Rubber generally has more elasticity than steel. This is because rubber is a type of elastomer that can deform under stress and return to its original shape once that stress is removed. On the other hand, steel is a rigid material with less elasticity, meaning it is less able to deform and return to its original shape when subjected to stress.
No, rubber is more elastic than steel. Rubber has a high elasticity and is able to return to its original shape after being stretched or compressed, while steel has a lower elasticity and is more likely to deform permanently when stretched.
A glass ball will bounce higher than a rubber one.
A rubber ball will bounce higher than a leather ball due to its higher elasticity and ability to store and release energy more efficiently. Leather balls are typically less bouncy and absorb more of the impact energy upon contact with the ground.
It is generally easier to stop a rubber ball moving at the same speed as a wooden ball of the same size, due to the rubber ball's elasticity and ability to deform upon impact, absorbing some of the energy. The wooden ball, being more rigid, would transfer more energy upon impact, making it more difficult to stop.
No, a rubber ball usually bounces higher than a glass ball due to the difference in elasticity between the two materials. Rubber is more elastic and capable of storing and releasing more energy during impact, which allows it to bounce higher. Glass is brittle and absorbs more of the impact energy, resulting in lower bounce height.
Rubber.
No, rubber is more elastic than steel. Rubber has a high elasticity and is able to return to its original shape after being stretched or compressed, while steel has a lower elasticity and is more likely to deform permanently when stretched.
it has more elasticity and potential energy
In science, elasticity is the tendency of a material to return to its original size and shape when it is released from being stretched or compressed. By this definition steel is more elastic than rubber.
A glass ball will bounce higher than a rubber one.
A rubber ball will bounce higher than a leather ball due to its higher elasticity and ability to store and release energy more efficiently. Leather balls are typically less bouncy and absorb more of the impact energy upon contact with the ground.
It is generally easier to stop a rubber ball moving at the same speed as a wooden ball of the same size, due to the rubber ball's elasticity and ability to deform upon impact, absorbing some of the energy. The wooden ball, being more rigid, would transfer more energy upon impact, making it more difficult to stop.
No, a rubber ball usually bounces higher than a glass ball due to the difference in elasticity between the two materials. Rubber is more elastic and capable of storing and releasing more energy during impact, which allows it to bounce higher. Glass is brittle and absorbs more of the impact energy, resulting in lower bounce height.
N0. The common belief is that if an object elongates easily the object is more elastic . But in Physics the object which gives more resistance to elongate is said to be more elastic . Such objects will have high Young's modulus . Steel is more elastic than copper . The Young's modulus for steel is 210 G Pa For copper it is 117 G Pa Elongation for steel is 35% and for copper it is 45% For rubber Young's modulus is 0.02 G Pa and elongation is 500 % During collision two clay balls will stick together. We call it inelastic collision . Two steel balls will rebound easily and the collision is elastic collision.
In general, thicker rubber bands have more elasticity compared to thinner rubber bands. This is because thicker rubber bands contain more material that is able to stretch and return to its original shape. Thinner rubber bands may have less material to stretch, resulting in lower elasticity.
It is a ball of rubber bands. You wrap more and more on to it.
The height a steel ball will bounce on concrete depends on factors like the initial drop height, ball size, and surface condition. Generally, steel balls bounce lower on concrete compared to more elastic surfaces due to concrete's hardness and lack of elasticity.