Yes, the net force would be zero if all the forces acting on the object negated each other.
If the forces are balanced this means that there is no net force acting
When the 'net' force on an object is zero, then either there are no forces acting on it, or else all the forces acting on it are 'balanced', and they have the same effect on it as if there were no force.
An object at rest, or an object with a constant velocity are the two possible states of an object with zero net force. An object with zero acceleration has zero net force. There many be several forces acting on the object, such as the force of gravity and the normal force of the ground. Even though an object sitting on the ground has two forces acting on it (gravity, and the normal force) the object does not accelerate because these forces are equal and opposite. An object with zero net force has all forces acting on it equally balanced and cancelling out
When an object is at rest, the forces acting upon it are balanced - there are no unbalanced forces.
If no unbalanced force operates on an object its motion will be constant.
If the forces are balanced this means that there is no net force acting
If all forces acting on the object are balanced (equal), the net force acting on the object is zero.
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.
When the forces are balanced, the net force is zero, by definition. "Net force" refers to the vector sum of all the forces acting on an object.
When the 'net' force on an object is zero, then either there are no forces acting on it, or else all the forces acting on it are 'balanced', and they have the same effect on it as if there were no force.
If the forces acting on an object are perfectly balanced, the resulting net force is equal to zero.
An object at rest, or an object with a constant velocity are the two possible states of an object with zero net force. An object with zero acceleration has zero net force. There many be several forces acting on the object, such as the force of gravity and the normal force of the ground. Even though an object sitting on the ground has two forces acting on it (gravity, and the normal force) the object does not accelerate because these forces are equal and opposite. An object with zero net force has all forces acting on it equally balanced and cancelling out
No. The net force is the vector sum of all the forces acting on an object. If the forces are balanced, their sum (net force) will be zero, and the object will either be at rest or be moving at constant velocity in a straight line. If the vector sum of the forces is greater or less than zero, then the object will be accelerating, which means it will be undergoing a change in motion.
When an object is at rest, the forces acting upon it are balanced - there are no unbalanced forces.
If no unbalanced force operates on an object its motion will be constant.
There is no such thing as "a balanced force" or "a unbalanced force". Only a group of two or more forces can be balanced or unbalanced. An unbalanced group of forces acting on an object causes accelerated motion of the object. A balanced group of forces doesn't.
Either a balanced group of forces is acting on it, or else zero force is.