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Problem 2
An electric field is given by E-260 N/C throughout the right
end surface (surface 1 on the figure) of a cylinder geometry, as
shown in the figure below. Consider E-366 N/C throughout
the left end surface (surface 2 on the figure). Assume E-147
N/C throughout the central curved surface (surface 3 on the
figure). Consider the length of the cylinder L 47 cm and its
radius R-10 cm. The center of the cylinder is at the origin and its
axis along the x-axis, so that one end is at x - 23.5 cm and the
other is at x=-23.5 cm.
L
Calculate the electrical flux o, through the right end
surface (surface 1 on the figure) of the cylinder.
2
Calculate the electrical flux o, through the left end
surface (surface 2 on the figure) of the cylinder
фа
Calculate the electrical flux os through the central
curved surface (surface 3 on the figure) of the cylinder.
If the net charge inside the closed surface of the
cylinder is 6.87x 10 C, what would be the net outward flux
through the cylinder's surface?
net
Transcribed Image Text:Problem 2 An electric field is given by E-260 N/C throughout the right end surface (surface 1 on the figure) of a cylinder geometry, as shown in the figure below. Consider E-366 N/C throughout the left end surface (surface 2 on the figure). Assume E-147 N/C throughout the central curved surface (surface 3 on the figure). Consider the length of the cylinder L 47 cm and its radius R-10 cm. The center of the cylinder is at the origin and its axis along the x-axis, so that one end is at x - 23.5 cm and the other is at x=-23.5 cm. L Calculate the electrical flux o, through the right end surface (surface 1 on the figure) of the cylinder. 2 Calculate the electrical flux o, through the left end surface (surface 2 on the figure) of the cylinder фа Calculate the electrical flux os through the central curved surface (surface 3 on the figure) of the cylinder. If the net charge inside the closed surface of the cylinder is 6.87x 10 C, what would be the net outward flux through the cylinder's surface? net
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