momentum is mass x velocity. If mass is 1 kg and velocity 1m/s then momentum is 1kgm/s
Momentum = M V = 100 kg-m/s
Momentum = speed multiplied to mass. M'm = 5 ms^-1 X 20 kg . M'm = 100 kg m s^-1
The magnitude of momentum is calculated by multiplying the mass of the object (2200 kg) by its velocity (25 m/s). So, the momentum of the SUV is 55,000 kg*m/s.
If the forces are in the same direction, add them and if they're in opposite directions, subtract them. I'm not sure what to do if they're in directions other than that.
The momentum of an object with a mass of 1 kg and a velocity of 10 m/s is 10 kg*m/s. Momentum is calculated by multiplying the mass of the object by its velocity.
Momentum = M V = 100 kg-m/s
Momentum = speed multiplied to mass. M'm = 5 ms^-1 X 20 kg . M'm = 100 kg m s^-1
The magnitude of momentum is calculated by multiplying the mass of the object (2200 kg) by its velocity (25 m/s). So, the momentum of the SUV is 55,000 kg*m/s.
If the forces are in the same direction, add them and if they're in opposite directions, subtract them. I'm not sure what to do if they're in directions other than that.
The momentum of an object with a mass of 1 kg and a velocity of 10 m/s is 10 kg*m/s. Momentum is calculated by multiplying the mass of the object by its velocity.
Momentum is the product of measuring the mass and velocity of a moving object. How much something weighs by the rate of speed it was traveling. Can tell you alot about the damage that could be doneup on impact. As well as tell you how much force would be needed to stop the object in question.
This scenario violates the law of conservation of momentum. If the two objects collided perfectly elastically, the first object would transfer its momentum to the second object, causing both objects to move with a final velocity determined by momentum conservation equations.
The momentum of the object is calculated by multiplying its mass by its velocity. So, for an object with a mass of 3 kg moving at a velocity of 22 m/s, the momentum would be 66 kg*m/s.
The momentum of the truck can be calculated by multiplying its mass by its velocity. Therefore, the momentum of the truck would be 4500 kg * W m/s.
The momentum of the bicycle can be calculated using the formula p = m * v, where p is momentum, m is mass, and v is velocity. Plugging in the values, the momentum of the bicycle is 45 kg*m/s.
Using p=mv. p: momentum (kg ms^-1) m: mass (kg) v: velocity (ms^1) p = (25)(4) = 100 kg ms^-1
The momentum of an object is calculated by multiplying its mass by its velocity. In this case, the momentum of the car would be 18,750 kg*m/s.