Potential [V] 60 40 20 0 -20 -40 -60 0 10 20 30 40 50 x [cm] 60 70 80 The graph above shows the electric potential as a function of x. a. What is the electric field at x₁ = 27 cm, x₂ = 45.5 cm, and at x3 = 66 cm?

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
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Chapter20: Electric Potential And Capacitance
Section: Chapter Questions
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b. The electric potential along the z axis is V(z) = 100 zª V; with z in meters. What is the strength of the electric field at z = 0 and at z = 6.75 m?
E(0)
=
E(6.75)
Submit Answer Tries 0/10
=
c. The electric potential in a region of space is V(x,y) = (225 x² – 125 y²) V; with x and y in meters. What are the strength and the direction of the electric field at (3.8, 4.3) m? Give the direction as the angle with respect to the
positive x axis.
E(3.8,4.3) =
angle (in degrees)
Transcribed Image Text:b. The electric potential along the z axis is V(z) = 100 zª V; with z in meters. What is the strength of the electric field at z = 0 and at z = 6.75 m? E(0) = E(6.75) Submit Answer Tries 0/10 = c. The electric potential in a region of space is V(x,y) = (225 x² – 125 y²) V; with x and y in meters. What are the strength and the direction of the electric field at (3.8, 4.3) m? Give the direction as the angle with respect to the positive x axis. E(3.8,4.3) = angle (in degrees)
Potential [V]
60
40
20
0
-20
-40
-60
0
10 20 30
40
x [cm]
50
60 70 80
The graph above shows the electric potential as a function of x.
a. What is the electric field at x₁ = 27 cm, X₂ = 45.5 cm, and at X3
=
66 cm?
Transcribed Image Text:Potential [V] 60 40 20 0 -20 -40 -60 0 10 20 30 40 x [cm] 50 60 70 80 The graph above shows the electric potential as a function of x. a. What is the electric field at x₁ = 27 cm, X₂ = 45.5 cm, and at X3 = 66 cm?
Expert Solution
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1)Electric potential versus position graph is as shown in the figure : The electric potential is plotted along y axis in units of volts and the position is plotted along x axis in units of cm 

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