An object has a mass of 2kg moving to the right with velocity of 12m/s and collides head on with a stationary object whose mass is 6kg. The collision is perfect elastic so what is the final velocity of the 2kg object and if the final velocity of 6kg object is 6m/s to the right?
An object has a mass of 2kg moving to the right with velocity of 12m/s and collides head on with a stationary object whose mass is 6kg. The collision is perfect elastic so what is the final velocity of the 2kg object and if the final velocity of 6kg object is 6m/s to the right?
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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An object has a mass of 2kg moving to the right with velocity of 12m/s and collides head on with a stationary object whose mass is 6kg. The collision is perfect elastic so what is the final velocity of the 2kg object and if the final velocity of 6kg object is 6m/s to the right?
How do i solve and use the formulas in the pic
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Work = Change of KE = KEfinal - KEinitial
%3D
V Impulse = Change of momentum = Pinitial -Pfinal
V Linear Momentum mo
Angular Momentum 7 =
Impulse = FAt
Torque 7 = Id
%3D
F At
Torque T = Fl
Aw
Angular acceleration a =
W = Wo + at
v = wR
F2
A2
Force
Pressure
P =
Area
mass
Density =
volume
A1
Boyle PV = PV2
V1
Charles
T1
Continuity v A = v2 A2
p+p + pgh = constant
Bernoulli
%3D
%3D"
Transcribed Image Text:%3I
Work = Change of KE = KEfinal - KEinitial
%3D
V Impulse = Change of momentum = Pinitial -Pfinal
V Linear Momentum mo
Angular Momentum 7 =
Impulse = FAt
Torque 7 = Id
%3D
F At
Torque T = Fl
Aw
Angular acceleration a =
W = Wo + at
v = wR
F2
A2
Force
Pressure
P =
Area
mass
Density =
volume
A1
Boyle PV = PV2
V1
Charles
T1
Continuity v A = v2 A2
p+p + pgh = constant
Bernoulli
%3D
%3D
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