For this problem, you will need to use the Desmos Riemann Sum Calculator. (This link opens a new tab/window.) Initially, the calculator shows a left Riemann sum with n = 5 subintervals for the function f(x) = 2x + 1 on the interval [1,4]. Use the applet to compute the following sums for this function on this interval. Ls = M₁ = R$ = L25 = L100 M25= M100 R25= R100= Now use basic geometry to determine the exact area bounded by f(x) = 2x + 1 and the z-axis on the interval [1,4]. Exact Area = Make a note of any patterns you observe.

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter5: Inverse, Exponential, And Logarithmic Functions
Section5.2: Exponential Functions
Problem 71E
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For this problem, you will need to use the Desmos Riemann Sum Calculator. (This link opens a new tab/window.)
Initially, the calculator shows a left Riemann sum with n = 5 subintervals for the function f(x) = 2x + 1 on the interval [1, 4]. Use the applet to
compute the following sums for this function on this interval.
Lg =
M₁ =
R$ =
L25 =
M25
L100
M100 =
R25
R100=
Now use basic geometry to determine the exact area bounded by f(x) = 2x + 1 and the x-axis on the interval [1,4].
Exact Area =
Make a note of any patterns you observe.
Transcribed Image Text:For this problem, you will need to use the Desmos Riemann Sum Calculator. (This link opens a new tab/window.) Initially, the calculator shows a left Riemann sum with n = 5 subintervals for the function f(x) = 2x + 1 on the interval [1, 4]. Use the applet to compute the following sums for this function on this interval. Lg = M₁ = R$ = L25 = M25 L100 M100 = R25 R100= Now use basic geometry to determine the exact area bounded by f(x) = 2x + 1 and the x-axis on the interval [1,4]. Exact Area = Make a note of any patterns you observe.
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