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Object 1 of mass m_(1) is moving at a velocity v_(1) to the right. It collides and sticks to object 2 of mass m_(2) moving

Object 1 of mass

m_(1)

is moving at a velocity

v_(1)

to the right. It collides and sticks to object 2 of mass

m_(2)

moving in the same direction as object 1 with a velocity of

v_(2)

. After the collision, the objects have a velocity of

(1)/(2)(v_(1)+v_(2))

. What is the relationship between

m_(1)

and

m_(2)

?\ Select the correct answer\

m_(1)=(1)/(2)m_(2)hat()

\

m_(1)=(1)/(3)m_(2)

\

m_(1)=3m_(2)hat(var\\\\theta )
image text in transcribed
Object 1 of mass m1 is moving at a velocity v1 to the right. It collides and sticks to object 2 of mass m2 moving in the same direction as object 1 with a velocity of v2. After the collision, the objects have a velocity of 21(v1+v2). What is the relationship between m1 and m2 ? Select the correct answer m1=m2 m1=21m2 m1=2m2 m1=31m2 m1=3m2^ Object 1 of mass m1 is moving at a velocity v1 to the right. It collides and sticks to object 2 of mass m2 moving in the same direction as object 1 with a velocity of v2. After the collision, the objects have a velocity of 21(v1+v2). What is the relationship between m1 and m2 ? Select the correct answer m1=m2 m1=21m2 m1=2m2 m1=31m2 m1=3m2^

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