Two masses mị = 7 kg and m2 = 14 kg undergo an elastic collision as shown where 0 = 30°. You know that mị an initial speed vii = 8.6 m/s and you know that m2 has an initial speed v2i = 2.6 m/s before the collision. Calcul the final speed after the collision vif for the first mass mị. Before m 2 After (in m/s) 14. A) 5.07 ВО 6.33 СО 7.92 DO 9.90 EO 12.37

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Chapter1: Units, Trigonometry. And Vectors
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Two masses m1 = 7 kg and m2 = 14 kg undergo an elastic collision as shown where θ = 30o. You know that m1 has
an initial speed v1i = 8.6 m/s and you know that m2 has an initial speed v2i = 2.6 m/s before the collision. Calculate
the final speed after the collision v1f for the first mass m1.

Two masses mı = 7 kg and m2 = 14 kg undergo an elastic collision as shown where 0 = 30°. You know that m1 has
an initial speed vii = 8.6 m/s and you know that m2 has an initial speed v2i = 2.6 m/s before the collision. Calculate
the final speed after the collision vif for the first mass m1.
Before
m 2
After
(in m/s)
14. АО 5.07
ВО 6.33
СО 7.92
DO 9.90
EO 12.37
Transcribed Image Text:Two masses mı = 7 kg and m2 = 14 kg undergo an elastic collision as shown where 0 = 30°. You know that m1 has an initial speed vii = 8.6 m/s and you know that m2 has an initial speed v2i = 2.6 m/s before the collision. Calculate the final speed after the collision vif for the first mass m1. Before m 2 After (in m/s) 14. АО 5.07 ВО 6.33 СО 7.92 DO 9.90 EO 12.37
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