momentum = mass x velocity
=> mass = momentum / velocity
Momentum. Distance divided by time is speed. Mass times speed is momentum.
Momentum is mass times velocity. What is the mass of someone?
The momentum is given by the formula... p=mv p=momentum m=mass v=velocity In your question your mass is 30kg and your velocity is 10m/s just do simple math and your momentum is 300kg*m/s
Momentum is the product of Mass times Velocity Momentum = MV
Speed times time equals distance
Momentum = mass x speed so speed = momentum/mass or V=P/m
To find velocity when given mass and momentum, you can use the formula: velocity momentum / mass. Simply divide the momentum by the mass to calculate the velocity.
You can find the mass by dividing the momentum by the velocity. The formula for momentum is mass multiplied by velocity, so by rearranging the formula you can solve for mass by dividing momentum by velocity.
When the mass of a moving object is doubled and its speed remains the same, its momentum also doubles. Momentum is directly proportional to mass, so doubling the mass will result in a doubling of the momentum regardless of the speed.
|Momentum| = (mass) times |velocity| = mass x speed22 = 7.3 (Speed)Speed = 22/7.3 = 3.0137 meters per second. (rounded)Since we don't know anything about the direction in which the shot is moving,we can only find its speed, not its velocity.
Mass and speed are related in the concept of momentum, which is the product of an object's mass and velocity. Specifically, momentum is equal to mass multiplied by velocity. Therefore, as either mass or speed increases, momentum will also increase.
Speed and momentum are related because momentum is the product of an object's mass and its velocity. In other words, momentum is directly proportional to an object's speed. This means that as an object's speed increases, its momentum also increases.
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.
Momentum. Distance divided by time is speed. Mass times speed is momentum.
Angular momentum depends on the mass of an object and its rotational speed. The greater the mass or speed, the greater the angular momentum.
NO .Momentum has some potential to do work where as speed is only the rate of action or travel. For example if a car is switched off while speeeding itwill still continue to run for some time due to momentum. Speed by itself has no energy for doing work Momentum is in fact defined as mass x velocity, and will be conserved in an elastic collision.
The momentum of an object is determined by its mass and speed. Momentum is the product of an object's mass and its velocity, and it is a vector quantity indicating the direction of the object's motion. A larger mass or higher speed will result in a greater momentum.