A truck is heavier, has more mass. So at the same speed, the more massive object has more inertia.
A scientific word for inertia is Momentum, defined as mass times speed, and is equal to force times time. So a 1 kilogram mass operated on by a 1 Newton force for 1 second would move at 1 metre per second and would have a momentum of 1 kg-N.
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 cricket ball has more inertia than the rubber ball because inertia is directly proportional to mass. The cricket ball is denser and heavier than the rubber ball, making it harder to change its state of motion.
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.
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.
A larger and heavier ball would have greater inertia compared to a smaller and lighter ball. Inertia is the tendency of an object to resist changes in its motion, so objects with more mass will have greater inertia.
I think the truck has more inertia because ethe motorcycle seems less dense than the truck.
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because cricket ball has greater mass
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.
a Soccer ball
The cricket ball has more inertia than the rubber ball because inertia is directly proportional to mass. The cricket ball is denser and heavier than the rubber ball, making it harder to change its state of motion.
Soccer ball
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.
It is likely that a golf ball will require more energy because the ball is more dense. When atoms are heavily packed together like that you will need more energy to get the item to respond.
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.
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.
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.