If the mass of an object increases, its momentum also increases. Momentum is directly proportional to mass, so an increase in mass will result in a proportional increase in momentum, given that the velocity remains constant.
If mass doubles, momentum also doubles as momentum is directly proportional to mass. This is because momentum is the product of an object's mass and its velocity, so if mass increases, momentum will increase as well.
Yes, objects with more mass have greater momentum because momentum is directly proportional to an object's mass. This means that as mass increases, momentum also increases.
Momentum is the product of an object's mass and its velocity. When mass increases, and velocity remains constant, momentum will also increase. This is because momentum is directly proportional to mass, demonstrating that an object with a greater mass carries more momentum.
If the mass stays the same but the velocity is increased, the momentum of the object will also increase. Momentum is directly proportional to velocity, so an increase in velocity will result in a proportionate increase in momentum.
It increases
Mass is proportional to momentum. Momentum is the product of mass and velocity. When mass increases, momentum increases.
If the mass of an object increases, its momentum also increases. Momentum is directly proportional to mass, so an increase in mass will result in a proportional increase in momentum, given that the velocity remains constant.
If mass doubles, momentum also doubles as momentum is directly proportional to mass. This is because momentum is the product of an object's mass and its velocity, so if mass increases, momentum will increase as well.
Yes, objects with more mass have greater momentum because momentum is directly proportional to an object's mass. This means that as mass increases, momentum also increases.
Momentum is the product of an object's mass and its velocity. When mass increases, and velocity remains constant, momentum will also increase. This is because momentum is directly proportional to mass, demonstrating that an object with a greater mass carries more momentum.
If the mass stays the same but the velocity is increased, the momentum of the object will also increase. Momentum is directly proportional to velocity, so an increase in velocity will result in a proportionate increase in momentum.
An object's momentum is affected by its mass and velocity. The momentum of an object increases as either its mass or velocity increases.
The relationship between mass and momentum is direct. This means that as mass increases, momentum also increases, assuming constant velocity. Mathematically, momentum is calculated by multiplying mass and velocity.
If kinetic energy is doubled, the momentum will remain the same. Kinetic energy and momentum are related, but momentum depends on mass and velocity while kinetic energy depends on mass and velocity squared. Therefore, doubling kinetic energy will not affect momentum.
The momentum of an object is directly proportional to its mass. This means that as the mass of an object increases, its momentum also increases, assuming the velocity remains constant. Mathematically, momentum (p) is equal to mass (m) multiplied by velocity (v): p = m * v.
if velocity increases, so does momentum. and vice versa momentum = mass x velocity increasing mass or velocity or both will increase momentum