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Question

A particle of charge q and mass m is subjected to an electric field E=E01-ax2 in the x-direction, where a and E0are constants. Initially the particle was at rest at x=0. Other than the initial position the kinetic energy of the particle becomes zero when the distance of the particle from the origin is:


A

2a

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B

a

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C

3a

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D

1a

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Solution

The correct option is C

3a


Step1: Given data.

Particle of charge =q

Mass of the particle=m

Electric field intensity in x-direction E=E01-ax2

Particle at rest at on x=0

Step2: Finding the initial position the kinetic energy of the particle becomes zero.

We know that from work-energy theorem.

W=∆KE

Where W work done and ∆KE change in kinetic energy.

We have the kinetic energy of the particle becomes zero then,

W=0 ……..i

Also,

W=∫0xFdx

Where F is force and dx is displacement

W=∫0xqEdx ∵F=qE

⇒W=∫0xqE01-ax2dx

⇒W=∫0xqE01-ax2dx=0 ∵fromequationi

⇒∫0xqE01-ax2dx=0

⇒qE0x-ax33=0

⇒1-ax23=0

⇒x=3a

Hence, option C is correct.


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