Three pucks with masses mA = 25.0 [g], mB = 50.0 [g], and mc = 75.0 [g] approach the origin as they move on a frictionless table. Puck A moves with speed A = 3.50 [m/s] while puck B moves with speed VB = 1.25 [m/s] and is oriented at B = 72.0 below the horizontal as shown. All the pucks arrive at the origin at the same time and stick together, causing it to move at 0.12 [m/s] to the + direction. A. mc B. VCA y component of Puck C's momentum: What must be the x and y components of puck C's initial momentum for the described collision to happen? x component of Puck C's momentum: Magnitude: Direction: Angle in degrees: VA UB ◆ MA MB What must be the magnitude and direction of puck C's initial velocity for the described collision to happen?

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The final answer should be in SI unit

Important note: Unless otherwise stated, your answers must be in SI units.
Three pucks with masses mA = 25.0 [g], mB = 50.0 [g], and mc = 75.0 [g] approach the origin as they move on a frictionless table. Puck A moves with speed A = 3.50 [m/s] while puck B
moves with speed VB = 1.25 [m/s] and is oriented at 3 = 72.0 below the horizontal as shown. All the pucks arrive at the origin at the same time and stick together, causing it to move at
0.12 [m/s] to the + direction.
A.
UCA
mc
B.
x component of Puck C's momentum:
y component of Puck C's momentum:
Magnitude:
y
Direction:
Angle in degrees:
VA
VB
MA
What must be the x and y components of puck C's initial momentum for the described collision to happen?
MB
x
What must be the magnitude and direction of puck C's initial velocity for the described collision to happen?
Transcribed Image Text:Important note: Unless otherwise stated, your answers must be in SI units. Three pucks with masses mA = 25.0 [g], mB = 50.0 [g], and mc = 75.0 [g] approach the origin as they move on a frictionless table. Puck A moves with speed A = 3.50 [m/s] while puck B moves with speed VB = 1.25 [m/s] and is oriented at 3 = 72.0 below the horizontal as shown. All the pucks arrive at the origin at the same time and stick together, causing it to move at 0.12 [m/s] to the + direction. A. UCA mc B. x component of Puck C's momentum: y component of Puck C's momentum: Magnitude: y Direction: Angle in degrees: VA VB MA What must be the x and y components of puck C's initial momentum for the described collision to happen? MB x What must be the magnitude and direction of puck C's initial velocity for the described collision to happen?
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