Figure 21-34ashows charged particles 1 and 2 that are fixed in place on an x-axis. Particle 1 has a charge with a magnitude of|q1|=8.00e. Particle 3 of chargeq3=+8.00eis initially on the x-axis near particle 2.Then particle 3 is gradually moved in the positive direction of the x-axis. As a result, the magnitude of the net electrostatic force on particle 2 due to particles 1 and 3

changes. Figure 21-34bgives the xcomponent of that net force as a function of the position xof particle 3.The scale of the x-axis is setby xs=0.80m. Theplot has an asymptote ofF2net=1.5×1025 Nasx. As a multiple of eand including the sign, what is the chargeq2of particle 2?

Short Answer

Expert verified

The value of the charge q2of particle 2 as a multiple of e, the electronic charge, is 13e.

Step by step solution

01

Stating the given data

  1. Charges of particles 1 and 3:|q1|=8.00eand q3=+8.00e.
  2. The scale of the x axis is set byxs=0.80 m and F2(net)=1.5×1025N.
02

Understanding the concept of Coulomb’s law

Using the concept of Coulomb's law, the value of the charge of the second particle is found using the net value of the force acting on it.

Formula:

The magnitude of the electrostatic force between any two particles is F=|q1||q2|4πε0r2… (i)

03

Calculation of the charge of the second particle

Since the graph crosses zero, q1 must be positive-valued:q1=+8.00e. We can note that it crosses zero at r=0.40m. Now the asymptotic value of the force yields the magnitude and sign ofq2as follows, using equation (i):

q2=F2netkq1r2=1.5×10259×109×8e=2.086×1018C=13e

Hence, the value of the charge is 13e.

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Most popular questions from this chapter

Figure 21-14 shows two charged particles on an axis. The charges are free to move. However, a third charged particle can be placed at a certain point such that all three particles are then in equilibrium. (a) Is that point to the left of the first two particles, to their right, or between them? (b) Should the third particle be positively or negatively charged? (c) Is the equilibrium stable or unstable?

Of the chargeQinitially on a tiny sphere, a portion qis to be transferred to a second, nearby sphere. Both spheres can be treated as particles and are fixed with a certain separation. For what value of q/Qwill the electrostatic force between the two spheres be maximized?

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force between them and (b) the acceleration of the particle?

In the return stroke of a typical lightning bolt, a current of 2.5×104Aexists for20μs. How much charge is transferred in this event?

In Fig. 21-19, a central particle of charge -2qis surrounded by a square array of charged particles, separated by either distance dor d/2 along the perimeter of the square. What are the magnitude and direction of the net electrostatic force on the central particle due to the other particles? (Hint:Consideration of symmetry can greatly reduce the amount of work required here.)

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