Your weight pushing down on the chair is the action force. The reaction force is the force exerted by the chair that pushes up on your body
Balanced, the force or the chair pushing up against you is equal to the force of you being pulled down by gravity. Now if the chair was breaking and you were falling that would be a completely different story.
I want to be sure the chair is conducive for sitting.
If we have a force acting on a body and we know what that force is, and we also know that the force is gravity, we can solve because we know the force gravity exerts on a mass. If we take the total force acting on the body and divide it by the force of gravity per one unit of mass, we can find the number of units of mass that cause gravity to act on the object. We have 1033 Newtons of force acting on the object. Gravity pulls down with a force of 9.8 Newtons on 1 kilogram of mass. Our 1033 Newtons divided by 9.8 Newtons per kilogram = 105.41 kilograms
"The condition of equilibrium or motion of a rigid body is remain unchanged, if a force acting on the rigid body is replaced by another force of the same magnitude and same direction but, acting anywhere along the same line of action."
Gravitational Pull, push, or force.
When you are sitting in a chair at rest, the forces acting on you are balanced. The force of gravity pulling you downward is balanced by the normal force of the chair pushing upward against you. This balanced force keeps you stationary in the chair.
When you are sitting in a chair, the main forces acting on you are gravity pulling you downward towards the Earth and the normal force exerted by the chair pushing you upward to support your weight. Additionally, there may be frictional forces between you and the chair depending on the materials and surfaces involved.
When sitting still watching TV, the main forces acting on you are the force of gravity pulling you downward and the normal force exerted by the chair supporting you upward. These forces are balanced, resulting in a net force of zero, causing you to remain at rest.
The reaction force to the downward push of Billy's weight on the chair is the upward force of the chair pushing back on him. The downward force of Billy's weight on Earth is countered by the upward force of gravity acting on him.
When sitting on a chair, the action force is your weight pushing down on the chair, and the reaction force is the chair pushing back up on you with an equal force to support your weight. These forces create an equilibrium that keeps you sitting on the chair.
The two forces acting on you while sitting are gravity, which pulls you downward towards the Earth, and the normal force exerted by the chair you are sitting on, which supports your weight and prevents you from falling through.
The reaction force of the chair you are sitting on is equal to the force you exert on the chair due to your weight. According to Newton's third law, for every action, there is an equal and opposite reaction. So, the chair exerts an equal force in the opposite direction to support your weight.
Your weight pushing down on the chair is the action force. The reaction force is the force exerted by the chair that pushes up on your body
The reaction force to the gravitational force acting on your body as you sit in your desk chair is the normal force exerted by the chair on your body. It is equal in magnitude and opposite in direction to the force of gravity, balancing the forces and keeping you in equilibrium.
Your weight pushing down on the chair is the action force. The reaction force is the force exerted by the chair that pushes up on your body
The main forces acting on a chair are gravity, which pulls the chair downward towards the Earth, and the normal force exerted by the floor or supporting surface, which balances the force of gravity to keep the chair in place. Other forces could include friction between the chair and the floor, as well as any additional forces such as those applied by a person sitting on the chair.
Your weight pushing down on the chair is the action force. The reaction force is the force exerted by the chair that pushes up on your body