If the item is already in motion, yes; it will continue to move in the same direction and at the same speed.
Balanced forces
If the object doesn't move, the forces HAVE TO be balanced. There is no other way.
An object with balanced forces acting on it is still. An object with unbalanced forces acting on them moves at an non constant velocity. It is possible for an object to have balanced forces acting on it and yet move in a vacuum.
Balanced forces are forces that are balanced, so the object won't move. O will represent this. The forces, ---------->O<----------, are the same, so the object won't move. For unbalanced forces, ---------->O<--------------------, The force on the right is stronger, so it will move to the left.
No, balanced forces do not make objects move. Balanced forces result in an object maintaining its state of motion or staying at rest. If the forces acting on an object are balanced, there is no net force to cause motion.
Both balanced and unbalanced forces can cause an object to move; however, balanced forces result in no change in an object's motion, while unbalanced forces cause an object to accelerate or decelerate.
Balanced forces.
It will not move from it's place
There's no such thing as a balanced force or an unbalanced force.If the entire group of all the forces on an object is unbalanced, then the objectundergoes acceleration, or its "motion changes". If the group of forces on it isbalanced, then its motion doesn't change.
Balanced forces applied on both sides of an object cause it to be still. Unbalanced forces will cause the object to move away from the strongest force.
If opposing forces are balanced, the object will remain at rest or continue to move at a constant velocity. Balanced forces create a state of equilibrium where the net force on the object is zero, leading to no change in its motion.
An object with balanced forces acting on it is still. An object with unbalanced forces acting on them moves at an non constant velocity. It is possible for an object to have balanced forces acting on it and yet move in a vacuum.