The acceleration function (in m/s²) and the initial velocity are given for a particle moving along a line. Find the velocity at time t and the distance traveled during the given time interval. a(t)=t+4, v(0) = 3,0 ≤ t ≤ 10 A. v(t) = 2 + 3 m/s, 596 / m B. v(t) = 2 + 4t + 3 m/s, 496 / m t² C. v(t) = +4t+ 3 m/s, 396 / m D. v(t) = + 3t m/s, 546 m E. v(t) = 2 + 3t m/s, 571 / m

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 acceleration function (in m/s²) and the initial velocity are given for a
particle moving along a line. Find the velocity at time t and the distance
traveled during the given time interval.
a(t)=t+4, v(0) = 3,0 ≤ t ≤ 10
A. v(t) =
+ 3 m/s, 596 m
/
B. v(t) = ¹2 + 4t + 3 m/s, 496 / m
2
C. v(t) = 2 + 4t + 3 m/s, 396 / m
D. v(t) = ½ + 3t m/s, 546/m
2
E. v(t) = + 3t m/s, 571/m
1/2
Transcribed Image Text:The acceleration function (in m/s²) and the initial velocity are given for a particle moving along a line. Find the velocity at time t and the distance traveled during the given time interval. a(t)=t+4, v(0) = 3,0 ≤ t ≤ 10 A. v(t) = + 3 m/s, 596 m / B. v(t) = ¹2 + 4t + 3 m/s, 496 / m 2 C. v(t) = 2 + 4t + 3 m/s, 396 / m D. v(t) = ½ + 3t m/s, 546/m 2 E. v(t) = + 3t m/s, 571/m 1/2
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