The graph of the velocity of a car accelerating from rest to a speed of 90 km/h over a period of 30 seconds is shown. v (km/h) 90 60 The tv coordinate plane is given. The units of t are seconds and the units of v are km/h. A curve entirely in the first quadrant goes up and right becoming less steep, going through the following approximate points. (2.5, 23) (7.5, 50) (12.5, 65.5) (17.5, 77.5) (22.5, 85.5) (27.5, 89) Use this graph and a midpoint Riemann sum with six equal subintervals to estimate the distance traveled (in km) by the car during this time period. (Round your answer to two decimal places.) 1952.5 km
The graph of the velocity of a car accelerating from rest to a speed of 90 km/h over a period of 30 seconds is shown. v (km/h) 90 60 The tv coordinate plane is given. The units of t are seconds and the units of v are km/h. A curve entirely in the first quadrant goes up and right becoming less steep, going through the following approximate points. (2.5, 23) (7.5, 50) (12.5, 65.5) (17.5, 77.5) (22.5, 85.5) (27.5, 89) Use this graph and a midpoint Riemann sum with six equal subintervals to estimate the distance traveled (in km) by the car during this time period. (Round your answer to two decimal places.) 1952.5 km
Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
Section: Chapter Questions
Problem 1RCC: (a) What is a function? What are its domain and range? (b) What is the graph of a function? (c) How...
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The graph of the velocity of a car accelerating from rest to a speed of 90 km/h over a period of 30 seconds is shown.
Use this graph and a midpoint Riemann sum with six equal subintervals to estimate the distance traveled (in km) by the car during this time period. (Round your answer to two decimal places.)
Graph Description:
The t v coordinate plane is given. The units of t are seconds and the units of v are km/h. A curve entirely in the first quadrant goes up and right becoming less steep, going through the following approximate points.
- (2.5, 23)
- (7.5, 50)
- (12.5, 65.5)
- (17.5, 77.5)
- (22.5, 85.5)
- (27.5, 89)

Transcribed Image Text:The graph of the velocity of a car accelerating from rest to a speed of 90 km/h over a period of 30 seconds is shown.
v (km/h)
90
60
The t v coordinate plane is given. The units of t are seconds and
the units of v are km/h. A curve entirely in the first quadrant goes
up and right becoming less steep, going through the following
approximate points. (2.5, 23) (7.5, 50) (12.5, 65.5) (17.5, 77.5)
(22.5, 85.5) (27.5, 89)
Use this graph and a midpoint Riemann sum with six equal subintervals to estimate the distance traveled (in km) by the car during this time period. (Round your answer to two decimal places.)
1952.5
X km

Transcribed Image Text:v (km/h)
90
60
30
t (seconds)
10
20
30
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