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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ELECTROSTATICS show solution
Coulomb’s Law
- A point charge is placed 0.12m away from another charge . Solve for the electrostatic force exerted by the charges to each other.q
- Two charged spheres of identical charges q = 4.0 µC is separated 0.70m away from each other. Solve the electrostatic force experienced by the charges.
- Two balloons with charges of +3.37 µC and -8.21 µC exerted an attractive force towards each other with of 0.0626 N. Determine the how far the charges from each other.
Electric Field
- Determine the magnitude of uniform electric field if point charge is placed 25cm from the source.
- A charge is placed in a uniform electric field . Solve for the electrical force on the charge.
- A dipole is set up 0.15m apart with a charge magnitude of C for each charge (one is +C, the other one is -C since dipole). Solve for the magnitude of electric field at the midpoint of the dipole.
Electric Flux and Gauss’s Law
- A circular plane whose r=2.2m is placed in an electric field E=800N/C. The electric field makes an angle of 20 ͦwith the plane. Solve for the magnitude of the electric flux through the plane.
- A square plane with each side s=1m is placed in an electric field E=800N/C. The electric field makes an angle of 90 ͦwith the plane. Solve for the magnitude of the electric flux through the plane.
- Solve for the electric flux through a 3D closed surface enclosing a charge
Electric Potential Energy, Electric Potential, and Potential Difference
- A test charge C is found 0.5m from a point charge that creates a uniform electric field . Solve for the electric potential energy of the test charge.
- A charge in a uniform electric field is moved from initial distance to final distance . Solve for the following:
- Electric potential energy of charge q at initial distance
- Electric potential energy of charge q at final distance
- Electric potential of charge q at initial distance
- Electric potential of charge q at final distance
- Potential difference from initial distance to final distance
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