An electrostatic force of 20N is exerted on a charge of 8.0 x 10 3 C at point P in an electric field. What is the magnitude of the electric filed intensity at point P?

College Physics
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ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
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SHOW ME WHAT YOU'VE GOT?
Problem Set -
Direction: Solve the following problem completely.
1. An electrostatic force of 20N is exerted on a charge of 8.0 x 10 3 C at point P in
an electric field. What is the magnitude of the electric filed intensity at point P?
2. A uniform electric field E = 5000 N/C passing through a flat square area A = 2
m2. Determine the electric flux.
Note: The angle between the electric field direction and a line drawn
perpendicular to the area is 60 °.
3. A Gaussian surface is a closed surface in three-dimensional space through which
the electric flux is calculated. Given a spherical Gaussian surface that has a
radius of 0.5 meters and encloses 30 electrons.
A. Find the value of the electric flux through this surface
B. From the calculated value of the electric flux, determine the value of the
electric field at a distance equal to 0.6 meters from the center of the surface.
4.Suppose you have a 12.0 V motorcycle battery that can move 5000 C of charge,
and a 12.0 V car battery that can move 60,000 C of charge. How much energy
does each deliver? (Assume that the numerical value of each charge is accurate to
three
significant
figures.
Transcribed Image Text:SHOW ME WHAT YOU'VE GOT? Problem Set - Direction: Solve the following problem completely. 1. An electrostatic force of 20N is exerted on a charge of 8.0 x 10 3 C at point P in an electric field. What is the magnitude of the electric filed intensity at point P? 2. A uniform electric field E = 5000 N/C passing through a flat square area A = 2 m2. Determine the electric flux. Note: The angle between the electric field direction and a line drawn perpendicular to the area is 60 °. 3. A Gaussian surface is a closed surface in three-dimensional space through which the electric flux is calculated. Given a spherical Gaussian surface that has a radius of 0.5 meters and encloses 30 electrons. A. Find the value of the electric flux through this surface B. From the calculated value of the electric flux, determine the value of the electric field at a distance equal to 0.6 meters from the center of the surface. 4.Suppose you have a 12.0 V motorcycle battery that can move 5000 C of charge, and a 12.0 V car battery that can move 60,000 C of charge. How much energy does each deliver? (Assume that the numerical value of each charge is accurate to three significant figures.
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