8B4N 5 F. to H. K D R. M 7. 4. 2$ 6 3. # 2 * & F4 000 O00 F5 F3 F2 MacBook Air 8- 9- 8- 9- 3. 2. 4. 6. 8. 2. 4. 6. 10: 9- 41 8- 9- 4. 21 2. 2. 4. 21 2. 4. Given the graph of f "(x) below, which are possible graphs of f(x)? 1/3 M. * 00 #3 =t-t+t, where d is distance (meters) and t is time (seconds). If an object's position is described by d(t) %3D 2. Which of the following describe the behavior of d" (t)? o d" (t)is always positive. o d"(t) is positive when d(t) is concave up t > andd" (t) is negative when d(t) is concave down for t< 3 is positive when d(t) is concave up t < andd" (t) is negative when d(t) is concave down for t >- (1) „P o d" (t) is always negative. o d" (t) 1. 2 3 4 5 6 7 8. 6. 1. Ne MacBook Air F7 F8 F5 F2 F3 & 24 4. 2 7. 6. 5. H. B.

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter5: Inverse, Exponential, And Logarithmic Functions
Section5.4: Logarithmic Functions
Problem 44E
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Question
8B4N
5
F.
to
H.
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Given the graph of f "(x) below, which are possible graphs of f(x)?
Transcribed Image Text:8B4N 5 F. to H. K D R. M 7. 4. 2$ 6 3. # 2 * & F4 000 O00 F5 F3 F2 MacBook Air 8- 9- 8- 9- 3. 2. 4. 6. 8. 2. 4. 6. 10: 9- 41 8- 9- 4. 21 2. 2. 4. 21 2. 4. Given the graph of f "(x) below, which are possible graphs of f(x)?
1/3
M.
* 00
#3
=t-t+t, where d is distance (meters) and t is time (seconds).
If an object's position is described by d(t)
%3D
2.
Which of the following describe the behavior of d" (t)?
o d" (t)is always positive.
o d"(t) is positive when d(t) is concave up t > andd" (t) is negative when d(t) is concave down for t<
3
is positive when d(t) is concave up t < andd" (t) is negative when d(t) is concave down for t >-
(1) „P
o d" (t) is always negative.
o d" (t)
1.
2 3
4 5 6 7
8.
6.
1.
Ne
MacBook Air
F7
F8
F5
F2
F3
&
24
4.
2
7.
6.
5.
H.
B.
Transcribed Image Text:1/3 M. * 00 #3 =t-t+t, where d is distance (meters) and t is time (seconds). If an object's position is described by d(t) %3D 2. Which of the following describe the behavior of d" (t)? o d" (t)is always positive. o d"(t) is positive when d(t) is concave up t > andd" (t) is negative when d(t) is concave down for t< 3 is positive when d(t) is concave up t < andd" (t) is negative when d(t) is concave down for t >- (1) „P o d" (t) is always negative. o d" (t) 1. 2 3 4 5 6 7 8. 6. 1. Ne MacBook Air F7 F8 F5 F2 F3 & 24 4. 2 7. 6. 5. H. B.
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