Jake uses a slingshot to shoot a rock into the air from the bottom of a ravine. His friend times the flight of the rock from when it is shot until it lands to be 3 seconds. The rock reaches a maximum height at the lowest part of the bridge which is 81 ft. 81 ft Part A. Create a graph to represent the scenario. The graph should include at least the x- and y-intercepts and the vertex. (A complete graph consists of axis labels and appropriate scales, ordered pairs for each identified point, the function, and appropriate domain/range.) For this problem, you need to take a screenshot of your completed graph and upload it if you created a digital version Open a new tab and search for how to take a screenshot on your device if you do not know how to do this already. If you drew your graph on paper, take a picture of it and upload it here. 1 T T % &

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
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Jake uses a slingshot to shoot a rock into the air from the bottom of a ravine. His friend times the flight of the
rock from when it is shot until it lands to be 3 seconds. The rock reaches a maximum height at the lowest
part of the bridge which is 81 ft.
81 ft
Part A. Create a graph to represent the scenario. The graph should include at least the x- and y-intercepts
and the vertex. (A complete graph consists of axis labels and appropriate scales, ordered pairs for each
identified point, the function, and appropriate domain/range.)
For this problem, you need to take a screenshot of your completed graph and upload it if you created a digital version
Open a new tab and search for how to take a screenshot on your device if you do not know how to do this already.
If you drew your graph on paper, take a picture of it and upload it here.
1 T
T
%
&
Transcribed Image Text:Jake uses a slingshot to shoot a rock into the air from the bottom of a ravine. His friend times the flight of the rock from when it is shot until it lands to be 3 seconds. The rock reaches a maximum height at the lowest part of the bridge which is 81 ft. 81 ft Part A. Create a graph to represent the scenario. The graph should include at least the x- and y-intercepts and the vertex. (A complete graph consists of axis labels and appropriate scales, ordered pairs for each identified point, the function, and appropriate domain/range.) For this problem, you need to take a screenshot of your completed graph and upload it if you created a digital version Open a new tab and search for how to take a screenshot on your device if you do not know how to do this already. If you drew your graph on paper, take a picture of it and upload it here. 1 T T % &
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