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A very long and hollow conducting cylinder with inner radius 5.0cm and outer radius 12.0 cm has a uniform charge distribution along its length of ? = 9.0 ?C/m.
What is the value of the electric field at 7.0 cm from the axis of the cylinder? (inside the metal of the conductor)
Determine what fraction of the charge distribution is on the inner wall of the hollow cylinder. Explain your answer. (You should draw a sketch with a Gaussian surface to support your answer.)
Use Gauss' Law to determine the magnitude of the electric field at a position 15.0 cm away from the axis of the cylinder. Show all work, including a sketch of the Gaussian surface you use to apply Gauss' Law. (For full credit, don't just use a formula for the calculation; show how Gauss' Law allows you to generate that formula.)
A sphere of radius R is uniformly charged to a total charge of Q. It is made to spin about an axis that passes through its center with an angular speed ω. Find the magnitude of the resulting magnetic field at the center of the sphere.
A resistor is in the shape of a cube, with each side of resistance R . Find the equivalent resistance between any two of its adjacent corners.
Question: Field and force with three charges? What is the electric field at the location of Q1, due to Q 2 ?
What is the maximum displacement of the bridge deck?
What is the magnitude of the current in the wire as a function of time?
Questions on blackbody, Infra-Red Detectors & Optic Lens and Digital Image.
Illustrate the cause of the components accelerating from rest down the conveyor.
Calculate the dc voltage applied to the circuit.
Quadrupole moments in the shell model
Determine the tension in each string
Calculate the smallest coefficient of static friction necessary for mass A to remain stationary.
Evaluate maximum altitude?
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