Isaac newton's first law of motion tells us that an object in motion/at rest stays in motion/at rest until acted upon by an unbalanced (outside) force. This is particularly evident in space. In space, in the absence of gravity, an object will travel in a certain direction at a certain speed forever until it either hits something (extremely unlikely) or passes too close to the gravitational influence of something (just a bit less unlikely.) This "something" would be the outside force.
A change in an object's motion can be caused by both balanced and unbalanced forces. Balanced forces result in no change in motion, while unbalanced forces cause acceleration or deceleration in the object's motion.
If the forces acting on an object are unbalanced, the object will accelerate in the direction of the larger force. This acceleration will continue as long as the forces remain unbalanced. The object's velocity and direction will change in response to the unbalanced forces.
Balanced forces do not change an object's motion because they cancel each other out, resulting in no net force. Unbalanced forces, however, cause acceleration as they result in a net force acting on an object, causing a change in its motion.
If forces are unbalanced on an object, the object will experience acceleration in the direction of the net force. The motion of the object will change depending on the direction and magnitude of the net force applied.
forces push and pull on an object making the object move in the direction of the force. the stronger force would overcome the lesser force, causing the object's motion to go in the direction of the stronger force (newton's 2nd law).alsoif forces are balanced there s no acceleration hence there is no motion.....thus if forces are unbalanced the motion is in the same direction as the resultant force (the greater force acting on an object)When the forces acting on an object are unbalanced, The one with more mass will pull on the other one, causing a change in motion.
Balanced forces do not change its motion (no acceleration). Unbalanced forces changes the motion of the object (acceleration).
Balanced forces do not change its motion (no acceleration). Unbalanced forces changes the motion of the object (acceleration).
A change in an object's motion can be caused by both balanced and unbalanced forces. Balanced forces result in no change in motion, while unbalanced forces cause acceleration or deceleration in the object's motion.
If the [group of] forces on an object is unbalanced, the object accelerates.
-- An unbalanced group of forces on an object causes the object to accelerate in the direction of the net force. -- If an object is not moving, then the group of forces on it must be balanced, else it would be accelerated.
If the forces acting on an object are unbalanced, the object will accelerate in the direction of the larger force. This acceleration will continue as long as the forces remain unbalanced. The object's velocity and direction will change in response to the unbalanced forces.
Balanced forces do not change an object's motion because they cancel each other out, resulting in no net force. Unbalanced forces, however, cause acceleration as they result in a net force acting on an object, causing a change in its motion.
If the group of forces on an object is unbalanced, then the object can't have constant velocity. Its speed or the direction of its motion must change.
Balanced forces do not change its motion (no acceleration). Unbalanced forces changes the motion of the object (acceleration).
-- An object may be in motion even without any forces on it.-- An object will accelerate if the forces on it are unbalanced.
Unbalanced forces are forces that produce a nonzero net force, which changes an object's motion. The result of an unbalanced force is acceleration of an object.
If forces are unbalanced on an object, the object will experience acceleration in the direction of the net force. The motion of the object will change depending on the direction and magnitude of the net force applied.