The primary force used when swinging typically comes from the individual's own body strength and momentum. Additionally, gravity and friction also play a role in influencing the motion of the swinging object or person.
The force that keeps a swing swinging is primarily gravity. The swinging motion is a result of the interplay between gravity pulling the swing downward and the tension in the chains or ropes supporting the swing.
Swinging your arms around in circles quickly is an example of centripetal force, not centrifugal force. Centrifugal force is the apparent outward force experienced in a rotating reference frame, while centripetal force is the force that keeps an object moving in a circular path.
No, the tension in the string of a swinging pendulum does not do any work. The tension force acts perpendicular to the direction of motion, so it does not apply a force in the direction of displacement. This means that no work is done by the tension force on the pendulum.
The centripetal force acting on a tether ball swinging around a pole is provided by the tension in the tether. This force is directed towards the center of the circular path the ball is following and is necessary to keep the ball in its circular motion.
The motion of swinging is an example of forced, damped oscillation. A more simple form of this is simple harmonic oscillation and can be read about here: http://en.wikipedia.org/wiki/Simple_harmonic_motion
The force that keeps a swing swinging is primarily gravity. The swinging motion is a result of the interplay between gravity pulling the swing downward and the tension in the chains or ropes supporting the swing.
Swinging your arms around in circles quickly is an example of centripetal force, not centrifugal force. Centrifugal force is the apparent outward force experienced in a rotating reference frame, while centripetal force is the force that keeps an object moving in a circular path.
that depends on the swing....
No, the tension in the string of a swinging pendulum does not do any work. The tension force acts perpendicular to the direction of motion, so it does not apply a force in the direction of displacement. This means that no work is done by the tension force on the pendulum.
The centripetal force acting on a tether ball swinging around a pole is provided by the tension in the tether. This force is directed towards the center of the circular path the ball is following and is necessary to keep the ball in its circular motion.
you have to use a lot force from the arms when swinging a bat.
The motion of swinging is an example of forced, damped oscillation. A more simple form of this is simple harmonic oscillation and can be read about here: http://en.wikipedia.org/wiki/Simple_harmonic_motion
A swing stops swinging due to friction and air resistance gradually slowing it down. As the momentum decreases, it requires more energy from the person pushing it to keep it swinging. Eventually, the swing will come to a stop unless additional force is applied.
the batter swinging the bat :) apex
the batter swinging the bat :) apex
Lots of swinging of the light saber, force lightning and GET OUT OF MY MIND WITCH! s
The input force of a hammer is the force applied by the person swinging or striking with the hammer. It is the force exerted on the hammer handle by the person's hand or arm to drive the hammer head onto the target.