A 0.500 kg sphere moving with a velocity given by (2.001 - 3.40 + 1.00k) m/s strikes another sphere of mass 1.50 kg moving with an initial velocity of (-1.00 +2.00 - 3.10k) m/s. (a) The velocity of the 0.500 kg sphere after the collision is (-0.601 +3.00 -8.00k) m/s. Find the final velocity of the 1.50 kg sphere. m/s Identify the kind of collision (elastic, inelastic, or perfectly inelastic). O elastic O inelastic O perfectly inelastic (b) Now assume the velocity of the 0.500 kg sphere after the collision is (-0.2501 + 0.650 - 2.08k) m/s. Find the final velocity of the 1.50 kg sphere. V= m/s Identify the kind of collision. O elastic O inelastic O perfectly inelastic (c) Take the velocity of the 0.500 kg sphere after the collision as (-1.00 +2.601 + ak) m/s. Find the value of a and the velocity of the 1.50 kg sphere after an elastic collision. (Two values of a are possible, a positive value and a negative value. Report each with their corresponding final velocities.) a (positive value) a (negative value) V₂f V2f km/s km/s

Physics for Scientists and Engineers with Modern Physics
10th Edition
ISBN:9781337553292
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter9: Linear Momentum And Collisions
Section: Chapter Questions
Problem 53CP
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A 0.500 kg sphere moving with a velocity given by (2.001 - 3.40 + 1.00k) m/s strikes another sphere of mass 1.50 kg moving with an
initial velocity of (-1.00 +2.00 - 3.10k) m/s.
(a) The velocity of the 0.500 kg sphere after the collision is (-0.60 +3.00 -8.00k) m/s. Find the final velocity of the 1.50 kg
sphere.
m/s
Identify the kind of collision (elastic, inelastic, or perfectly inelastic).
O elastic
inelastic
O perfectly inelastic
(b) Now assume the velocity of the 0.500 kg sphere after the collision is (-0.2501 + 0.650 - 2.08k) m/s. Find the final velocity of
the 1.50 kg sphere.
m/s
Identify the kind of collision.
elastic
O inelastic
O perfectly inelastic
(c) Take the velocity of the 0.500 kg sphere after the collision as (-1.00 +2.601 + ak) m/s. Find the value of a and the velocity
of the 1.50 kg sphere after an elastic collision. (Two values of a are possible, a positive value and a negative value. Report each with
their corresponding final velocities.)
a (positive value)
a (negative value)
V2f =
V2f
=
k m/s
k m/s
Transcribed Image Text:A 0.500 kg sphere moving with a velocity given by (2.001 - 3.40 + 1.00k) m/s strikes another sphere of mass 1.50 kg moving with an initial velocity of (-1.00 +2.00 - 3.10k) m/s. (a) The velocity of the 0.500 kg sphere after the collision is (-0.60 +3.00 -8.00k) m/s. Find the final velocity of the 1.50 kg sphere. m/s Identify the kind of collision (elastic, inelastic, or perfectly inelastic). O elastic inelastic O perfectly inelastic (b) Now assume the velocity of the 0.500 kg sphere after the collision is (-0.2501 + 0.650 - 2.08k) m/s. Find the final velocity of the 1.50 kg sphere. m/s Identify the kind of collision. elastic O inelastic O perfectly inelastic (c) Take the velocity of the 0.500 kg sphere after the collision as (-1.00 +2.601 + ak) m/s. Find the value of a and the velocity of the 1.50 kg sphere after an elastic collision. (Two values of a are possible, a positive value and a negative value. Report each with their corresponding final velocities.) a (positive value) a (negative value) V2f = V2f = k m/s k m/s
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