The same.
The ping pong ball is the least massive (lowest in weight) of all the objects, so it takes less force to move it compared to the other objects.
This is an example of inertia. The rolling ball has more mass, so it has greater inertia than the ping pong ball. This means it requires more force to stop the rolling ball compared to the ping pong ball at the same velocity.
A baseball would be harder to stop moving at the same speed as a ping-pong ball because it has more mass and therefore more inertia. This means it would require more force to stop the baseball compared to the ping-pong ball.
A golf ball will fly further than a ping pong ball. The low mass/weight of a ping pong ball makes it more susceptible to air friction. This greater drag on the ball slow it down sooner than the golf ball.
This is an example of inertia, specifically the difference in inertia between the two objects due to their mass. The bowling ball has more mass, so it has more inertia and requires more force to stop its motion compared to the ping pong ball.
go on dangeroulyfun.com
don't shove the snake in the holeI have never made a ping pong ball launcher before, and was wondering if anyone has any ideas on a good design. It has to be less than 1 sq. ft in volume.
The ping pong ball is the least massive (lowest in weight) of all the objects, so it takes less force to move it compared to the other objects.
Here's a plan; http://beta.tulsaengineer.org/uploads/MouseTrap.bmp
like so? http://beta.tulsaengineer.org/uploads/MouseTrap.bmp
I would rate my ping pong skills as above average compared to others in my circle.
This is an example of inertia. The rolling ball has more mass, so it has greater inertia than the ping pong ball. This means it requires more force to stop the rolling ball compared to the ping pong ball at the same velocity.
Tape a spoon to the bar that is attached to the spring.Take off the piece that holds the cheese and the piece that holds the bar downPull the spoon back and place the ping pong ball in the spoon.LET GO!!
A baseball would be harder to stop moving at the same speed as a ping-pong ball because it has more mass and therefore more inertia. This means it would require more force to stop the baseball compared to the ping-pong ball.
The bowling ball has a greater gravitational force acting on it due to its larger mass compared to the ping pong ball. However, both objects experience the same acceleration due to gravity, which is approximately 9.81 m/s². Despite the bowling ball experiencing a greater force, both will fall at the same rate in a vacuum where air resistance is negligible. In the presence of air, the ping pong ball will experience more air resistance relative to its weight, potentially causing it to fall slower.
A forehand drive in table tennis is an offensive stroke that is used to force errors and to set up attacking positions.
A golf ball will fly further than a ping pong ball. The low mass/weight of a ping pong ball makes it more susceptible to air friction. This greater drag on the ball slow it down sooner than the golf ball.