Capacitance
Capacitance

165628 If eight similar charge drops combine to form a bigger drop, then the ratio of capacitance of bigger drop to that of smaller drop will be

1 $2: 1$
2 $8: 1$
3 $4: 1$
4 $16: 1$
Capacitance

165629 A parallel plate capacitor is constructed of two sheets of metal $7 \square$ by $15 \mathrm{~m}$, and separated by a layer of air $0.5 \mathrm{~cm}$. The capacitance of this system is

1 $0.1 \mu \mathrm{F}$
2 $0.2 \mu \mathrm{FQ}$
3 $2 \mu \mathrm{F}$
4 $1.2 \mu \mathrm{F}$
Capacitance

165630 The insulated plates of a charged parallel plate capacitor (with small separation between the plates) are approaching each other due to electrostatic attraction.
Assuming no other force to be operative and no radiation taking place, which of the following graphs approximately shows the variation with time (t) of the potential difference $(V)$ between the plates?

1 a
2 b
3 c
4 d
Capacitance

165631 Consider the circuit given here. The potential difference $V_{B C}$ between the points $B$ and $C$ is

1 $1 \mathrm{~V}$
2 $0.5 \mathrm{~V}$
3 $0 \mathrm{~V}$
4 $-1 \mathrm{~V}$
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Capacitance

165628 If eight similar charge drops combine to form a bigger drop, then the ratio of capacitance of bigger drop to that of smaller drop will be

1 $2: 1$
2 $8: 1$
3 $4: 1$
4 $16: 1$
Capacitance

165629 A parallel plate capacitor is constructed of two sheets of metal $7 \square$ by $15 \mathrm{~m}$, and separated by a layer of air $0.5 \mathrm{~cm}$. The capacitance of this system is

1 $0.1 \mu \mathrm{F}$
2 $0.2 \mu \mathrm{FQ}$
3 $2 \mu \mathrm{F}$
4 $1.2 \mu \mathrm{F}$
Capacitance

165630 The insulated plates of a charged parallel plate capacitor (with small separation between the plates) are approaching each other due to electrostatic attraction.
Assuming no other force to be operative and no radiation taking place, which of the following graphs approximately shows the variation with time (t) of the potential difference $(V)$ between the plates?

1 a
2 b
3 c
4 d
Capacitance

165631 Consider the circuit given here. The potential difference $V_{B C}$ between the points $B$ and $C$ is

1 $1 \mathrm{~V}$
2 $0.5 \mathrm{~V}$
3 $0 \mathrm{~V}$
4 $-1 \mathrm{~V}$
Capacitance

165628 If eight similar charge drops combine to form a bigger drop, then the ratio of capacitance of bigger drop to that of smaller drop will be

1 $2: 1$
2 $8: 1$
3 $4: 1$
4 $16: 1$
Capacitance

165629 A parallel plate capacitor is constructed of two sheets of metal $7 \square$ by $15 \mathrm{~m}$, and separated by a layer of air $0.5 \mathrm{~cm}$. The capacitance of this system is

1 $0.1 \mu \mathrm{F}$
2 $0.2 \mu \mathrm{FQ}$
3 $2 \mu \mathrm{F}$
4 $1.2 \mu \mathrm{F}$
Capacitance

165630 The insulated plates of a charged parallel plate capacitor (with small separation between the plates) are approaching each other due to electrostatic attraction.
Assuming no other force to be operative and no radiation taking place, which of the following graphs approximately shows the variation with time (t) of the potential difference $(V)$ between the plates?

1 a
2 b
3 c
4 d
Capacitance

165631 Consider the circuit given here. The potential difference $V_{B C}$ between the points $B$ and $C$ is

1 $1 \mathrm{~V}$
2 $0.5 \mathrm{~V}$
3 $0 \mathrm{~V}$
4 $-1 \mathrm{~V}$
Capacitance

165628 If eight similar charge drops combine to form a bigger drop, then the ratio of capacitance of bigger drop to that of smaller drop will be

1 $2: 1$
2 $8: 1$
3 $4: 1$
4 $16: 1$
Capacitance

165629 A parallel plate capacitor is constructed of two sheets of metal $7 \square$ by $15 \mathrm{~m}$, and separated by a layer of air $0.5 \mathrm{~cm}$. The capacitance of this system is

1 $0.1 \mu \mathrm{F}$
2 $0.2 \mu \mathrm{FQ}$
3 $2 \mu \mathrm{F}$
4 $1.2 \mu \mathrm{F}$
Capacitance

165630 The insulated plates of a charged parallel plate capacitor (with small separation between the plates) are approaching each other due to electrostatic attraction.
Assuming no other force to be operative and no radiation taking place, which of the following graphs approximately shows the variation with time (t) of the potential difference $(V)$ between the plates?

1 a
2 b
3 c
4 d
Capacitance

165631 Consider the circuit given here. The potential difference $V_{B C}$ between the points $B$ and $C$ is

1 $1 \mathrm{~V}$
2 $0.5 \mathrm{~V}$
3 $0 \mathrm{~V}$
4 $-1 \mathrm{~V}$