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(Solved): The figure shows a prism-shaped object that is 40.0cm high, 30.0cm deep, and 80.0cm long. The ...




The figure shows a prism-shaped object that is \( 40.0 \mathrm{~cm} \) high, \( 30.0 \mathrm{~cm} \) deep, and \( 80.0 \mathr
left end).
\( \Phi_{\mathrm{III}}= \)
\( N \cdot \mathrm{m}^{2} / \mathrm{C} \)
Calculate the clectric flux \( \Phi_{1 V} \)
The figure shows a prism-shaped object that is high, deep, and long. The prism is immersed in a uniform electric ficld of directed parallel to the -axi Calculate the electric flux out of Surface I (the back surface). Calculate the electric flux out of Surface II (the bottom surface). Calculate the electric flux out of Surface III (the left end). left end). Calculate the clectric flux out of Surface IV (the right end). Calculate the electric flux out of Surface V (the front surface). Calculate the net electric flux out of the entire closed surface. If in addition to the given electric field the prism also enclosed a point charge of , how would your answers above change qualitatively, if at all? The electric flux out of each surface would increase. The electric flux out of each surface would decrease. The electric flux through each surface would not change.


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The electric flux passing through a given surface area is equal to the total number of electric lines of force passing in the area .Electric flux is
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