Finding an Equation of a Tangent Line In Exercises 67-74, (a) find in equation of the tangent line to the graph of the function at the given point, (b) use a graphing utility to graph the function and its tangent line at the point, and (c) use the tangent feature of a graphing utility to confirm your results. f ( x ) = sin 2 x ln x 2 , ( 1 , 0 )
Finding an Equation of a Tangent Line In Exercises 67-74, (a) find in equation of the tangent line to the graph of the function at the given point, (b) use a graphing utility to graph the function and its tangent line at the point, and (c) use the tangent feature of a graphing utility to confirm your results. f ( x ) = sin 2 x ln x 2 , ( 1 , 0 )
Solution Summary: The author calculates the acceleration of the fully loaded plane if it requires 0.7 mile of runaway and a speed of 160 miles per hour to lift off the weight.
Finding an Equation of a Tangent Line In Exercises 67-74, (a) find in equation of the tangent line to the graph of the function at the given point, (b) use a graphing utility to graph the function and its tangent line at the point, and (c) use the tangent feature of a graphing utility to confirm your results.
5
Use the method of disks to find the volume of the solid that is obtained
when the region under the curve y = over the interval [4,17] is rotated
about the x-axis.
3. Use the method of washers to find the volume of the solid that is obtained
when the region between the graphs f(x) = √√2 and g(x) = secx over the
interval ≤x≤ is rotated about the x-axis.
4. Use cylindrical shells to find the volume of the solid generated when the
region enclosed by the given curves is revolved about the x-axis.
y = √√x, y = 0, y = √√3
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