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If all forces acting on the object are balanced (equal), the net force acting on the object is zero.
When there are balanced forces acting on an object, the resultant force is zero. This means that the forces are equal in magnitude and opposite in direction, resulting in no acceleration of the object.
If the net force is zero, then the forces are balanced. If the net force is not zero, then the forces are not balanced. You can have a balanced pair of forces, but not a pair of balanced forces.
Tension force can be either balanced or unbalanced, depending on the situation. When the tension in a rope or string is equal and opposite to other forces acting on an object, it is a balanced force. If the tension is not equal to other forces, then it becomes an unbalanced force.
When a pair of balanced forces acts on an object, the net force that results is equal to zero.
A force that does not cause an object to move is called a balanced force. Balanced forces occur when the forces acting on an object are equal in magnitude and opposite in direction, resulting in no change in the object's motion.
Every force must have an equal counter force.
A pair of forces that are equal in magnitude but opposite in direction is called a balanced force. When balanced forces act on an object, they cancel each other out, resulting in no change in the object's motion.
The the forces are unbalanced, that means that the net force is non-zero.
If the forces on an object are balanced, it means that the size and direction of the forces are equal and opposite. This results in no acceleration of the object, and it remains in a state of equilibrium.
A balanced force refers to two equal and opposite forces that act on an object, resulting in no change in its motion. When balanced forces are applied, the object remains stationary or continues moving at a constant velocity.
Both balanced force and net force refer to the overall force acting on an object. Balanced force occurs when the total force is equal in magnitude and opposite in direction, resulting in no change in an object's motion. Net force is the overall force that remains after all forces acting on an object are combined, determining its acceleration or deceleration.