When you stand on the ground, you are demonstrating the force of gravity. Gravity is what pulls you towards the Earth's center, keeping you anchored to the ground.
The upward normal force from the ground pushes against gravity to keep you from sinking into solid ground when you stand. The normal force is caused by the atoms in the ground that resist being compressed by your weight, resulting in a balanced force keeping you upright.
The reaction force to gravity is the ground pushing back up against you with an equal force to support your weight. This is known as the normal force.
When you stand still . . . The sole of your shoe exerts a downward force equal to your weight against the ground. The ground exerts an upward force equal to your weight against the sole of your shoe. The net force where the sole of your shoe meets the ground is zero, which is the reason that your shoe doesn't accelerate vertically.
When you stand still . . . The sole of your shoe exerts a downward force equal to your weight against the ground. The ground exerts an upward force equal to your weight against the sole of your shoe. The net force where the sole of your shoe meets the ground is zero, which is the reason that your shoe doesn't accelerate vertically.
One example of gravitational force in daily life is the force that keeps objects on the ground, preventing them from floating away. Another example is the gravitational force between people and the Earth, which is why we are able to walk and stand upright.
The upward normal force from the ground pushes against gravity to keep you from sinking into solid ground when you stand. The normal force is caused by the atoms in the ground that resist being compressed by your weight, resulting in a balanced force keeping you upright.
The reaction force to gravity is the ground pushing back up against you with an equal force to support your weight. This is known as the normal force.
A force exactly equal to your weight. If you weigh 100 lbs and you sit, lie or stand still, the ground pushes up on you with a force of 100 lbs. This is an example of Newton's First Law of Motion in a static setting. If the ground pushed on you with more than 100 lbs, then you would rise up, if it pushed you with less than 100 lbs, you would sink down. The fact that you stay still shows the forces acting on your body (gravity pulling down and the ground pushing up) are exactly equal and opposite.
When you stand still . . . The sole of your shoe exerts a downward force equal to your weight against the ground. The ground exerts an upward force equal to your weight against the sole of your shoe. The net force where the sole of your shoe meets the ground is zero, which is the reason that your shoe doesn't accelerate vertically.
gravity
When a man stands on the ground his weight (force) is spread over a small area, causing high pressure on the ground (pressure is force divided by area). When a man lies on the ground his same weight (force) is spread over a larger area, causing low pressure on the ground (pressure is force divided by area).
When you stand still . . . The sole of your shoe exerts a downward force equal to your weight against the ground. The ground exerts an upward force equal to your weight against the sole of your shoe. The net force where the sole of your shoe meets the ground is zero, which is the reason that your shoe doesn't accelerate vertically.
Force helps your daily life.... for example: if you didn't have the force of gravity, you would never be able to stand on the ground, you would be forever floating upwards. And if you didn't have the support of the normal force pushing you up, when you stood on the ground you would fall right through it. I hope this helps you
When you stand still, the Newton's Third Law partner force that is equal and opposite to your weight is the normal force exerted by the ground. Your weight pulls you downward due to gravity, while the ground pushes upward with an equal force, keeping you in equilibrium. This interaction illustrates the principle that for every action, there is an equal and opposite reaction.
stand your ground means stand your ground and fight dont fear anything and just fight!!!
One example of gravitational force in daily life is the force that keeps objects on the ground, preventing them from floating away. Another example is the gravitational force between people and the Earth, which is why we are able to walk and stand upright.
You are demonstrating the force of friction when you pull a chair across a room. Friction is the resistance that opposes relative motion between two surfaces in contact.