spheres of radius, Rand mass, mare held in place inside an insulating frictionless barrel of length, L (where Lis defined in Figure 3). They are separated by a thin insulating barrier and carry identical positive charges. When the trigger sphere is released from the gun is pulled, the right rest. L. Figure 3 a) Calculate the value Q of the spheres' charges such that the bullet (the right sphere) has a speed, vwhen its center reaches the end of the barrel. You can treat the charges as point charges at the centers of their respective spheres. b) Determine the magnitude of the force required to hold the bullet in place before the trigger is pulled.

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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4. You are building a Coulomb gun, that is, a device that uses the Coulomb force to fire a bullet as shown in Figure 3. Initially,
two identical charged
spheres of radius, Rand mass, mare held in place inside an insulating frictionless barrel of length, L (where L is defined in
Figure 3). They are
separated by a thin insulating barrier and carry identical positive charges. When the trigger of the gun is pulled, the right
sphere is released from
rest.
L.
Figure 3
a) Calculate the value Q of the spheres' charges such that the bullet (the right sphere) has a speed, vwhen its center
reaches the end of the
barrel. You can treat the charges as point charges at the centers of their respective spheres.
b) Determine the magnitude of the force required to hold the bullet in place before the trigger is pulled.
Transcribed Image Text:4. You are building a Coulomb gun, that is, a device that uses the Coulomb force to fire a bullet as shown in Figure 3. Initially, two identical charged spheres of radius, Rand mass, mare held in place inside an insulating frictionless barrel of length, L (where L is defined in Figure 3). They are separated by a thin insulating barrier and carry identical positive charges. When the trigger of the gun is pulled, the right sphere is released from rest. L. Figure 3 a) Calculate the value Q of the spheres' charges such that the bullet (the right sphere) has a speed, vwhen its center reaches the end of the barrel. You can treat the charges as point charges at the centers of their respective spheres. b) Determine the magnitude of the force required to hold the bullet in place before the trigger is pulled.
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