5.
Charge on a body is q1 and it is used to charge
another body by induction. Charge on second body is
found to be q2 after charging then,
(a) q1/q2=1 (b) q1/q2<1 (c) q1/q2<_1 (d) q1/q2>_1
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Charge on a body is q1 and it is used to charge, another body by induction. Charge on second body is . so, option (d) is correct.
- The charge on the other body will be less than, or at most, equal to, the charge on the body used for induction charging after charging. As a result.
- The area of the body closest to the source charge experiences induced charges that are diametrically opposed to the source charge, whereas the other area experiences charges that are comparable in type.
- No charge is thus lost.
- Induction is the process of a conductor producing current by being exposed to a fluctuating magnetic field.
- In the case of electromagnetic induction, the movement of a conductor in relation to a magnetic field results in a potential difference (voltage) across the conductor.
- As a result of a fluctuating magnetic flux travelling through a conductor or circuit, electromagnetic induction is the process of producing emf in that material.
- Faraday's Laws of Electromagnetic Induction are the general idea.
- An electric conductor can generate an electro-motive force (EMF) by moving through a magnetic field that is moving, and vice versa, can generate current by moving an electric conductor through a magnetic field that is static.
Charge on a body is q1 and it is used to charge, another body by induction. Charge on second body is.(d)
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