A positively charged sphere is placed near a neutral block of nickel, as shown in Figure 14.92. (a) Which of the diagrams in Figure 14.93 best represents the equilibrium distribution of charge on the neutral nickel block?

(b) At location P inside the nickel block the electric field due to the charged sphere is <-625,0,0>N/C. At equilibrium, which of the following statements must be true? (1) It is not possible to determine the electric field at location P due only to charges on the surface of the nickel block. (2) The electric field at location P due only to charges on the surface of the nickel block is <0,0,0>N/C. (3) Because the net electric field at location P is <0,0,0>N/C, the field at P due only to charges on the surface of the polarized nickel block must be <625,0,0>N/C.

Short Answer

Expert verified

Answer

(a) Diagram B best represents the equilibrium distribution of charge on the neutral nickel block.

(b) Statement 3 is correct.

Step by step solution

01

Identification of given data

The given data can be listed below as:

The electric field due to the charged sphere at the location P is <-625,0,0>N/C.

02

Significance of the electric field

The electric field is described as a region that helps an electrically charged particle to exert force on another particle. The magnitude of the electric field is directly proportional to the charge and inversely proportional to the distance of the charges.

03

(a) Determination of the diagrams that best represents the equilibrium distribution of charge on the neutral nickel block

Here, in the above diagram, as the charged sphere is placed at the left side of the neutral nickel block, then the neutral nickel block will induce positive charges and due to the positive charges, the nickel block will also induce negative charges. Hence, as the block was neutral, then the positive charges will be at the right side and the negative charges will be at the left side of the block.

Thus, diagram B best represents the equilibrium distribution of charge on the neutral nickel block.

04

(b) Determination of the correct statement

Statement 1 states that it is not possible to determine the electric field at location P due only to charges on the surface of the nickel block. This statement is incorrect as the electric field at location P can be identified with the help of the electric field due to the charged sphere with the help of the equation of the magnitude of the electric field.

Statement 2 states that the electric field at the location P due only to charges on the surface of the nickel block is <0,0,0>N/C. This statement is incorrect, as the electric field is not zero due to the charges, but as the sphere is in equilibrium, that is the reason the electric field is zero.

The statement 3 states that because the net electric field at location P is <0,0,0>N/C, the field at P due only to charges on the surface of the polarized nickel block must be <625,0,0>N/C. This statement is correct as due to equilibrium; the net electric field is zero and the electric field at location P is <625,0,0>N/C.

Thus, statement 3 is correct.

Unlock Step-by-Step Solutions & Ace Your Exams!

  • Full Textbook Solutions

    Get detailed explanations and key concepts

  • Unlimited Al creation

    Al flashcards, explanations, exams and more...

  • Ads-free access

    To over 500 millions flashcards

  • Money-back guarantee

    We refund you if you fail your exam.

Over 30 million students worldwide already upgrade their learning with Vaia!

One App. One Place for Learning.

All the tools & learning materials you need for study success - in one app.

Get started for free

Most popular questions from this chapter

Carbon tetrachloride CCl4is a liquid whose molecules are symmetrical and so are not permanent dipoles, unlike water molecules. Explain briefly how the effect of an external charge on a beaker of water H2Odiffers from its effect on a beaker of CCl4. (Hint: Consider the behavior of the permanent dipole you made out of U and L tapes.)

A neutral copper block is polarized as shown in Figure 14.90, due to an electric field made by external charges (not shown). Which arrow (a–j) in Figure 14.90 best indicates the direction of the net electric field at location B, which is inside the copper block ?

Atom Ais easier to polarize than atom B. Which atom, Aor B, would experience a greater attraction to a point charge a distance raway? Explain your reasoning.

Metal sphere A is charged negatively and then brought near an uncharged metal sphere B (Figure 14.78). Both spheres rest on insulating supports, and the humidity is very low.

(a) Use +’s and −’s to show the approximate distribution of charges on the two spheres. (Hint: Think hard about both spheres, not just B.)

(b) A small, lightweight hollow metal ball, initially uncharged, is suspended from a string and hung between the two spheres (Figure 14.79). It is observed that the ball swings rapidly back and forth hitting one sphere and then the other. This goes on for seconds, but then the ball stops swinging and hangs between the two spheres. Explain in detail, step by step, why the ball swings back and forth and why it finally stops swinging. Your explanation must include good physics diagrams.

Two small, negatively charged plastic spheres are placed near a neutral iron block, as shown in Figure 14.89. Which arrow (a–j) in Figure 14.89 best indicates the direction of the net electric field at location A?

See all solutions

Recommended explanations on Physics Textbooks

View all explanations

What do you think about this solution?

We value your feedback to improve our textbook solutions.

Study anywhere. Anytime. Across all devices.

Sign-up for free