Your lab partner jumps off a lab table and lands on the floor. Using video analysis, you measure her y-velocity during a certain time interval during the collision with the floor and graph p, (1) as shown below. Her mass is 60 kg. The slope of the best-fit line is 2625 kg-m/s?. Py(t) during a landing best-fit line -60 -80 -100 -to -140 -160 -180 -200 1.05 1.06 1.07 1.08 1.09 1.10 1.04 t(s) Py (kg m/s)

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ISBN:9781938168277
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Chapter9: Linear Momentum And Collisions
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Your lab partner jumps off a lab table and lands on the floor. Using video analysis, you measure her y-velocity during a certain time
interval during the collision with the floor and graph p, (1) as shown below. Her mass is 60 kg. The slope of the best-fit line is 2625
kg-m/s?.
p,(t) during a landing
best-fit line
-60
-80
-100
-to
* -140
-160
-180
-200
1.08
1.09
1.10
1.07
t (s)
1.04
1.05
1.06
Part 1
During this time interval, what is the y-component of the average net force on her?
Fnety =
er
Part 2
What is the y-component of the force by the floor on her during the collision?
Fnoory=
Py (kg m/s)
Transcribed Image Text:Your lab partner jumps off a lab table and lands on the floor. Using video analysis, you measure her y-velocity during a certain time interval during the collision with the floor and graph p, (1) as shown below. Her mass is 60 kg. The slope of the best-fit line is 2625 kg-m/s?. p,(t) during a landing best-fit line -60 -80 -100 -to * -140 -160 -180 -200 1.08 1.09 1.10 1.07 t (s) 1.04 1.05 1.06 Part 1 During this time interval, what is the y-component of the average net force on her? Fnety = er Part 2 What is the y-component of the force by the floor on her during the collision? Fnoory= Py (kg m/s)
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