A bowling ball has a mass of 25kg and a velocity of 20m/s. A marble has a mass of 5kg and a velocity of 50m/s. Which has greater momenturn?

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Well, let's calculate the momentum for each object!

The momentum of an object is given by the formula p = m * v, where p is the momentum, m is the mass, and v is the velocity.

For the bowling ball:
Momenturn = mass * velocity
Momenturn = 25 kg * 20 m/s
Momenturn = 500 kg * m/s

For the marble:
Momenturn = mass * velocity
Momenturn = 5 kg * 50 m/s
Momenturn = 250 kg * m/s

So, it looks like the bowling ball has a greater momenturn of 500 kg * m/s compared to the marble's momenturn of 250 kg * m/s.

That bowling ball is really knocking out the competition with its momenturn!

To determine which object has greater momentum, we need to calculate the momentum of each object.

The momentum (p) of an object is given by the equation:

p = mass × velocity

For the bowling ball:
Mass = 25 kg
Velocity = 20 m/s

p1 = 25 kg × 20 m/s = 500 kg·m/s

For the marble:
Mass = 5 kg
Velocity = 50 m/s

p2 = 5 kg × 50 m/s = 250 kg·m/s

Comparing the momenta, we can see that the bowling ball has a greater momentum (500 kg·m/s) compared to the marble (250 kg·m/s).

To determine which object has greater momentum, we can calculate the momentum of each object using the formula:

Momentum = mass * velocity

For the bowling ball:
Momentum = 25 kg * 20 m/s = 500 kg·m/s

For the marble:
Momentum = 5 kg * 50 m/s = 250 kg·m/s

Comparing the momenta of the two objects, we can see that the bowling ball has a greater momentum, with a value of 500 kg·m/s.

p = mv

so compare
25*20 and 5*50