Assume that a ball of charged particles has a uniformly distributed negative charge density except for a narrow radial tunnel through its center, from the surface on one side to the surface on the opposite side. Also assume that we can position a proton anywhere along the tunnel or outside the ball. Let F R be the magnitude of the electrostatic force on the proton when it is located at the ball’s surface, at radius R . As a multiple of R , how far from the surface is there a point where the force magnitude is 0.50 f r if we move the proton (a) away from the ball and (b) into the tunnel?
Assume that a ball of charged particles has a uniformly distributed negative charge density except for a narrow radial tunnel through its center, from the surface on one side to the surface on the opposite side. Also assume that we can position a proton anywhere along the tunnel or outside the ball. Let F R be the magnitude of the electrostatic force on the proton when it is located at the ball’s surface, at radius R . As a multiple of R , how far from the surface is there a point where the force magnitude is 0.50 f r if we move the proton (a) away from the ball and (b) into the tunnel?
Assume that a ball of charged particles has a uniformly distributed negative charge density except for a narrow radial tunnel through its center, from the surface on one side to the surface on the opposite side. Also assume that we can position a proton anywhere along the tunnel or outside the ball. Let FR be the magnitude of the electrostatic force on the proton when it is located at the ball’s surface, at radius R. As a multiple of R, how far from the surface is there a point where the force magnitude is 0.50
f
r if we move the proton (a) away from the ball and (b) into the tunnel?
Discuss the differences between the Biot-Savart law and Coulomb’s law in terms of their applicationsand the physical quantities they describe.
Explain why Ampere’s law can be used to find the magnetic field inside a solenoid but not outside.
3. An Atwood machine consists of two masses, mA
and m B, which are connected by an inelastic cord
of negligible mass that passes over a pulley. If the
pulley has radius RO and
moment of inertia I about its axle, determine the
acceleration of the masses
mA and m B, and compare to the situation where the
moment of inertia of the
pulley is ignored. Ignore friction at the axle O. Use
angular momentum and torque in this solution
Chapter 23 Solutions
Fundamentals of Physics Extended 10E WileyPlus 5 Student Package
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