3. Consider the function f (x) = 2 x + 1 on the interval [2, 6]. (a) Compute the left-endpoint approximation for f (x) on [2, 6] using 4 subintervals. (b) Compute the right-endpoint approximation for f (x) on [2, 6] using 4 subintervals. (c) Compute the midpoint approximation
3. Consider the function f (x) = 2 x + 1 on the interval [2, 6]. (a) Compute the left-endpoint approximation for f (x) on [2, 6] using 4 subintervals. (b) Compute the right-endpoint approximation for f (x) on [2, 6] using 4 subintervals. (c) Compute the midpoint approximation
Chapter3: Functions
Section3.3: Rates Of Change And Behavior Of Graphs
Problem 2SE: If a functionfis increasing on (a,b) and decreasing on (b,c) , then what can be said about the local...
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3. Consider the function f (x) = 2
x + 1 on the interval [2, 6].
(a) Compute the left-endpoint approximation for f (x) on [2, 6] using 4 subintervals.
(b) Compute the right-endpoint approximation for f (x) on [2, 6] using 4 subintervals.
(c) Compute the midpoint approximation for f (x) on [2, 6] using 4 subintervals.
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