No, the inertia of a bowling ball is greater than the inertia of a basketball due to the bowling ball's larger mass. Inertia is the resistance of an object to changes in its state of motion, and a heavier object like the bowling ball requires more force to accelerate or decelerate compared to the basketball.
No, the inertia of a bowling ball is greater than that of a golf ball. Inertia is directly related to an object's mass, so the heavier the object, the greater its inertia. The mass of a bowling ball is much larger than that of a golf ball, resulting in greater inertia.
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.
A bowling ball has more inertia than a basketball because inertia is directly proportional to an object's mass. The larger mass of the bowling ball means that it will be more resistant to changes in its state of motion compared to the basketball.
B. A bowling ball has the greatest inertia because it has the most mass compared to the other objects listed. Inertia is directly related to an object's mass, with greater mass resulting in greater inertia.
Inertia and gravity cause a bowling ball to stop on earth.
Because there both very heavy
cat
No, a bowling ball (or any other object) has exactly the same inertial mass no matter where it is (its actual inertia will, of course, depend upon its velocity as well as its inertial mass). Weight changes on the moon, but inertia doesn't.
Most likely the bowling ball. According to the laws of physics, an object with more inertia accelerates slower but is harder to stop. The bowling ball accelerates ...
Phylogenetic inertia illustrates the tendency for species to retain ancestral traits over time, even if those traits are no longer advantageous. This concept helps explain why some traits may persist in species even if they have lost their original function or have become maladaptive in a new environment.
Inertia affects bowling by causing the bowling ball to resist changes in its motion. When the bowler releases the ball, its inertia keeps it moving in a straight line until acted upon by external forces like friction with the lane and gravity. The weight and mass of the ball determine how much force is needed to change its direction or speed.