College Physics: A Strategic Approach (3rd Edition)
3rd Edition
ISBN: 9780321879721
Author: Randall D. Knight (Professor Emeritus), Brian Jones, Stuart Field
Publisher: PEARSON
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Textbook Question
Chapter 20, Problem 47GP
What is the force on the 1.0 nC charge in Figure P20.47? Give your answer as a magnitude and a direction.
Figure P20.47
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Chapter 20 Solutions
College Physics: A Strategic Approach (3rd Edition)
Ch. 20 - Four lightweight balls A, B, C, and D are...Ch. 20 - Plastic and glass rods that have been charged by...Ch. 20 - a. Can an insulator be charged? If so, how would...Ch. 20 - When you take clothes out of the drier right after...Ch. 20 - The positive charge in Figure Q20.5 is +Q. What is...Ch. 20 - As shown in Figure Q20.6, metal sphere A has 4...Ch. 20 - Figure Q20.7 shows a positively charged rod held...Ch. 20 - A plastic balloon that has been rubbed with wool...Ch. 20 - You are given two metal spheres on portable...Ch. 20 - A honeybee acquires a positive electric charge as...
Ch. 20 - A metal rod A and a metal sphere B, on insulating...Ch. 20 - Iontophoresis is a noninvasive process that...Ch. 20 - A 10 nC charge sits at a point in space where the...Ch. 20 - A hollow soda straw is uniformly charged, as shown...Ch. 20 - A positively charged particle is in the center of...Ch. 20 - Two charged particles are separated by 10 cm....Ch. 20 - A small positive charge q experiences a force of...Ch. 20 - A typical commercial airplane is struck by...Ch. 20 - Microbes such as bacteria have small positive...Ch. 20 - a. Is there a point between a 10 nC charge and a...Ch. 20 - Two lightweight, electrically neutral conducting...Ch. 20 - All the charges in Figure Q20.23 have the same...Ch. 20 - All the charges in Figure Q20.241Q have the same...Ch. 20 - All the charges in Figure Q20.25 have the same...Ch. 20 - A glass bead charged to +3.5 nC exerts an 8.0 104...Ch. 20 - A +7.5 nC point charge and a 2.0 nC point charge...Ch. 20 - Three point charges are arranged as shown in...Ch. 20 - A positive charge is brought near to a dipole, as...Ch. 20 - A glass rod is charged to +5.0 nC by rubbing. a....Ch. 20 - A plastic rod is charged to 20 nC by rubbing. a....Ch. 20 - Prob. 3PCh. 20 - A plastic rod that has been charged to 15.0 nC...Ch. 20 - A glass rod that has been charged to +12.0 nC...Ch. 20 - Two identical metal spheres A and Bare in contact....Ch. 20 - Two identical metal spheres A and Bare connected...Ch. 20 - If two identical conducting spheres are in...Ch. 20 - Two 1.0 kg masses are 1.0 m apart on a...Ch. 20 - A small metal sphere has a mass of 0.15 g and a...Ch. 20 - A small plastic sphere with a charge of 5.0 nC is...Ch. 20 - A small metal bead, labeled A, has a charge of 25...Ch. 20 - A small glass bead has been charged to +20 nC. A...Ch. 20 - What are the magnitude and direction of the...Ch. 20 - In Figure P20.15, charge q2 experiences no net...Ch. 20 - Object A, which has been charged to +10 nC, is at...Ch. 20 - A small glass bead has been charged to +20 nC....Ch. 20 - What magnitude charge creates a 1.0 N/C electric...Ch. 20 - What are the strength and direction of the...Ch. 20 - A 30 nC charge experiences a 0.035 N electric...Ch. 20 - What are the strength and direction of the...Ch. 20 - A +1 0 nC charge is located at the origin. a. What...Ch. 20 - A 10 nC charge is located at the origin. a. What...Ch. 20 - What are the strength and direction of the...Ch. 20 - What are the strength and direction of the...Ch. 20 - What are the strength and direction of an electric...Ch. 20 - A 0.10 g plastic bead is charged by the addition...Ch. 20 - A parallel-plate capacitor is constructed of two...Ch. 20 - A parallel-plate capacitor is formed from two 4.0...Ch. 20 - Two identical closely spaced circular disks form a...Ch. 20 - A parallel-plate capacitor is constructed of two...Ch. 20 - Storm clouds may build up large negative charges...Ch. 20 - A neutral conducting sphere is between two...Ch. 20 - One kind of e-book display consists of millions of...Ch. 20 - A protein molecule in an electrophoresis gel has a...Ch. 20 - Large electric fields in cell membranes cause ions...Ch. 20 - Molecules of carbon mon-oxide are permanent...Ch. 20 - A 2.0-mmdiameter copper ball is charged to +50 nC....Ch. 20 - Pennies today are copper-covered zinc, but older...Ch. 20 - Two protons are 2.0 fm apart. (1 fm= 1 femtometer...Ch. 20 - The nucleus of a 12Xe atom (an isotope of the...Ch. 20 - Two equally charged, 1.00 g spheres are placed...Ch. 20 - Objects A and Bare both positively charged. Both...Ch. 20 - An electric dipole is formed from 1.0 nC point...Ch. 20 - What are the strength and direction of the...Ch. 20 - What are the strength and direction of the...Ch. 20 - What is the force on the 1.0 nC charge in Figure...Ch. 20 - What is the force on the 1.0 nC charge in Figure...Ch. 20 - What is the magnitude of the force on the 1.0 nC...Ch. 20 - What are the magnitude and direction of the force...Ch. 20 - As shown in Figure P20.52, a 5.0 nC charge sits at...Ch. 20 - Two particles have positive charges q and Q. A...Ch. 20 - Model a pollen grain as a sphere of carbon 0.10 mm...Ch. 20 - In a simple model of the hydrogen atom, the...Ch. 20 - A 0.10 g honeybee acquires a charge of +23 pC...Ch. 20 - Two 2.0-cm-diameter disks face each other, 1.0 mm...Ch. 20 - The electron gun in a television tube uses a...Ch. 20 - A 0.020 g plastic bead hangs from a lightweight...Ch. 20 - A 4.0 mg bead with a charge of 2.5 nC rests on a...Ch. 20 - Two 3.0 g spheres on 1.0-m-long threads repel each...Ch. 20 - An electric field E = (100,000 N/C, right) causes...Ch. 20 - An electric field E = (200,000 N/C, right) causes...Ch. 20 - A small charged bead has a mass of 1.0 g. It is...Ch. 20 - A bead with a mass of 0.050 g and a charge of 15...Ch. 20 - A small bead with a positive charge q is free to...Ch. 20 - A parallel-plate capacitor consists of two plates,...Ch. 20 - If the charging collar has a positive charge, the...Ch. 20 - Which of the following describes the charges on...Ch. 20 - Because the droplets are conductors, a droplet's...Ch. 20 - Another way to sort the droplets would be to give...
