False. Balanced forces acting on an object will not change the object's velocity. When forces are balanced, there is no change in the object's velocity as there is no net force acting on the object.
Balanced forces acting on an object do not change the object's position.
No, balanced forces do not change an object's motion. When balanced forces act on an object, the object will either remain at rest or continue moving at a constant velocity.
If forces on an object are balanced, the object will not accelerate - i.e., its velocity won't change.
Balanced forces do not alter the motion of objects.
False. Balanced forces acting on an object will not change the object's velocity. When forces are balanced, there is no change in the object's velocity as there is no net force acting on the object.
Balanced forces acting on an object do not change the object's position.
balanced
No, balanced forces do not change an object's motion. When balanced forces act on an object, the object will either remain at rest or continue moving at a constant velocity.
Balanced forces do not bring about any change in motion. If forces are balanced, an object is either at rest, or moving in a straight line at constant velocity.
If forces on an object are balanced, the object will not accelerate - i.e., its velocity won't change.
Balanced forces do not alter the motion of objects.
"Balanced forces" means that the net force is zero. In such as case, according to Newton's First Law, the velocity doesn't change over time.
False. Balanced forces do not cause a change in motion. When the forces acting on an object are balanced, the object will remain at rest or continue moving at a constant velocity.
No, balanced forces acting on an object will not cause it to change its motion. Balanced forces result in no net force, so the object will either remain at rest or continue moving at a constant velocity in a straight line.
No, balanced forces do not cause any change in an object's state of motion. When the forces acting on an object are balanced, the object will either remain at rest or continue moving at a constant velocity.
In this case, the forces on the object are balanced. In other words, the vector sum of all the forces is zero.