P 2R R. The center of the charged circle of radius R = 10cm in the x-z plane is coincident with the origin of the coordinate system in the figure. The total charge Q on the circle is not uniform, but is distributed according to the relation 1 = V50. Where 0 is the angle between the radius R of the circle and the +x-axis in radian. Find the magnitude of the Electric field due to these charges in the y-axis direction only, at the point P at a distance of 2R. ke -, ɛo = 9x10-12 (S) and n = 3 Wm b) ) c) ) d) (4) e) 1013 1013 a) 15 1013 1013 1013 75 105 135
P 2R R. The center of the charged circle of radius R = 10cm in the x-z plane is coincident with the origin of the coordinate system in the figure. The total charge Q on the circle is not uniform, but is distributed according to the relation 1 = V50. Where 0 is the angle between the radius R of the circle and the +x-axis in radian. Find the magnitude of the Electric field due to these charges in the y-axis direction only, at the point P at a distance of 2R. ke -, ɛo = 9x10-12 (S) and n = 3 Wm b) ) c) ) d) (4) e) 1013 1013 a) 15 1013 1013 1013 75 105 135
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Transcribed Image Text:P
2R
R.
The center of the charged circle of radius R = 10cm in the x-z plane is coincident
with the origin of the coordinate system in the figure. The total charge Q on the circle
is not uniform, but is distributed according to the relation 1 = V50. Where 0 is the
angle between the radius R of the circle and the +x-axis in radian. Find the magnitude
of the Electric field due to these charges in the y-axis direction only, at the point P
at a distance of 2R. ke
-, ɛo = 9x10-12 (S) and n = 3
Wm
b) ) c) ) d) (4) e)
1013
1013
a)
15
1013
1013
1013
75
105
135
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