A proton is released at the origin in a constant electric field of 850 N/C acting in the positive x-direction. Find the change in the electric potential energy associated with the proton after it travels to x 5 2.5 m. (a) 3.4 3 10216 J (b) 23.4 3 10216 J (c) 2.5 3 10216 J (d) 22.5 3 10216 J (e) 21.6 3 10219 J
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Textbook Solutions for College Physics
Question
A positive point charge q 5 12.50 nC is located at x 5 1.20 m and a negative charge of 22q 5 25.00 nC is located at the origin as in Figure P16.18. (a) Sketch the electric potential versus x for points along the x-axis in the range 21.50 m , x , 1.50 m. (b) Find a symbolic expression for the potential on the x-axis at an arbitrary point P between the two charges. (c) Find the electric potential at x 5 0.600 m. (d) Find the point along the x-axis between the two charges where the electric potential is zero.
Solution
The first step in solving 16 problem number trying to solve the problem we have to refer to the textbook question: A positive point charge q 5 12.50 nC is located at x 5 1.20 m and a negative charge of 22q 5 25.00 nC is located at the origin as in Figure P16.18. (a) Sketch the electric potential versus x for points along the x-axis in the range 21.50 m , x , 1.50 m. (b) Find a symbolic expression for the potential on the x-axis at an arbitrary point P between the two charges. (c) Find the electric potential at x 5 0.600 m. (d) Find the point along the x-axis between the two charges where the electric potential is zero.
From the textbook chapter Multiple Choice Questions you will find a few key concepts needed to solve this.
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