

A capacitor is connected across a battery, a dielectric slab is inserted b/w plates. In the process 0 no work is done 0 work is done by battery and stored energy increases 0 work is done by external agent and stored energy decreases 0 work is done by battery and also by external agent by stored energy doesn’t change.

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When a capacitor is connected across a battery?

What is a capacitor explain principle of capacitor?

Answer: A capacitor is a device that is used to store charges in an electrical circuit. A capacitor works on the principle that the capacitance of a conductor increases appreciably when an earthed conductor is brought near it. Hence, a capacitor has two plates separated by a distance having equal and opposite charges.

Why are the voltages across the battery and capacitor the same?

The simple answer: if you connect a capacitor in parallel with a battery, the voltage across each will be the same. That is a basic property of a parallel connected circuit – the voltage across each parallel circuit is the same.