Centripetal force acts towards the center of the spinning top, keeping it in a circular path. This force is necessary to balance the spinning top's tendency to move in a straight line. It allows the top to continuously spin and maintain its stability.
The force of friction between the spinning top and the surface it is on causes it to stop spinning. Over time, the energy of the spinning top is transferred to the surface as heat, resulting in a decrease in the top's spinning speed until it comes to a stop.
The spinning top exhibits both rotational and translational motion. Rotational motion refers to the spinning motion around its axis, while translational motion refers to the movement of the top as a whole across a surface.
A spinning top has a gyroscopic effect that is resistant to changing its axis (falling over). The faster the top, the stronger the gyroscopic effect. As the top begins to slow due to friction, the gyroscopic effect weakens and the top begins to fall.
The type of force used when an object is spinning is called centripetal force.
To make a top spin longer, you can try spinning it faster initially, ensure the surface it's spinning on is smooth and level, and minimize air resistance by spinning it in a place with no drafts. Additionally, using a top with a sharp point can help it maintain stability and spin longer.
The force of friction between the spinning top and the surface it is on causes it to stop spinning. Over time, the energy of the spinning top is transferred to the surface as heat, resulting in a decrease in the top's spinning speed until it comes to a stop.
The force of friction will eventually steal away the energy of the spinning top, and it will fall over.
The spinning top exhibits both rotational and translational motion. Rotational motion refers to the spinning motion around its axis, while translational motion refers to the movement of the top as a whole across a surface.
A spinning top has a gyroscopic effect that is resistant to changing its axis (falling over). The faster the top, the stronger the gyroscopic effect. As the top begins to slow due to friction, the gyroscopic effect weakens and the top begins to fall.
yes, this ADG helps the satellite to orbit earth. This is the centripital force
if you mean when they do a loop-de-loop-centripital force (centrifical force dosent exist)keeps them in their seets
The Spinning Top was created in 2008.
Centripetal force is found using the equation F=mv2/r m=mass v=velocity r=radius
Correctly termed centripetal acceleration, this phenomenon causes the top to resist accelerating in a different axis.
the moon rotates around the earth. The force keeping it in orbit around the earth aka the centripital force is caused by the gravitational force between the moon and the earth. If the gravitational force and thus the centripital force dissapeared, the moon would fly off tangent to its circular orbit
Centrifugal force .
The type of force used when an object is spinning is called centripetal force.