COLLEGE PHYSICS
2nd Edition
ISBN: 9781464196393
Author: Freedman
Publisher: MAC HIGHER
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Question
Chapter 17, Problem 23QAP
To determine
The direction of equipotential surface with the electric field.
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COLLEGE PHYSICS
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- Explain in your own words why equipotential lines and surfaces must be perpendicular to electric field lines.arrow_forwardIf the electric field is zero throughout a region, must the electric potential also be zero in that region?arrow_forwardIf the potential due to a point charge is 5.00 102 V at a distance of 15.0 m, what are the sign and magnitude of the charge?arrow_forward
- Find the electrostatic energy of eight equal charges (+3C) each fixed at the corners of a cube of side 2 cm.arrow_forwardTwo very large metal plates are placed 2.0 cm apart, with a potential difference of 12 V between them. Consider one plate to be at 12 V, and the other at 0 V. (a) Sketch the equipotential surfaces for 0, 4, 8, and 12 V. (b) Next sketch in some electric field lines, and confirm that they are perpendicular to the equipotential lines.arrow_forwardSketch the equipotential lines in the vicinity of the negatively charged conductor in Figure 19.29. How will these equipotentials look a long distance from the object? Figure 19.29 A negatively charged conductor.arrow_forward
- Sketch the equipotential lines in the vicinity of two opposite charges, where the negative charge is three times as great in magnitude as the positive. See Figure 19.28 for a similar situation. Indicate the direction of increasing potential.arrow_forwardWhen a potential difference of 150. V is applied to the plates of an air-filled parallel-plate capacitor, the plates carry a surface charge density of 3.00 1010 C/cm2. What is the spacing between the plates?arrow_forwardWhat can you say about two charges q1and q2 if the electric field one-fourth of the way from q1to q2 is zero?arrow_forward
- The lesser electric ray (Narcine bancroftii) maintains an incredible charge on its head and a charge equal in magnitude but opposite in sign on its tail (Figure 19.32). (a) Sketch the equipotential lines surrounding the ray. (b) Sketch the equipotentials when the ray is near a ship with a conducting surface. (C) How could this charge distribution be of use to the ray? Figure 19.32 Lesser electric ray (Narcine bancroftii) (credit: National Oceanic and Atmospheric Administration, NOAAs Fisheries Collection).arrow_forwardHow far from a 1.00 C point charge will the potential be 100 V? At what distance will it be 2.00 102 v?arrow_forwardSketch the equipotential lines for the two equal positive charges shown in Figure 19.27. Indicate the direction of increasing potential. Figure 19.27 The electric field near two equal positive charges is directed away from each of the charges.arrow_forward
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