Yes, the force exerted by the floor on our feet is equal to the force that our feet exerted on the floor, or it just depends on your weight, If you are heavier than the normal. When you stand, the longer the time you stand, the more pain you feel on your feet. And we can't be move upward by the force that the floor exerted on our feet because of the force of our weight that keeps us on the ground, and also because of gravity.
Yes, according to Newton's third law of motion, for every action, there is an equal and opposite reaction. When you take a step and exert a force against the earth, the earth exerts an equal and opposite force against your foot.
When a person pushes against the sidewalk, they exert a force in the opposite direction. According to Newton's third law of motion, for every action, there is an equal and opposite reaction. This means the sidewalk exerts an equal and opposite force on the person, propelling them forward.
Because your feet are not accelerating, the force exerted by the floor upon your feet must be exactly the same as the force exerted by your feet on the floor. If you are standing, the amount of force exerted by your feet, and thus the amount of force exerted by the floor, is equivalent to your weight.
Waves exert a force on the paper boat, causing it to move in the direction of the wave's energy. The force of the wave pushes against the boat, propelling it forward with each wave crest that passes underneath the boat.
The ability to exert force against resistance is known as strength. It is a physical attribute that is developed through training and conditioning specific muscle groups. Strength is essential for performing tasks that require physical effort.
The force that your legs exert to create forward momentum.
Yes, according to Newton's third law of motion, for every action, there is an equal and opposite reaction. When you take a step and exert a force against the earth, the earth exerts an equal and opposite force against your foot.
normal force
in which situation you exert more force downward, standing or lying horizantilly?
When a person pushes against the sidewalk, they exert a force in the opposite direction. According to Newton's third law of motion, for every action, there is an equal and opposite reaction. This means the sidewalk exerts an equal and opposite force on the person, propelling them forward.
Muscular strength
Because your feet are not accelerating, the force exerted by the floor upon your feet must be exactly the same as the force exerted by your feet on the floor. If you are standing, the amount of force exerted by your feet, and thus the amount of force exerted by the floor, is equivalent to your weight.
Basketball - Players exert a force when dribbling, passing, or shooting the ball, which changes the ball's velocity. Swimming - Swimmers exert force against the water to propel themselves forward, changing their velocity in the pool. Football - Players exert force when kicking or throwing the ball, resulting in a change in the ball's velocity.
Newton's 3rd law of motion states is basic terms that for every action there is an equal, but opposite reaction (if you push against a wall with force F, then the wall will push back with force -F). When you walk/run forward, you exert a force on the ground that goes diagonally down and backward. The equal, but opposite reaction is the ground exerting a force on your foot that is diagonally up and forward (exactly opposite that applied by your foot). This helps to propel you forward as you walk or run.
Waves exert a force on the paper boat, causing it to move in the direction of the wave's energy. The force of the wave pushes against the boat, propelling it forward with each wave crest that passes underneath the boat.
Both a balloon and jet engine exert force in the backward direction to move forward.
Rockets exert force at the upper part of the combustion chamber. This pushes the rocket forward.