1 Suppose that L is a location function of an object, given as L(t) = We will compute the 3t – 2 instantaneous velocity of the object at t as follows. Use exact values. First we will compute and simplify L(t + h). L(t + h) = Then we compute and simplify the average velocity between t and t + h. L(t + h) – L(t) h The instantaneous velocity of the object at t is the limit of the average velocity as h approaches zero. L(t + h) – L(t) L'(t) = lim h0 h
1 Suppose that L is a location function of an object, given as L(t) = We will compute the 3t – 2 instantaneous velocity of the object at t as follows. Use exact values. First we will compute and simplify L(t + h). L(t + h) = Then we compute and simplify the average velocity between t and t + h. L(t + h) – L(t) h The instantaneous velocity of the object at t is the limit of the average velocity as h approaches zero. L(t + h) – L(t) L'(t) = lim h0 h
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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![1
Suppose that L is a location function of an object, given as L(t) =
We will compute the
3t – 2
instantaneous velocity of the object at t as follows. Use exact values.
First we will compute and simplify L(t + h).
L(t + h) =
Then we compute and simplify the average velocity between t and t + h.
L(t + h) – L(t)
The instantaneous velocity of the object at t is the limit of the average velocity as h approaches zero.
L(t + h) – L(t)
L'(t) = lim
h0
h](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fe0648b3d-e58b-414c-bd3f-68a67c7f4a42%2F90778acf-dd2f-495e-88d7-f41afca03924%2F39fykyn_processed.png&w=3840&q=75)
Transcribed Image Text:1
Suppose that L is a location function of an object, given as L(t) =
We will compute the
3t – 2
instantaneous velocity of the object at t as follows. Use exact values.
First we will compute and simplify L(t + h).
L(t + h) =
Then we compute and simplify the average velocity between t and t + h.
L(t + h) – L(t)
The instantaneous velocity of the object at t is the limit of the average velocity as h approaches zero.
L(t + h) – L(t)
L'(t) = lim
h0
h
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