Gracy, if you move the vector, it isn't the same vector. It might be parallel to the initial one and of the same magnitude, but where the force is applied is important. That picture you posted does state that moving the vector doesn't change it, but if you read on, it states that changing the position vector, at least in this case, does not change magnitude or direction. In a physical situation, the position is important.
Take this example, the Earth goes around the sun. There's a force that pulls the Earth towards the sun and if you were to draw a vector diagram it would be an arrow with the tail at the Earth's centre of mass and the head pointing towards the sun. Now say you move this vector over to a point on the circumference of the earth. Then that force would be applying a torque on the Earth which would make it spin much faster than it is right now and we would all be quite dizzy. But that isn't the case.
So you see, in a physical situation, the position of the vector does matter and you can't move it somewhere without changing the physics of the situation.