-50 N
All three objects will exert a gravitational force. The strength of the force depends on the mass of each object. The bowling ball will exert the greatest gravitational force due to its larger mass compared to the feather and the book.
Yes, according to Newton's third law of motion, for every action, there is an equal and opposite reaction. So, when the bat exerts a force on the ball, the ball also exerts an equal and opposite force on the bat.
Yes, when the batter hits the baseball with the bat, the ball exerts an equal and opposite force on the bat due to Newton's third law of motion. This means that while the bat exerts a force on the ball to propel it forward, the ball simultaneously exerts an equal force back on the bat. This interaction is crucial in determining the outcome of the hit, including the ball's speed and direction.
Since you need to exert force on the ball to push it away from you, the ball will obviously push back (with a force that has the same magnitude, but is in the opposite direction). This is an example of Newton's Third Law.
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.
The ball exerts an equal and opposite force of 8 newtons on the bat, according to Newton's third law of motion. So, the force exerted by the ball on the bat is also 8 newtons.
zero
As per Isaac Newton, for every action there is an equal and opposite reaction. Hence, the force that the bat exerts on the ball is the same as the force that the ball exerts on the bat; in this case, 1500 Newtons.
The ball exerts a force on the ground that is equal in magnitude and opposite in direction to the force that the ground exerts on the ball. The force on the ground causes a deformation in the surface, resulting in a corresponding reaction force from the ground on the ball. The impact of the golf ball on the ground demonstrates Newton's third law of motion, which states that for every action, there is an equal and opposite reaction.
by applying force to the ball the ball will apply an equal and opposite force on the foot. when you kick the ball, the ball will move forward and your foot will move backward. this force is unnoticeable to the common person simply because we are not looking for it
The net force on the ball is not zero. The ball exerts a force on the wall (the action), and the wall exerts an equal and opposite reaction force on the ball. These two forces do not sum to zero as they are acting on different objects; the action of the ball acts on the wall and the reaction of the wall acts on the ball.
The object with the most mass, as gravitational force is dependent on mass. Therefore the bowling ball exerts more gravitational force than a baseball or a football.