Using Properties of Definite Integrals In Exercises 37-44, evaluate the definite integral using the values below. ∫ 2 6 x 3 d x = 320 , ∫ 2 6 x d x = 16 , ∫ 2 6 d x = 4 ∫ 2 6 ( 2 x 3 − 10 + 7 ) d x
Using Properties of Definite Integrals In Exercises 37-44, evaluate the definite integral using the values below. ∫ 2 6 x 3 d x = 320 , ∫ 2 6 x d x = 16 , ∫ 2 6 d x = 4 ∫ 2 6 ( 2 x 3 − 10 + 7 ) d x
Solution Summary: The author explains how to calculate a definite integral displaystyle, using the provided values.
Using Properties of Definite Integrals In Exercises 37-44, evaluate the definite integral using the values below.
∫
2
6
x
3
d
x
=
320
,
∫
2
6
x
d
x
=
16
,
∫
2
6
d
x
=
4
∫
2
6
(
2
x
3
−
10
+
7
)
d
x
With differentiation, one of the major concepts of calculus. Integration involves the calculation of an integral, which is useful to find many quantities such as areas, volumes, and displacement.
the correct answer is Ccould you please show me how to do it using the residue theorem
Use the information to find and compare Δy and dy. (Round your answers to four decimal places.)
y = x4 + 7 x = −3 Δx = dx = 0.01
Δy =
dy =
4. A car travels in a straight line for one hour. Its velocity, v, in miles per hour at six minute intervals is shown
in the table. For each problem, approximate the distance the car traveled (in miles) using the given method,
on the provided interval, and with the given number of rectangles or trapezoids, n.
Time (min) 0 6 12 18|24|30|36|42|48|54|60
Speed (mph) 0 10 20 40 60 50 40 30 40 40 65
a.) Left Rectangles, [0, 30] n=5
b.) Right Rectangles, [24, 42] n=3
c.) Midpoint Rectangles, [24, 60] n=3
d.) Trapezoids, [0, 24] n=4
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Definite Integral Calculus Examples, Integration - Basic Introduction, Practice Problems; Author: The Organic Chemistry Tutor;https://www.youtube.com/watch?v=rCWOdfQ3cwQ;License: Standard YouTube License, CC-BY