The momentum of an object is calculated by multiplying its mass by its velocity. In this case, the momentum of the 20 kg object traveling at 5 m/s would be 20 kg * 5 m/s = 100 kg*m/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
Momentum = M V = 100 kg-m/s
momentum is mass x velocity. If mass is 1 kg and velocity 1m/s then momentum is 1kgm/s
Momentum = Mass * Velocity, so all you have to do is multiply those numbers together. 20 kg * 5 m/s = 100 kg*m/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
Momentum = M V = 100 kg-m/s
100 Kg m/s
momentum is mass x velocity. If mass is 1 kg and velocity 1m/s then momentum is 1kgm/s
Momentum = Mass * Velocity, so all you have to do is multiply those numbers together. 20 kg * 5 m/s = 100 kg*m/s.
Momentum is calculated as the product of an object's mass and its velocity. Therefore, a bowling ball traveling at 20 kph has greater momentum than one traveling at 10 kph, assuming both balls have the same mass. The increase in speed directly increases the momentum, making the 20 kph ball more impactful than the 10 kph ball.
The momentum of an object is calculated as the product of its mass and velocity. Without knowing the velocity of the 20 kg object, the momentum cannot be determined.
The momentum of an object is calculated by multiplying its mass by its velocity. In this case, the momentum of the 800kg car traveling at 20 m/s would be 16,000 kg m/s. Momentum is a vector quantity, meaning it has both magnitude and direction, which in this case would be in the direction of the car's motion.
Momentum = (mass ) x (velocity) = (5) x (4) = 20 kg-meters/sec in the direction of the velocity.
The bowling ball traveling at 20 kph has greater momentum than the one traveling at 10 kph, assuming both have the same mass. Momentum is calculated using the formula ( p = mv ), where ( p ) is momentum, ( m ) is mass, and ( v ) is velocity. Since the second ball has a higher velocity, its momentum will be greater, making it more impactful in motion.
The momentum of an object is calculated by multiplying its mass by its velocity. In this case, the momentum of the object would be 300 kg m/s (15 kg * 20 m/s).