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- Two small beads having positive charges q1 = 3q and q2 = q are fixed at the opposite ends of a horizontal insulating rod of length d = 1.50 m. The bead with charge q1 is at the origin. As shown in Figure P19.7, a third small, charged bead is free to slide on the rod. (a) At what position x is the third bead in equilibrium? (b) Can the equilibrium be stable?arrow_forwardA Figure P23.65 shows two identical conducting spheres, each with charge q, suspended from light strings of length L. If the equilibrium angle the strings make with the vertical is , what is the mass m of the spheres? Figure P23.65arrow_forward(a) What is the electric field 5.00 m from die center of the terminal of a Van de Graaff with a 3.00-mC charge, noting that the field is equivalent to that of a point charge at the center of the terminal? (b) At this distance, what force does the field exert on a 2.00C charge on the Van de Graaff’s belt?arrow_forward
- (a) What magnitude point charge creates a 10,000 N/C electric field at a distance of 0.250 m? (b) How large is the field at 10.0 m?arrow_forward(a) Find the magnitude and direction of the electric field at the position of the 2.00 C charge in Figure P13.13. (b) How would the electric field at that point be affected if the charge there were doubled? Would the magnitude of the electric force be affected?arrow_forwardA Two positively charged particles, each with charge Q, are held at positions (a, 0) and (a, 0) as shown in Figure P23.73. A third positively charged particle with charge q is placed at (0, h). a. Find an expression for the net electric force on the third particle with charge q. b. Show that the two charges Q behave like a single charge 2Q located at the origin when the distance h is much greater than a. Figure P23.73 Problems 73 and 74.arrow_forward
- Assume the charged objects in Figure OQ23.10 are fixed. Notice that there is no sight line from the location of q2 to the location of q1. If you were at q1, you would be unable to see q2 because it is behind q3. How would you calculate the electric force exerted on the object with charge q1? (a) Find only the force exerted by q2 on charge q1. (b) Find only the force exerted by q3 an charge q1. (c) Add the force that q2 would exert by itself on charge q1 to the force that q3 would exert by itself on charge q1. (d) Add the force that q3 would exert by itself to a certain fraction of the force that q2 would exert by itself. (e) There is no definite way to find the force on charge q1.arrow_forwardAssume the charged objects in Figure OQ19.15 are fixed. Notice that there is no sight line from the location of q2 to the location of q1. If you were at q1, you would be unable to see q2 because it is behind q3. How would you calculate the electric force exerted on the object with charge q1? (a) Find only the force exerted by q2 on charge q1. (b) Find only the force exerted by q3 on charge q1. (c) Add the force that q2 would exert by itself on charge q1 to the force that q3 would exert by itself on charge q1. (d) Add the force that q3 would exert by itself to a certain fraction of the force that q2 would exert by itself. (e) There is no definite way to find the force on charge q1. Figure OQ19.15arrow_forward(a) What is the direction and magnitude of an electric field that supports the weight of a free electron near the surface of Earth? (b) Discuss what the small value for this field implies regarding the relative strength of the gravitational and electrostatic forces.arrow_forward
- (a) What is the electric field 5.00 m from the center of the terminal of a Van de Graaff with a 3.00 mC charge, noting that the field is equivalent to that of a point charge at the center of the terminal? (b) At this distance, what force does the field exert on a 2.00 C charge on the Van de Graaff’s belt?arrow_forwardTwo small metallic spheres, each with a mass of 2.00 g, are suspended from a common point by two strings of negligible mass and of length 10.0 cm. When the spheres have an equal amount of charge, the two strings make an Figure P23.67arrow_forwardA thin conducing plate 2.0 m on a side is given a total charge of 10.0C . (a) What is the electric field 1.0 cm above the plate? (b) What is the force on an electron at this point? (c) Repeat these calculations for a point 2.0 cm above the plate. (d) When the electron moves from 1.0 to 2.0 cm above the plate, how much work is done on it by the electric field?arrow_forward
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