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Two positively charged particles of charges q1 and q2 have mass m each. A uniform electric field having magnitude E exists in positive x direction as shown in the figure. The given two charged particles are released from rest at t = 0 as shown in the figure. If position of q1 at t = 2sec is given by coordinate (+2a, 0) then the x-coordinate of q2 at t = 2sec is (neglect gravitational interaction between the particles)
  • a)
  • b)
  • c)
  • d)
Correct answer is option 'A'. Can you explain this answer?
Verified Answer
Two positively charged particles of chargesq1andq2have massmeach. A un...
The acceleration of centre of mass of system of particles is

∴   x-coordinate of centre of mass at t = 2 second is

Let the x-coordinates of q1 and q2 at t = 2 sec be x1 and x2 ; [x1 = 2a at t = 2 sec.]

The correct answer is: 
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Most Upvoted Answer
Two positively charged particles of chargesq1andq2have massmeach. A un...
The acceleration of centre of mass of system of particles is

∴   x-coordinate of centre of mass at t = 2 second is

Let the x-coordinates of q1 and q2 at t = 2 sec be x1 and x2 ; [x1 = 2a at t = 2 sec.]

The correct answer is: 
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Two positively charged particles of chargesq1andq2have massmeach. A uniform electric field having magnitudeEexists in positivexdirection as shown in the figure. The given two charged particles are released from rest att= 0as shown in the figure. If position ofq1att= 2secis given by coordinate(+2a, 0)then thex-coordinate ofq2att= 2secis (neglect gravitational interaction between the particles)a)b)c)d)Correct answer is option 'A'. Can you explain this answer?
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