The function s(t) = 6t + 5t + 7 gives the distance from a starting point at time t of a particle moving along a line. Find the velocity and acceleration functions. Then find the velocity and acceleration at t = 0 and t= 4. Assume that time is measured in seconds and distance is measured in centimeters. %3D Velocity will be in centimeters per second (cm/sec) and acceleration in centimeters per second per second (cm/sec"). v(t) = (Do not factor.) a(t) = v(0) = cm/sec v(4) = cm/sec cm/sec? a(4) = cm/sec2

Functions and Change: A Modeling Approach to College Algebra (MindTap Course List)
6th Edition
ISBN:9781337111348
Author:Bruce Crauder, Benny Evans, Alan Noell
Publisher:Bruce Crauder, Benny Evans, Alan Noell
Chapter2: Graphical And Tabular Analysis
Section2.1: Tables And Trends
Problem 1TU: If a coffee filter is dropped, its velocity after t seconds is given by v(t)=4(10.0003t) feet per...
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The function s(t) = 6t + 5t + 7 gives the distance from a starting point at time t of a particle moving along a line. Find the velocity and acceleration
functions. Then find the velocity and acceleration at t = 0 and t= 4. Assume that time is measured in seconds and distance is measured in centimeters.
%3D
Velocity will be in centimeters per second (cm/sec) and acceleration in centimeters per second per second (cm/sec").
v(t) = (Do not factor.)
a(t) =
v(0) = cm/sec
v(4) = cm/sec
cm/sec?
a(4) = cm/sec2
Transcribed Image Text:The function s(t) = 6t + 5t + 7 gives the distance from a starting point at time t of a particle moving along a line. Find the velocity and acceleration functions. Then find the velocity and acceleration at t = 0 and t= 4. Assume that time is measured in seconds and distance is measured in centimeters. %3D Velocity will be in centimeters per second (cm/sec) and acceleration in centimeters per second per second (cm/sec"). v(t) = (Do not factor.) a(t) = v(0) = cm/sec v(4) = cm/sec cm/sec? a(4) = cm/sec2
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