The same reason bricks exert downward pressure. Gravity.
The same reason bricks exert downward pressure. Gravity.
When sinking air exerts a downward force, it forms a high-pressure system. High-pressure systems are associated with clear skies and stable weather conditions due to the sinking air inhibiting cloud formation and precipitation.
Yes, water exerts pressure on the hull of the submarine.
The force that water exerts on a system is known as hydrostatic pressure. This pressure increases with depth due to the weight of the water above pushing down. It is perpendicular to any surface it acts upon.
1 meter of water exerts a pressure of approximately 0.1 atmospheres or 10 kilopascals.
True. Running water is a significant agent of erosion that exerts a downward force on slopes through the process of erosion and transportation of sediment. This process contributes to the reshaping of landscapes over time.
Sinking air exerts a downward force to form high-pressure systems. As the air sinks, it compresses and warms, leading to the suppression of cloud formation and clear skies. This descending motion creates a stable atmospheric environment and inhibits the formation of precipitation.
The weight of air in the Earthâ??s atmosphere is 1 kg per square centimeter at sea level. The pressure under water is greater that the pressure at the surface because of the water pressing down heavily.
Skating on ice happens through a process called regelation. The blade of the skate exerts pressure downward essentially causing the ice to melt due to the pressure, creating for a short time the little bit of water needed for the skater to move and then as the pressure is gone, that water refreezes usually in the ridges that are typical on a skating rink.
mercury exerts more pressure than water bcause mercury is a metal and water is a non metal obviously mercury weighs more than water
One experiment that proves that air exerts pressure is the collapsing can experiment. In this experiment, a small amount of water is boiled in a can, and the can is then sealed. As the steam cools and condenses, it creates a vacuum inside the can, causing the outside air pressure to crush the can. This demonstration shows that air exerts pressure.
It exerts pressure on the side with a higher concentration of water.