put these Results together to draw a general conclusion comparing the motion of two objects before and after a collision. You should be able to find a quantity, which will remain changed in a collision. Be sure to justify your reasoning.

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Chapter1: Units, Trigonometry. And Vectors
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During that Laboratory, you found that impulse could also be related to motion in a certain way. Relate that simple mathematical relationship here.

You also found a relationship between pairs of forces in certain situation.  restate that relationship here. 

put these Results together to draw a general conclusion comparing the motion of two objects before and after a collision. You should be able to find a quantity, which will remain changed in a collision. Be sure to justify your reasoning. 

(Images of the lab mentioned). 

NAME
Impulses and Pairs of Forces
Analysis Question 1: Which of the three kinematic variables (position, velocity or acceleration) has
behavior that seems most similar to that of impulse?
velocity
Suggest an explanation for why that might have been expected.
dyーエ
: Impulse is related to veloxity.
Analysis Question 2: Describe qualitatively the behavior of your two graphs. Identify what was happening
at different times in the motion and how that was reflected on the graphs.
by gong toWard the snSer thin once
ar the Velocing graph, the
it reaches the x arrs
cart Sterts gang away from the sensor
Shps. The Mmplse grarh s constart until
Wntil it
it Stors
Analysis Question 3: Determine the physical meaning of each of your fit parameters (Hint: careful
consideration of units may be helpful here).
do= impolse CiN-S) of the cart moring
aiE force exerted on cart at given distane
Give a simple mathematical relation between impulse and variable X (Hint: it is simplest to express impulse
as the change in some other quantity).
474ニつSndu
=maAt
Analysis Question 4: We have not considered frictional forces in any of these analyses. While the frictional
forces are indeed small in these cases, they are not zero. What effect should frictional forces have on your
comparison of impulse and variable X? V(6lity andimpulke are nversly proportional
and riztional force are prdportional. Thercfere
They all change at The
What other sources of error can you identify in this experiment and how should they affect your results?
ク
affect Velacity,
Be specific in your answers to these questions,
Hir resibtance would
93
Transcribed Image Text:NAME Impulses and Pairs of Forces Analysis Question 1: Which of the three kinematic variables (position, velocity or acceleration) has behavior that seems most similar to that of impulse? velocity Suggest an explanation for why that might have been expected. dyーエ : Impulse is related to veloxity. Analysis Question 2: Describe qualitatively the behavior of your two graphs. Identify what was happening at different times in the motion and how that was reflected on the graphs. by gong toWard the snSer thin once ar the Velocing graph, the it reaches the x arrs cart Sterts gang away from the sensor Shps. The Mmplse grarh s constart until Wntil it it Stors Analysis Question 3: Determine the physical meaning of each of your fit parameters (Hint: careful consideration of units may be helpful here). do= impolse CiN-S) of the cart moring aiE force exerted on cart at given distane Give a simple mathematical relation between impulse and variable X (Hint: it is simplest to express impulse as the change in some other quantity). 474ニつSndu =maAt Analysis Question 4: We have not considered frictional forces in any of these analyses. While the frictional forces are indeed small in these cases, they are not zero. What effect should frictional forces have on your comparison of impulse and variable X? V(6lity andimpulke are nversly proportional and riztional force are prdportional. Thercfere They all change at The What other sources of error can you identify in this experiment and how should they affect your results? ク affect Velacity, Be specific in your answers to these questions, Hir resibtance would 93
Impulses and Pairs of Forces
Analysis Question 5: Which object is exerting the force that causes the reading on the spring scale?
Tthe Cart
cart with
force probe
Which object is exerting the force that causes the reading on the force probe?
How do the magnitudes of these two forces seem to compare? How do their directions compare?
Opposite directions buf
are
same magnitude.
Analysis Question 6: For each case (a) – (g) that you have just examined, is there a general statement that
you can made to describe how the force object A exerts on object B (FA on B) Compares to the force that object
B exerts on object A (FB on A). If so, state it as a simple mathematical relation.
A -on B =-F,
94
Transcribed Image Text:Impulses and Pairs of Forces Analysis Question 5: Which object is exerting the force that causes the reading on the spring scale? Tthe Cart cart with force probe Which object is exerting the force that causes the reading on the force probe? How do the magnitudes of these two forces seem to compare? How do their directions compare? Opposite directions buf are same magnitude. Analysis Question 6: For each case (a) – (g) that you have just examined, is there a general statement that you can made to describe how the force object A exerts on object B (FA on B) Compares to the force that object B exerts on object A (FB on A). If so, state it as a simple mathematical relation. A -on B =-F, 94
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