It may also change it's direction subject to the vector of the force.
When a balanced force is applied to an object, the object will remain at rest or continue moving at a constant velocity. This is because the net force on the object is zero, resulting in no change in its motion.
When an object is moving at a constant velocity, the forces acting on it are balanced. This means that the net force on the object is zero, which allows it to continue moving at a constant speed in a straight line. The forces acting on the object may include friction, air resistance, and any applied forces.
If no net force acts on an object, the object will continue in its current state of motion. This means that if it is at rest, it will remain at rest, and if it is moving at a constant velocity, it will continue moving at that velocity.
When balanced forces are applied to a non-moving object, the object remains at rest. This is in accordance with Newton's first law of motion, which states that an object at rest will stay at rest unless acted upon by an unbalanced force.
When the velocity of a moving object stays the same, it has a constant speed.
When a balanced force is applied to an object, the object will remain at rest or continue moving at a constant velocity. This is because the net force on the object is zero, resulting in no change in its motion.
When balanced forces are applied to a moving object, the object likely slow and eventually stop. How quickly that occurs depends on the amount of force.
The object is accelerated in the direction of the net (or resultant) force.
If a force is being applied to a moving object, it will change its velocity (it will accelerate) appropriately.
When an object is moving at a constant velocity, the forces acting on it are balanced. This means that the net force on the object is zero, which allows it to continue moving at a constant speed in a straight line. The forces acting on the object may include friction, air resistance, and any applied forces.
It can be said that the net force applied on the object is zero or that the object is in translational equilibrium. Keep in mind that these terms can also be applied if the object is moving at a constant velocity.
The object that is moving at a constant speed will slow down. Its new velocity will be determined by the original constant speed along with the new combined mass of the moving object and the additional "large mass."
If no net force acts on an object, the object will continue in its current state of motion. This means that if it is at rest, it will remain at rest, and if it is moving at a constant velocity, it will continue moving at that velocity.
a "body" "moving body" an "object" is moving with constant velocity. [OR] a "body" is moving with constant velocity.
determine if the momentum of an object moving in a circular path at constant speed is constant.
determine if the momentum of an object moving in a circular path at constant speed is constant.
F=ma. F=0, a=0. The object is either moving a constant velocity or not moving at all.