Part A Write the function if Cecily releases the ball 40 feet above the ground at a velocity of 32 feet per second, and then graph it by going to your math tools and opening the Graph tool. To create the graph, select the correct relationship and then enter the values for the variables. Capture a screenshot of your graph and paste it below. 15px Space used (includes formatting): 0 / 15000 Part B What does the maximum represent, and what is it? 15px Space used (includes formatting): 0 / 15000 Part C What does the y-intercept represent, and what is it? 15px Space used (includes formatting): 0 / 15000 Part D What do the x-intercepts represent, and what are they? Are they both useful? 15px

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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Part A Write the function if Cecily releases the ball 40 feet above the ground at a velocity of 32 feet per second, and then graph it by going to your math tools and opening the Graph tool. To create the graph, select the correct relationship and then enter the values for the variables. Capture a screenshot of your graph and paste it below. 15px Space used (includes formatting): 0 / 15000 Part B What does the maximum represent, and what is it? 15px Space used (includes formatting): 0 / 15000 Part C What does the y-intercept represent, and what is it? 15px Space used (includes formatting): 0 / 15000 Part D What do the x-intercepts represent, and what are they? Are they both useful? 15px
JL
Part F
The force of gravity is different on Mars than on Earth. The function of the same situation on Mars
would be represented by the graph shown below. On which planet would the ball go highest? About
how high would it go?
f(x)
+120
+110
+100
+90
Height (feet)
+80-
+70
+60.
-60
+40
5
+30
+20
-10
1
C M
3
4
5
Time (seconds)
B
&
6
7
8
8
9
(
9
)
O
Stan
p
Dec 10
{
9:42 8
backspace
Transcribed Image Text:JL Part F The force of gravity is different on Mars than on Earth. The function of the same situation on Mars would be represented by the graph shown below. On which planet would the ball go highest? About how high would it go? f(x) +120 +110 +100 +90 Height (feet) +80- +70 +60. -60 +40 5 +30 +20 -10 1 C M 3 4 5 Time (seconds) B & 6 7 8 8 9 ( 9 ) O Stan p Dec 10 { 9:42 8 backspace
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