Doc. Newton tells us in his second law that
F=ma
or force equals mass times acceleration where the mass is Kilograms, the acceleration is meters/second and force is in Newtons.
Measure the mass of the soccerball, guestimate the acceleration of the ball (change in speed divided by the elapsed time) and multiply them. Bingo, force.
I would expect an object with a large mass to require the most force to move because more force is needed to overcome the inertia of the object.
Any amount of force can stop either kind of ball. But a greater force is required to stop a bowling ball than to stop a soccer ball IN THE SAME TIME, because the bowling ball has more mass, and therefore more momentum and more kinetic energy.
A pulley system with a mechanical advantage of 4 would require the least amount of effort force to lift a load. This means that for every 4 units of load force, only 1 unit of effort force is needed.
The object with the most mass will require the most force to move. This is because force is directly proportional to an object's mass: the greater the mass, the more force is needed to move it.
A longer lever would require less force to lift the load but would move the hand a longer distance. On the other hand, a shorter lever would require more force to lift the load but would move the hand a shorter distance.
In soccer the 3 components of fitness that each position would require are endurance speed and agility. These components will make one effective in their position of play.
Passing would require more effort than receiving.
I would expect an object with a large mass to require the most force to move because more force is needed to overcome the inertia of the object.
Any amount of force can stop either kind of ball. But a greater force is required to stop a bowling ball than to stop a soccer ball IN THE SAME TIME, because the bowling ball has more mass, and therefore more momentum and more kinetic energy.
A pulley system with a mechanical advantage of 4 would require the least amount of effort force to lift a load. This means that for every 4 units of load force, only 1 unit of effort force is needed.
The object with the most mass will require the most force to move. This is because force is directly proportional to an object's mass: the greater the mass, the more force is needed to move it.
Ignoring friction and air resistance, it would require a force of 30 Newtons.
A longer lever would require less force to lift the load but would move the hand a longer distance. On the other hand, a shorter lever would require more force to lift the load but would move the hand a shorter distance.
More force because there is more mass:)
The force of friction between the ball and the ground would slow down the ball's motion until it eventually comes to a stop. The force of air resistance can also contribute to slowing down the ball's movement.
No, the horizontal component of a force is directly related to the magnitude of the force. Increasing the horizontal component of the force would require increasing the magnitude of the force itself.
Most types of sports that would require a sports bra for most women include sports like gymnastics and figure skating, as well as soccer and basketball as well.