The property you are looking for is the objects momentum. Momentum = Mass * Velocity.
The property that a moving object has due to its mass and velocity is momentum. Momentum is calculated as the product of mass and velocity, and it represents how difficult it is to stop a moving object.
The property that depends on an object's mass and velocity is its momentum. Momentum is calculated as the product of an object's mass and its velocity. It is a vector quantity, meaning it has both magnitude and direction.
momentum
DENSITY
The property of a moving object that equals its mass times its velocity is momentum. Momentum is a vector quantity that describes the motion and inertia of an object. It is calculated using the formula: momentum = mass x velocity.
The property of a moving object that depends on its mass and velocity is its momentum. Momentum is calculated by multiplying an object's mass by its velocity. It is a vector quantity with both magnitude and direction.
In order for an object to travel with constant velocity the sum of forces acting on it must be zero
Acceleration can be calculated using the formula: acceleration = (final velocity - initial velocity) / time. Simply subtract the initial velocity from the final velocity, then divide by the time taken to change the velocity. The resulting value will be the acceleration of the moving object.
Velocity can be negative in certain situations when an object is moving in the opposite direction of the chosen positive direction. This means that the object is moving in the negative direction along the chosen axis, resulting in a negative velocity value.
Average velocity is 0 when an object returns to its starting point after moving away from it. This means that the total displacement of the object is 0, resulting in an average velocity of 0.
Velocity is negative in a moving object when the object is moving in the opposite direction of its positive reference point.
If an object is not moving, the forces acting on it must be balanced. This means that the net force on the object is zero, resulting in no acceleration and maintaining a constant velocity or state of rest.