A Basketball has more pressure than a beachball. Basketball is typically inflated to a higher pressure to maintain its shape and bounce, while a beachball is inflated to a lower pressure for lighter play and ease of handling.
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There are more particles of gas in the basketball than in the beach ball. So, more particles hit the inside surface of the basketball than hit the inside surface of the beach ball. When more particles hit the inside surface of the basketball, the force on the inside surface of the ball increases. This increased force leads to greater pressure, which makes the basketball feel harder than the beach ball. Hope this helps :)
To study how air pressure in a basketball changes with temperature, you will need a pressure gauge to measure the air pressure inside the basketball accurately. Additionally, you will require a thermometer to monitor the temperature of the basketball during the experiment.
Assuming standard atmospheric pressure of 14.7 psi, the pressure difference in the basketball is 5.3 psi. To estimate the volume of air in the basketball, you'd need the basketball's size, as well as assumptions about temperature and ideal gas behavior. This volume would be significantly larger in standard conditions than when pressurized.
The regular air pressure in a basketball is typically between 7.5 and 8.5 pounds per square inch (psi). It is important to maintain the correct air pressure for optimal performance and bounce of the ball.
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.