At At the intersection, a yellow subcompact car with a mass of 950 kg traveling east collides with a red pickup truck with a mass of 1900 kg that is traveling north and has run a red light. The two vehicles stick together as a result of the collision, and the wreckage slides at 16m/s at 26 degrees, East of North. Calculate the speed of each vehicle before the collision. The collision occurs during a heavy rainstorm; you can ignore friction forces between the vehicles and the wet road 26⁰, 16.0 m/s x(cast)

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Utilize the following formula in solving:
Raß
Rgas =8Taß
U = mgh
2M
2M
ds²=-
- (1 - ²M +2²) dr² + (1 - ² + 2) dr² +r²d0² + r² sin² 0do²
1
K= my²
-mv² + mgh₁ = = mv² +mgh₂
\fa/k = Ha/kN
P1 = P2
p = mv
J=FAt = P2 - P₁
F = ma
At At the intersection, a yellow subcompact car with a mass of 950 kg traveling east collides with
a red pickup truck with a mass of 1900 kg that is traveling north and has run a red light. The two
vehicles stick together as a result of the collision, and the wreckage slides at 16m/s at 26 degrees,
East of North. Calculate the speed of each vehicle before the collision. The collision occurs during
a heavy rainstorm; you can ignore friction forces between the vehicles and the wet road
y (north)
26⁰,
16.0 m/s
-x (cast)
Transcribed Image Text:NEED FAST Utilize the following formula in solving: Raß Rgas =8Taß U = mgh 2M 2M ds²=- - (1 - ²M +2²) dr² + (1 - ² + 2) dr² +r²d0² + r² sin² 0do² 1 K= my² -mv² + mgh₁ = = mv² +mgh₂ \fa/k = Ha/kN P1 = P2 p = mv J=FAt = P2 - P₁ F = ma At At the intersection, a yellow subcompact car with a mass of 950 kg traveling east collides with a red pickup truck with a mass of 1900 kg that is traveling north and has run a red light. The two vehicles stick together as a result of the collision, and the wreckage slides at 16m/s at 26 degrees, East of North. Calculate the speed of each vehicle before the collision. The collision occurs during a heavy rainstorm; you can ignore friction forces between the vehicles and the wet road y (north) 26⁰, 16.0 m/s -x (cast)
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