Question Details Example 24.8A Nonconducting Plane Sheet of Charge Problem Find the electric field due to a nonconducting, infinite plane with uniform surface charge density o. Strategy To reflect the symmetry of this plane, use a small cylinder whose axis is perpendicular to the plane and whose ends each have the same area and are equidistant from the plane. Apply Gauss's law to this and then solve for E. Gaussian surface Figure 24.15 A cylindrical gaussian surface penetrating an infinite sheet of charge. The flux is EA through each end of the gaussian surface and zero through its curved surface.

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Chapter1: Units, Trigonometry. And Vectors
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Question Details
Example 24.8 A Nonconducting Plane Sheet of Charge
Problem Find the electric field due to a nonconducting,
infinite plane with uniform surface charge density o.
Strategy To reflect the symmetry of this plane, use a small
cylinder whose axis is perpendicular to the plane and whose
ends each have the same area and are equidistant from the
plane. Apply Gauss's law to this and then solve for E.
Gaussian
surface
Figure 24.15 A cylindrical gaussian surface
penetrating an infinite sheet of charge. The
flux is EA through each end of the gaussian
surface and zero through its curved surface.
Transcribed Image Text:Question Details Example 24.8 A Nonconducting Plane Sheet of Charge Problem Find the electric field due to a nonconducting, infinite plane with uniform surface charge density o. Strategy To reflect the symmetry of this plane, use a small cylinder whose axis is perpendicular to the plane and whose ends each have the same area and are equidistant from the plane. Apply Gauss's law to this and then solve for E. Gaussian surface Figure 24.15 A cylindrical gaussian surface penetrating an infinite sheet of charge. The flux is EA through each end of the gaussian surface and zero through its curved surface.
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