Embibe Experts Solutions for Chapter: Capacitance, Exercise 1: Exercise - 1

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Embibe Experts Physics Solutions for Exercise - Embibe Experts Solutions for Chapter: Capacitance, Exercise 1: Exercise - 1

Attempt the free practice questions on Chapter 23: Capacitance, Exercise 1: Exercise - 1 with hints and solutions to strengthen your understanding. Alpha Question Bank for Engineering: Physics solutions are prepared by Experienced Embibe Experts.

Questions from Embibe Experts Solutions for Chapter: Capacitance, Exercise 1: Exercise - 1 with Hints & Solutions

HARD
JEE Main/Advance
IMPORTANT

The charge on each of the capacitors 0.16 m s after the switch S is closed in figure is:

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HARD
JEE Main/Advance
IMPORTANT

The switch S shown in figure is kept closed for a long time and then opened at t=0, then the current in the middle 20 Ω resistor at t=0.25 ms is

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MEDIUM
JEE Main/Advance
IMPORTANT

The effective capacitance of the system in adjoining figure will be,

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MEDIUM
JEE Main/Advance
IMPORTANT

In the adjoining diagram, two geometrically identical capacitors A and B are connected to a battery. Air is filled between the plates of C1 and a dielectric is filled between the plates of C2, then

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EASY
JEE Main/Advance
IMPORTANT

A parallel plate condenser is connected to a battery of emf 4 volt. If a plate of dielectric constant 8 is inserted into it, then the potential difference on the condenser will be 

EASY
JEE Main/Advance
IMPORTANT

A parallel plate condenser is connected to a battery of EMF 4 volt. If a plate of dielectric constant 8 is inserted into it if the battery is disconnected before inserting the dielectric, then the potential difference will be, 

EASY
JEE Main/Advance
IMPORTANT

A parallel plate condenser with plate separation d is charged with the help of a battery so that U0 energy is stored in the system. A plate of dielectric constant K and thickness d is placed between the plates of condenser while battery remains connected. The new energy of the system will be, 

MEDIUM
JEE Main/Advance
IMPORTANT

A parallel plate condenser with plate separation d is charged with the help of a battery, so that U0 energy is stored in the system. A plate of dielectric constant K and thickness d is placed between the plates of the condenser, the battery is disconnected before placing the plate, then new energy will be