Well according to the equation Force = Mass x Acceleration. A Bowling ball has more mass than a feather but it all depends on how much acceleration each is undergoing. Potentially a feather can have more force (if the bowling ball has an acceleration of zero, then there is no force being produced, and if the feather is accelerating at any speed greater than zero, thentechnicallyit has more force)
A feather would have more mass than a bowling ball only if you accumulate enough feathers to equal the mass of the bowling ball. Since a single feather is much lighter than a bowling ball, it would take a very large number of feathers—potentially thousands or even millions, depending on the feather's size and type—to surpass the mass of the bowling ball. In practical terms, individual feathers are never more massive than a bowling ball.
Use more or less force than you usually do, more force, faster ball, less force, slower ball.
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.
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.
Nope! Galileo proved that when he dropped a bowling ball and a small ball at the same time and they both landed at the bottom at the same time, but when you're thinking about like a feather and a bowling ball, the feather has more air pockets for air to go through, so the feather falls slower.
sand grain
A bowling ball has a greater force than an apple due to its larger mass. Force is directly proportional to mass, so the heavier object will exert a greater force when both are accelerated the same way.
a bowling ball
If you stand at the top of the bowling alley with a feather in one hand and a bowling ball in the other and drop them at the same time, the bowling ball will hit the parking lot first because wind currents will cause the feather to drift slowly.
So the ball can pick up more speed. For example, if you drop a feather on the ground, it takes a longer time to fall than a heavier object, such as a notepad. A bowling ball is heavier to gain speed faster.
Since the lightest tenpin bowling ball is currently 6 pounds and a table tennis ball is not even an ounce, the tenpin bowling ball is heavier.
No, a bowling ball does not always fall faster than a feather just because it weighs more. In a vacuum where there is no air resistance, both objects fall at the same rate due to gravity. In the presence of air resistance, the shape and size of the objects will affect how quickly they fall.