Osmotic pressure across the cell wall, here called Turgor Pressure.
The force exerted by a seedling as it pushes through the soil is due to the turgor pressure created inside its cells. This pressure comes from the water in the vacuoles of the plant cells, causing them to become rigid and push against the cell walls. This pressure helps the seedling elongate and push through the soil.
Atmospheric pressure out side the body and hydrostatic pressure for animals that live in water
This is called turgor pressure.
Glaucoma is a condition caused by improper drainage of the aqueous humor, leading to increased pressure inside the eye. Over time, this increased pressure can damage the optic nerve and result in vision loss.
The pressure that builds in a plant cell as a result of osmosis is called turgor pressure.
The amount of force exerted on a balloon by the gas inside is called the internal pressure. This pressure is caused by the gas molecules colliding with the walls of the balloon. The greater the number of collisions, the greater the force exerted on the balloon.
The pressure exerted on the inside of the can would be 50 Pa (Pascals) using the formula pressure = force / area.
You don't feel the pressure exerted by the atmosphere because your body is used to it and is able to balance the pressure inside and outside.
Greater pressure is exerted inside the whale's body, as the lungs compress and force air out through the blowhole. When the whale surfaces to exhale, the pressure inside its body is released through the blowhole, creating the characteristic spout of mist or water vapor.
Since there's no particles present, there's no pressure.
The difference of turgor pressure and diffusion is that turgor pressure is an osmotic pressure exerted by the contents of a plant cell against its cell wall; while diffusion is a movement of molecules from an area higher concentration to an area lower concentration.
Pressure inside of a balloon is created by the movement of the air molecules against the inner surface of the balloon. The more air inside the balloon, the more molecules that are hitting the same surface are, so there is more pressure.
The gas pressure inside the cylinder is the force exerted by the gas on the walls of the cylinder. It is measured in units such as pounds per square inch (psi) or pascals (Pa).
Air particles inside a balloon collide with the walls of the balloon, transferring momentum and exerting a force per unit area, creating pressure. The more particles colliding with the walls, the greater the pressure exerted on the inside of the balloon.
The force exerted by a seedling as it pushes through the soil is due to the turgor pressure created inside its cells. This pressure comes from the water in the vacuoles of the plant cells, causing them to become rigid and push against the cell walls. This pressure helps the seedling elongate and push through the soil.
The air inside the tire heats up, building the pressure. The pressure is exerted on the walls of the tire, making it feel harder.
The pressure exerted by air in a tyre (or any gas anywhere) is caused by the gas molecules colliding with the wall of the tyre at very high speeds. At a certain pressure for example 50 Pascalls the air is exerting 50 Newtons of force on every square meter of tyre.