The position of an object moving in a straight line, in miles, can be modeled by the function s(t), where t is measured in days. Selected values of s(t) are shown in the table below. Approximate the average position of the object over the interval [0, 10] using a right Riemann sum with 4 subintervals indicated by the table. You may use a calculator if necessary. t 0 2 4 7 10 s(t) 15 19 21 30 45

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 position of an object moving in a straight line, in miles, can be modeled by the function
s(t), where t is measured in days. Selected values of s(t) are shown in the table below.
Approximate the average position of the object over the interval [0, 10] using a right Riemann
sum with 4 subintervals indicated by the table. You may use a calculator if necessary.
t
0
2
4
7
10
s(t) 15
19
21
30
45
Transcribed Image Text:The position of an object moving in a straight line, in miles, can be modeled by the function s(t), where t is measured in days. Selected values of s(t) are shown in the table below. Approximate the average position of the object over the interval [0, 10] using a right Riemann sum with 4 subintervals indicated by the table. You may use a calculator if necessary. t 0 2 4 7 10 s(t) 15 19 21 30 45
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