16. A particle P moves on the number line shown in part (a) of the accompanying figure. Part (b) shows the position of P as a function of time t. P s (cm) (a) s (cm) s = f(t) t (sec) 2 1 4 5 -2 (6, –4) -4 (b) a. When is P moving to the left? Moving to the right? Standing still? b. Graph the particle's velocity and speed (where defined). 3.

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
Chapter1: Functions
Section1.2: Functions Given By Tables
Problem 32SBE: Does a Limiting Value Occur? A rocket ship is flying away from Earth at a constant velocity, and it...
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16. A particle P moves on the number line shown in part (a) of the
accompanying figure. Part (b) shows the position of P as a function
of time t.
P
s (cm)
(a)
s (cm)
s = f(t)
t (sec)
2
1
4
5
-2
(6, –4)
-4
(b)
a. When is P moving to the left? Moving to the right? Standing
still?
b. Graph the particle's velocity and speed (where defined).
3.
Transcribed Image Text:16. A particle P moves on the number line shown in part (a) of the accompanying figure. Part (b) shows the position of P as a function of time t. P s (cm) (a) s (cm) s = f(t) t (sec) 2 1 4 5 -2 (6, –4) -4 (b) a. When is P moving to the left? Moving to the right? Standing still? b. Graph the particle's velocity and speed (where defined). 3.
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