You mean, travels at 10000 m/s.....if so...Its velocity is 10000m/s
To calculate the magnitude of the spaceship's velocity, you would divide the momentum by the spaceship's mass. In this case, 20000 kg·m/s / 500 kg = 40 m/s. Therefore, the spaceship's velocity has a magnitude of 40 m/s to the left.
The momentum of the car is calculated by multiplying its mass (20000 kg) by its velocity (15 m/s). Therefore, the momentum of the car is 300,000 kg m/s.
To find the momentum of an object you must know the mass of the object and the velocity at which it travels. Example: A 50kg man runs at 10m/s. What is his momentum? Momentum = Mass x Velocity 50 x 10 = 500 kgm/s
That would depend on what you consider "large".The size of an object's momentum = (its mass) x (its speed).So, more mass and more speed result in more momentum.
You can determine mass using momentum and velocity by using the formula: momentum = mass x velocity. Rearrange the formula to solve for mass as mass = momentum/velocity. Plug in the values for momentum and velocity to calculate the mass.
To calculate the magnitude of the spaceship's velocity, you would divide the momentum by the spaceship's mass. In this case, 20000 kg·m/s / 500 kg = 40 m/s. Therefore, the spaceship's velocity has a magnitude of 40 m/s to the left.
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That is how you calculate thrust. FV=T Force, Velocity, Thrust.
The momentum of the car is calculated by multiplying its mass (20000 kg) by its velocity (15 m/s). Therefore, the momentum of the car is 300,000 kg m/s.
To find the momentum of an object you must know the mass of the object and the velocity at which it travels. Example: A 50kg man runs at 10m/s. What is his momentum? Momentum = Mass x Velocity 50 x 10 = 500 kgm/s
That would depend on what you consider "large".The size of an object's momentum = (its mass) x (its speed).So, more mass and more speed result in more momentum.
1.7 miles per hour.
You can determine mass using momentum and velocity by using the formula: momentum = mass x velocity. Rearrange the formula to solve for mass as mass = momentum/velocity. Plug in the values for momentum and velocity to calculate the mass.
Momentum = mass x velocity. If you divide out the velocity you get mass.
It doesn't. But velocity does effect mass : as velocity increases, mass increases.
The object's mass and speed.
To find velocity with mass and momentum, you can use the formula: velocity momentum / mass. Simply divide the momentum by the mass to calculate the velocity.