#10 Hollow Spherical Shell A hollow sphere of radius R bears a charge Q uniformly spread over its surface. In the space below, sketch the electric field as radial distance r from the center to a distance twice the radius, r = 2R. For the sake of convenience, let us use the scale function of the 1 Q Eo 4περ R2 in making the graph. E Eo +>r 2R R #11 Uniformly Charged Sphere A uniformly charged sphere of radius R bears a charge Q uniformly distributed through its volume. In the space below, sketch the electric field as

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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#10 Hollow Spherical Shell A hollow sphere of radius R bears a charge Q uniformly
spread over its surface. In the space below, sketch the electric field as a function of the
radial distance r from the center to a distance twice the radius, r =
convenience, let us use the scale
2R. For the sake of
1 Q
Eo
(2)
4περ R
in making the graph.
E
Eo
+>r
2R
R
#11 Uniformly Charged Sphere A uniformly charged sphere of radius R bears a charge
Q uniformly distributed through its volume. In the space below, sketch the electric field as
Transcribed Image Text:#10 Hollow Spherical Shell A hollow sphere of radius R bears a charge Q uniformly spread over its surface. In the space below, sketch the electric field as a function of the radial distance r from the center to a distance twice the radius, r = convenience, let us use the scale 2R. For the sake of 1 Q Eo (2) 4περ R in making the graph. E Eo +>r 2R R #11 Uniformly Charged Sphere A uniformly charged sphere of radius R bears a charge Q uniformly distributed through its volume. In the space below, sketch the electric field as
a function of the radial distance r from the center to a distance twice the radius, r = 2R.
For the sake of convenience, let us use the scale Eo as defined in #5.
E
Eo
+>r
2R
R
Transcribed Image Text:a function of the radial distance r from the center to a distance twice the radius, r = 2R. For the sake of convenience, let us use the scale Eo as defined in #5. E Eo +>r 2R R
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