Absolutely. The key is to realize that a net force of zero on an object means only that it is not accelerating. This means that an object feeling zero net force can either be stationary or moving at constant speed in a straight line.
Yes, but an object with net force of zero may still be moving. The net force is zero if the object is not accelerating.
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.
An object moves with constant velocity when there is no net force acting upon it. If there are no forces acting on an object, or if the forces acting on it "cancel out" leaving a net force of zero acting on the object, it will have zero acceleration. With a zero acceleration, the velocity of the object will be constant.
Yes, but the net force is ZERO! If an object is moving at constant velocity, the sum of the forces acting upon it is zero. When an object is motionless, its constant velocity is zero. If at any time the sum of the forces -- sometimes called the net force -- is non-zero, the object will accelerate in the direction of the resultant force.
Yes, balancing the forces acting on an object involves ensuring that the sum of all forces is zero, which means there is no net force acting on the object. This equilibrium condition results in the object either remaining at rest or moving at a constant velocity.
Yes, an object can be moving at a constant velocity (i.e., moving with no acceleration) and have a net force of zero. This occurs when the forces acting on the object are balanced, such as when an object is in equilibrium.
If the net force on an object is zero, then the object is in either equilibrium (if it was at rest initially) or it is moving at a constant velocity (if it was already moving). This means there is a balance of forces acting on the object in opposite directions.
Absolutely. The key is to realize that a net force of zero on an object means only that it is not accelerating. This means that an object feeling zero net force can either be stationary or moving at constant speed in a straight line.
Yes, but an object with net force of zero may still be moving. The net force is zero if the object is not accelerating.
If an object is moving with constant velocity, then the net force acting on it is zero. This means that the forces acting on the object are balanced, resulting in no acceleration and a constant velocity.
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.
An object will remain at rest if the net force acting on it is zero. An object will continue to move at a constant velocity if the net force acting on it is zero and there is no external force to change its velocity.
It will keep moving with a constant velocity since zero net force means no acceleration. If the object is at rest, it will just stay at rest.
An object moves with constant velocity when there is no net force acting upon it. If there are no forces acting on an object, or if the forces acting on it "cancel out" leaving a net force of zero acting on the object, it will have zero acceleration. With a zero acceleration, the velocity of the object will be constant.
Yes, if all the forces acting on an object are balanced, the net force on the object is zero. This means that the object will remain at rest or continue moving at a constant velocity in the same direction.
An object can have zero net force but still be in motion if it is moving at a constant velocity. In this case, the forces acting on the object are balanced, resulting in no acceleration. For example, an object traveling at a constant speed on a frictionless surface would have zero net force acting on it.
A zero net force occurs when all forces acting on an object balance out, resulting in no overall acceleration or movement of the object. This means that the object remains at rest or continues moving at a constant velocity.