Use the Divergence Theorem to evaluate the flux (iint_{mathcal{S}} mathbf{F} cdot d mathbf{S}). (mathbf{F}(x, y, z)=leftlangle e^{x+y},
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Use the Divergence Theorem to evaluate the flux \(\iint_{\mathcal{S}} \mathbf{F} \cdot d \mathbf{S}\).
\(\mathbf{F}(x, y, z)=\left\langle e^{x+y}, e^{x+z}, e^{x+y}ightangle, \mathcal{S}\) is the boundary of the unit cube \(0 \leq x \leq 1,0 \leq y \leq 1,0 \leq z \leq 1\).
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THEOREM 1 Divergence Theorem Let S be a closed surface that encloses a region W in R. Assume that S is piecewise smooth and is oriented by normal vectors pointing to the outside of W. If F is a vector field whose components have continuous partial derivatives in an open domain containing W, then 11 F. ds = [1, dS div(F) dV 1
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