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18jonea
 one year ago
A skateboard park has a variety of runs for all levels. There are multiple tracks, ramps, and jumps. One such run can be represented by the function and shown in the graph below.
https://s3.amazonaws.com/nndsmediarazunatenantcdn/090F8E56E46641209169196721CDD991/img/9616B5CB71
Assume ground level is the xaxis. The skater skates down the ramp and then back up the ramp to the other side, following the purpledotted trajectory of the function. Determine the applied domain.
{x  2 ≤ x ≤ 2}
{x  x ≤ 2}
{x  x ≥ 2}
There are no restrictions on the applied domain.
18jonea
 one year ago
A skateboard park has a variety of runs for all levels. There are multiple tracks, ramps, and jumps. One such run can be represented by the function and shown in the graph below. https://s3.amazonaws.com/nndsmediarazunatenantcdn/090F8E56E46641209169196721CDD991/img/9616B5CB71 Assume ground level is the xaxis. The skater skates down the ramp and then back up the ramp to the other side, following the purpledotted trajectory of the function. Determine the applied domain. {x  2 ≤ x ≤ 2} {x  x ≤ 2} {x  x ≥ 2} There are no restrictions on the applied domain.

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18jonea
 one year ago
Best ResponseYou've already chosen the best response.0@jim_thompson5910 is it the first choice?

jim_thompson5910
 one year ago
Best ResponseYou've already chosen the best response.1the graph isn't showing up. You'll have to attach it

jim_thompson5910
 one year ago
Best ResponseYou've already chosen the best response.1yes the blue region of the curve is where the halfpipe is set up from 2 to 2 ie 2 ≤ x ≤ 2 anything else isn't part of the halfpipe

18jonea
 one year ago
Best ResponseYou've already chosen the best response.0ok so it was the first choice Thank you!
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