Solving a Problem: Combining Two Vehicles Masses

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c4iscool
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I can't figure out this problem. A 1000kg car traveling east at 3m/sec collides with and sticks to a vehicle traveling due west at 2m/sec. Immediately after the collision, the vehicular combination is moving due west at 1m/sec. the mass of the second vhicle is ? kg. How do I set this up?
 
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I think the mass would be conserved.
 
c4iscool said:
I think the mass would be conserved.
Anything else? Think important conservation laws.
 
Are u guys getting at conservation of energy laws? But can I only get the velocity with that?
 
c4iscool said:
Are u guys getting at conservation of energy laws? But can I only get the velocity with that?

I'll give you a clue, it starts with an 'M' and its not mass
 
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conservation of matter
 
I don't know of any others. sorry I'm a noob!=(
 
c4iscool said:
I don't know of any others. sorry I'm a noob!=(

No problem :smile:. The law you need to use is 'conservation of momentum'. Have you heard of momentum before? Do you know how it is defined / how to calculate it?
 
is it m1v1=m2v2 or something?
 
c4iscool said:
is it m1v1=m2v2 or something?

Thats the one. Initial momentum (the product of mass and velocity) must equal the final momentum. Take note that momentum is a vector quanitity, so direction matters.
 
but how do I figure out the final momentum without the mass?
 
would the equation be (1/2)Massf(1)=(1/2)1000(3). or can I drop the 1/2 in front of the equation.
 
c4iscool said:
would the equation be (1/2)Massf(1)=(1/2)1000(3). or can I drop the 1/2 in front of the equation.

Hmm. How about this taking east to be positive and letting M = 1000kg, m be the unknown mass, v1 = 3, v2 = -2 and vf = -1;

[tex]Mv_{1} + mv_{2} = (M+m)v_{f}[/tex]
 
is the mass about 2000 or 4000?
 
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c4iscool said:
is the mass about 2000?

I got the mass to be about 1333kg. Perhaps you have made an arithmetic error? If you show your working I'll see if I can see where you've gone wrong.
 
I just reworked it and now I have more!
(1000*3)+m(-2)=(1000+m)-1
3000-2m=-1000-m
4000=m
 
Oh, I do apologise, the error is on my part:blushing: . The mass is indeed 4000kg, which is what I intuitively would expect, but I made a silly error. It happens :-p . Anyway you got the correct answer. Well done :smile: