Suppose we've managed to set up an electric field that can be described by the function E→=w1y2ı^+w2z2ȷ^+w3x2k^, where w1=9 N/(C⋅ m2), w2=10 N/(C⋅ m2), and w3=10 N/(C⋅ m2). Let's look at a rectangular box in the Cartesian coordinate axes, shown below, with dimensions a=2.5 m along the x-axis, b=7 m along the y-axis, c=3 m along the z-axis. What is the magnitude of the electric flux passing through the shaded area?
Suppose we've managed to set up an electric field that can be described by the function E→=w1y2ı^+w2z2ȷ^+w3x2k^, where w1=9 N/(C⋅ m2), w2=10 N/(C⋅ m2), and w3=10 N/(C⋅ m2). Let's look at a rectangular box in the Cartesian coordinate axes, shown below, with dimensions a=2.5 m along the x-axis, b=7 m along the y-axis, c=3 m along the z-axis. What is the magnitude of the electric flux passing through the shaded area?
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Suppose we've managed to set up an electric field that can be described by the function E→=w1y2ı^+w2z2ȷ^+w3x2k^, where w1=9 N/(C⋅ m2), w2=10 N/(C⋅ m2), and w3=10 N/(C⋅ m2). Let's look at a rectangular box in the Cartesian coordinate axes, shown below, with dimensions a=2.5 m along the x-axis, b=7 m along the y-axis, c=3 m along the z-axis.
What is the magnitude of the electric flux passing through the shaded area?
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Transcribed Image Text:Area in question
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