Chapter 5: Problem 31
Consider a solid that is generated by revolving a plane region about the \(y\) -axis. Describe the position of a representative rectangle when using (a) the shell method and (b) the disk method to find the volume of the solid.
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Chapter 5: Problem 31
Consider a solid that is generated by revolving a plane region about the \(y\) -axis. Describe the position of a representative rectangle when using (a) the shell method and (b) the disk method to find the volume of the solid.
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In Exercises \(35-40,\) sketch the region bounded by the graphs of the functions, and find the area of the region. $$ f(x)=2 \sin x, \quad g(x)=\tan x, \quad-\frac{\pi}{3} \leq x \leq \frac{\pi}{3} $$
Sketch the region bounded by the graphs of the algebraic functions and find the area of the region. $$ f(x)=x^{2}-4 x, \quad g(x)=0 $$
The value of a tract of timber is\(V(t)=100,000 e^{0.8 \sqrt{t}}\) where \(t\) is the time in years, with \(t=0\) corresponding to 1998 . If money earns interest continuously at \(10 \%,\) the present value of the timber at any time \(t\) is \(A(t)=V(t) e^{-0.10 t} .\) Find the year in which the timber should be harvested to maximize the present value function.
Define fluid pressure.
Let \(V\) be the region in the cartesian plane consisting of all points \((x, y)\) satisfying the simultaneous conditions \(|x| \leq y \leq|x|+3\) and \(y \leq 4\) Find the centroid \((\bar{x}, \bar{y})\) of \(V\).
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