I Review I Constants In (Figure 1), a block of mass m slides along a frictionless track with speed Um- It collides with a stationary block of mass M. Part A Find an expression for the minimum value of um that will allow the second block to circle the loop-the-loop without falling off if the collision is perfectly inelastic. Express your answer in terms of some or all of the variables g, R, m, and M. Previous Answers Bequest Answer Suhmit

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Chapter6: Momentum, Impulse, And Collisions
Section: Chapter Questions
Problem 34P: A 75.0-kg ice skater moving at 10.0 m/s crashes into a stationary skater of equal mass. After the...
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WA MATH180: HW08-.
<Ch11HW
Update
Problem 11.57
(< 10 of 10
In (Figure 1), a block of mass m slides along a
frictionless track with speed Um- It collides with a
stationary block of mass M.
I Review I Constants
Part A
Find an expression for the minimum value of vm that will allow the second block to circle the loop-the-loop without
falling off if the collision is perfectly inelastic.
aring
Express your answer in terms of some or all of the variables g, R, m, and M.
?
Um =
Submit
Previous Answers Request Answer
Figure
<) 1 of 1 >
X Incorrect; Try Again; 3 attempts remaining
Part B
Find an expression for the minimum value of Um that will allow the second block to circle the loop-the-loop without
falling off if the collision is perfectly elastic.
R
Express your answer in terms of some or all of the variables g, R, m, and M.
?
Um =
m
M
Submit
Request Answer
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Transcribed Image Text:M Gmail 1980E70ce5a819b57d158c7fb6d104#10001 Course O Maps O Web design tutori. WA MATH180: HW08-. <Ch11HW Update Problem 11.57 (< 10 of 10 In (Figure 1), a block of mass m slides along a frictionless track with speed Um- It collides with a stationary block of mass M. I Review I Constants Part A Find an expression for the minimum value of vm that will allow the second block to circle the loop-the-loop without falling off if the collision is perfectly inelastic. aring Express your answer in terms of some or all of the variables g, R, m, and M. ? Um = Submit Previous Answers Request Answer Figure <) 1 of 1 > X Incorrect; Try Again; 3 attempts remaining Part B Find an expression for the minimum value of Um that will allow the second block to circle the loop-the-loop without falling off if the collision is perfectly elastic. R Express your answer in terms of some or all of the variables g, R, m, and M. ? Um = m M Submit Request Answer MacBook PrO F10 ER F6 F7 FS F4 F3 F2 delete & # $ 8 9 6 7 2 3 4
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