[It's Newton's 3rd Law.]
The force that the puck exerts on the hockey stick depends on various factors, such as the speed of the puck, the angle at which it hits the stick, and the mass of the puck. This force can be calculated using the principles of classical mechanics and is typically measured in Newtons.
When a horse pulls a cart, it exerts a force that can vary depending on the weight of the cart and the terrain. On average, a horse can exert a force of around 500 to 1,000 pounds when pulling a cart.
Not that much actually.
the sun is much much more massive than Neptune
Though the moon is closer, it is relatively small compared to the sun. The sun is much larger and exerts a far stronger gravitational force.
The Earth exerts the greatest gravitational force on you because it is the most massive object you are closest to. The Earth exerts a force equal to your weight. The other objects exert gravitational forces but are not very noticeable because they are either low in mass or separated from you by great distance.
The force a floor exerts on you is equal and opposite to your weight. This force is known as the normal force, which supports your weight and prevents you from falling through the floor. The magnitude of this force depends on your mass and the acceleration due to gravity.
The man exerts a force of 600 N and the woman exerts a force of 300 N. Work done by the man = Force x displacement = 600 x 20 = 12,000 J Hence, the man performs 12,000 joules of work.
Jim will need to exert at least 25 N of force to overcome both gravity and friction and move the object. This is calculated by adding the force of gravity (15 N) and the force of friction (10 N).
While the ball does exert a force on Earth according to Newton's third law of motion, the force exerted by the ball on Earth is much smaller compared to the force exerted by Earth on the ball due to Earth's much larger mass. This makes the effect of the ball's force on Earth negligible in comparison.
Yes, the compass needle exerts a tiny force on Earth due to Newton's third law of motion, which states that for every action, there is an equal and opposite reaction. However, this force is negligible compared to the much larger force exerted by Earth's magnetic field on the compass needle.
Yes, the floor exerts an upward force on your feet in response to the gravitational force pulling you down. This force is known as the normal force and it helps to support your weight and keep you from falling through the floor.