The position of a particle in millimeters is given by s = 60 - 17t + t² where t is in seconds. Plot the s-t and v-t relationships for the first 12 seconds. Determine the net displacement As during that interval and the total distance D traveled. By inspection of the s-t relationship, what conclusion can you reach regarding the acceleration? Answers: As = i mm D = i mm
The position of a particle in millimeters is given by s = 60 - 17t + t² where t is in seconds. Plot the s-t and v-t relationships for the first 12 seconds. Determine the net displacement As during that interval and the total distance D traveled. By inspection of the s-t relationship, what conclusion can you reach regarding the acceleration? Answers: As = i mm D = i mm
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The position of a particle in millimeters is given by s = 60 - 17t + t2 where t is in seconds. Plot the s-t and v-t relationships for the first 12 seconds. Determine the net displacement Δs during that interval and the total distance D traveled. By inspection of the s-t relationship, what conclusion can you reach regarding the acceleration?
![The position of a particle in millimeters is given by s = 60 - 17t + t² where t is in seconds. Plot the s-t and v-t relationships for the first 12
seconds. Determine the net displacement As during that interval and the total distance D traveled. By inspection of the s-t relationship,
what conclusion can you reach regarding the acceleration?
Answers:
As =
i
mm
D =
i
mm](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc01b78f9-12e1-4d15-a40c-57ec0aaa9dda%2F4c9da677-387c-4bb0-80fe-b0208bd93a28%2Ftynhen9_processed.png&w=3840&q=75)
Transcribed Image Text:The position of a particle in millimeters is given by s = 60 - 17t + t² where t is in seconds. Plot the s-t and v-t relationships for the first 12
seconds. Determine the net displacement As during that interval and the total distance D traveled. By inspection of the s-t relationship,
what conclusion can you reach regarding the acceleration?
Answers:
As =
i
mm
D =
i
mm
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