A disk with uniform surface charge density = -8.60 μC/m² is oriented as shown in the diagram below. The field at a distance y from the center of a disk (of radius r = 0.420 m) and along its axis is given by E = - 216(¹-√7²+2), where = 8.85 x 10-12 c²/(N - m²) is the permittivity of free space. What is the electric potential at a location P whose coordinates are (0, 0.115 m)? Take the electric potential at infinity to be zero. V УА P (0, y)

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A disk with uniform surface charge density = -8.60 μC/m² is oriented as shown in the diagram below. The field at a
o
y
- 2/0 (¹ - √√√² + ²),
1-
distance y from the center of a disk (of radius r = 0.420 m) and along its axis is given by E = -
where & = 8.85 x 10-12 c²/(N m²) is the permittivity of free space. What is the electric potential at a location P whose
coordinates are (0, 0.115 m)? Take the electric potential at infinity to be zero.
V
y
P (0, y)
x
Transcribed Image Text:A disk with uniform surface charge density = -8.60 μC/m² is oriented as shown in the diagram below. The field at a o y - 2/0 (¹ - √√√² + ²), 1- distance y from the center of a disk (of radius r = 0.420 m) and along its axis is given by E = - where & = 8.85 x 10-12 c²/(N m²) is the permittivity of free space. What is the electric potential at a location P whose coordinates are (0, 0.115 m)? Take the electric potential at infinity to be zero. V y P (0, y) x
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