DENSER MORE PRESSURE PRESSURE PRESSURE LOOK AT SCIENCE TEXT BOOK DONT CHEAT ON WIKI
Water has more density than air.
Water produces upthrust, also known as buoyant force, due to its density and the pressure it exerts on objects submerged in it. When an object is placed in water, the surrounding water exerts an upward force on the object because the pressure at the bottom of the object is greater than at the top, resulting in buoyancy.
Yes, the more the water the greater the pressure of all the water pushing down on other water.
When water freezes in an enclosed vessel, it expands and exerts pressure on the vessel walls. This pressure depends on factors such as the volume of water, rate of freezing, and strength of the vessel. Generally, this can lead to the vessel cracking or bursting if the pressure becomes too high.
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.
In a water pressure-volume diagram, the relationship between pressure and volume is inversely proportional. This means that as the volume of water decreases, the pressure increases, and vice versa.
Water produces upthrust, also known as buoyant force, due to its density and the pressure it exerts on objects submerged in it. When an object is placed in water, the surrounding water exerts an upward force on the object because the pressure at the bottom of the object is greater than at the top, resulting in buoyancy.
Yes, the more the water the greater the pressure of all the water pushing down on other water.
It is compressed and occupies a smaller volume.
Yes, water exerts pressure on the hull of the submarine.
When water freezes in an enclosed vessel, it expands and exerts pressure on the vessel walls. This pressure depends on factors such as the volume of water, rate of freezing, and strength of the vessel. Generally, this can lead to the vessel cracking or bursting if the pressure becomes too high.
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.
The same reason bricks exert downward pressure. Gravity.
Water pressure increases with surface area because a larger surface area means the force is distributed over a greater area, resulting in higher pressure. Fluid density also affects water pressure because denser fluids have more mass per unit volume, increasing the pressure at a given depth due to the weight of the fluid above.
In a water pressure-volume diagram, the relationship between pressure and volume is inversely proportional. This means that as the volume of water decreases, the pressure increases, and vice versa.
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.
The same reason bricks exert downward pressure. Gravity.
1 meter of water exerts a pressure of approximately 0.1 atmospheres or 10 kilopascals.