A moving objects "vector energy" depends on mass and velocity, Ev= mcV.
Vector energy gives quaternion forces
XE= F= (d/dr + Del)mcV= - mcv/r cos(RV) - mcv/rV1 + mcv/r sin(RV)H1
The momentum of a moving object depends on its mass and velocity. Momentum is calculated by multiplying an object's mass by its velocity, making it directly proportional to both factors.
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!
The kinetic energy of a moving object depends on its mass and its velocity. The formula for kinetic energy is 0.5 x mass x velocity^2. This means that both increasing the mass or the velocity of the object will increase its kinetic energy.
The energy of a moving object is called kinetic energy. It depends on the mass and velocity of the object.
the mass of an object. The greater the mass of an object, the greater its inertia. Additionally, inertia also depends on the velocity of the object - the faster an object is moving, the greater its inertia.
The kinetic energy depends on the object's mass, and on its speed.
That depends on the situation. If the object is moving freely in a vacuum, the speed stays the same. If an object is accelerating, the speed change depends in part, on the mass of the object.
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.
It depends on mass and velocity. ans : it depends on the mass & speed of the moving object. no, it depends on the work & energy.
It depends on the magnitude of the force and the mass of the object
It depends on the magnitude of the force and the mass of the object