A graph of the x component of the electric field as a function of x in a region of space is shown in the figure. The scale of the vertical axis is set by Exs=20.0 N/C. The y and z components of the electric field are zero in this region. If the electric potential at the origin is 18 V, (a) what is the electric potential at x = 2.0 m, (b) what is the greatest positive value of the electric potential for points on the x axis for which 0 <= x <= 6.0 m, and (c) for what value of x is the electric potential zero? (a) Number i (b) Number i Units Units E, (N/C) M 56 x (m) 0

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A graph of the x component of the electric field as a function of x in a region of space is shown in the figure. The scale of the vertical axis
is set by Exs=20.0 N/C. The y and z components of the electric field are zero in this region. If the electric potential at the origin is 18 V,
(a) what is the electric potential at x = 2.0 m, (b) what is the greatest positive value of the electric potential for points on the x axis for
which 0 <= x <= 6.0 m, and (c) for what value of x is the electric potential zero?
(a) Number i
(b) Number i
(c) Number
i
Units
Units
Units
Ę (N/C)
E
0
2/3 456
x (m)
Transcribed Image Text:A graph of the x component of the electric field as a function of x in a region of space is shown in the figure. The scale of the vertical axis is set by Exs=20.0 N/C. The y and z components of the electric field are zero in this region. If the electric potential at the origin is 18 V, (a) what is the electric potential at x = 2.0 m, (b) what is the greatest positive value of the electric potential for points on the x axis for which 0 <= x <= 6.0 m, and (c) for what value of x is the electric potential zero? (a) Number i (b) Number i (c) Number i Units Units Units Ę (N/C) E 0 2/3 456 x (m)
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