Help Solving Momentum Problem with 3 Kids and a Cart

In summary: I think that might be what you're thinking, but I'm not sure because you never actually say what you're doing to calculate m2k gVk'.Well, according to the equation, if the total momentum of the system relative to ground is zero before each kid jumps off, then it is also zero after each kid jumps off. So, using your notation again, x=5m/s.In summary, the system is initially moving at 6m/s, but after the first kid jumps off, the cart's velocity increases to 5m/s.
  • #1
canadianballa
8
0
Hello everyone,
My teacher posted this question and I've been having problems solving it. Please help.

Homework Statement


3 kids are standing on top of a cart. The cart is on top of a frictionless surface. The kids run WEST at a maximum of 10m/s. As such, the cart will be pushed in the EAST direction. So all three kids run at this maximum speed, at which time one of the kids jump off, then the 2nd, then the 3rd. I need to know the velocity of the cart after the 1st, 2nd, and 3rd kid jumps off. The kids each weigh 60kg and the mass of the cart is 120 kg. Conservation of momentum is applied here.


Homework Equations





The Attempt at a Solution

 
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  • #2
You need to show an attempt to get assistance here... You say in your post that conservation of momentum should be applied, so what do you get when you try to apply it?
 
  • #3
I'm going to use the following denotations (it's easier to type)
x= gVc (initial Velocity of cart relative to ground)
y = gVc' (final velocity of cart relative to ground)
Mc = mass of cart
M3k = mass of 3 kids, 2 kids, etc
gVk = cVk + gVc (velocity of kids relative to ground = kids velocity relative to cart + cart velocity relative to ground)

Mcx + M3k gVk = Mcy+ m2k gVk'

I know that the cart will be moving faster as each of hte kids jump off, because less mass, the kids all run @ 10 m/s, therefore the cart must be moving faster.
this is the part where I'm stuck. Do I need to caluclate the initial velocity from rest or from the max speed the system can move with all3 kids on it b4 the kid sjumps off?
 
  • #4
Could somebody please point me in the right direction?
 
  • #5
Using your notation, I think it is best to divide the problem into two parts:

(1) What can you say about Mcx + M3k gVk (the total initial momentum of kids and cart system relative to the ground)?
 
  • #6
Based on the numbers, I find that 120kg * 6m/s + (180 kg * (-10m/s-6m/s) = zero

which doesn't make any sense and it's where I'm stumped. Based on this, the system is initially not moving?
 
  • #7
Individual components of the system (each kid, the cart) are moving relative to the ground, but the system as a whole isn't...in fact this is what you should have used to determine that x=6m/s; which makes me wonder where you actually did get that number from (it's right, but how did you get it)?
 
  • #8
I just assumed that the system starts @ zero, so...

Mcx + M3k gVk = Mcy+ m3k gVk'
0 = Mcy + m3k gvk'
0 = 120kg y + m3k (cVk + y)
find that the system is moving @ 6m/s.

Where I'm stuck is...how do I find the speed of the cart after one of the kids jump off? I figured that since mass is decreased after, velocity should increase, but I don't know the math to prove it
 
  • #9
Well, if the total momentum of the system relative to ground is zero before each kid jumps off, then it is zero after each kid jumps off too...use that.
 
  • #10
Mcx + M3k gVk = Mcy+ m2k gVk'

0 = 120 kg y + 120kg (cvk' + y)
y = 5 m/s

which is wrong, cause the cart's supposed to be moving FASTER. which is where I'm stuck
 
  • #11
Isn't Mcy+ m2k gVk' just equal to 120kg y+ 2*60kg*(-10m/s)?
 

Related to Help Solving Momentum Problem with 3 Kids and a Cart

1. How can I calculate momentum in this scenario?

In order to calculate momentum, you will need to know the mass and velocity of each of the three kids and the cart. You can then use the formula momentum = mass x velocity to find the total momentum of the system.

2. What units should I use for momentum?

The standard unit for momentum is kg m/s. However, you can also use other units such as g cm/s or lb ft/s, as long as you are consistent with your units throughout the calculation.

3. Do I need to consider the direction of momentum in this problem?

Yes, momentum is a vector quantity, meaning it has both magnitude and direction. In this scenario, you will need to consider the direction of momentum for each individual kid and the cart, as well as the total momentum of the system.

4. Can I use momentum to predict the future motion of the system?

Yes, according to the law of conservation of momentum, the total momentum of a system remains constant unless acted upon by an external force. Therefore, if you know the initial momentum and the external forces acting on the system, you can use momentum to predict the future motion of the system.

5. What other factors should I consider when solving this momentum problem?

In addition to mass and velocity, you should also consider the forces acting on the system, such as friction and air resistance. These external forces can affect the momentum of the system and should be taken into account in your calculations.

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