Absolutely nothing
Because it's what we are adapted and used to.
what substance present in your body balances the atmospheric pressure action on us
The human body resists atmospheric pressure due to the balance of pressure inside and outside the body. Our body tissues, like skin and bones, provide structural support to prevent collapse. Additionally, air-filled spaces within the body, such as the lungs and sinuses, adjust to equalize pressure changes.
it causes a decrease in atmosperic pressure A+
the atmospheric pressure has no effect on our bodies in normal conditions this is because our blood is pressurised thereby equalising the force from both directions. this is why astronauts have pressurised space suits to prevent their bodies from bursting in space where the pressure is not being exerted on them.
The substance that helps balance atmospheric pressure in the body is nitrogen. Nitrogen is present in the air we breathe and enters our bloodstream, helping equalize pressure within our bodies with the external atmospheric pressure.
Without atmospheric pressure, water will boil to vapour, so as our blood and body would explode. Pressure is what that keep water in liquid and solid state on earth.
Atmospheric pressure equalises the blood pressure in our body.
Like the air inside a baloon, the fluids inside your body exert pressure. This pressure inside your body acts against atmospheric pressure. I was looking for the answer for a school assignment! Textbooks help!
The human body is well adapted to withstand the atmospheric pressure. Our internal organs and cavities are filled with fluids that apply equal pressure, counteracting the external pressure. Additionally, our body tissues and structures are strong enough to maintain their shape and integrity under normal atmospheric conditions.
Atmospheric pressure changes can trigger Migraine in some patients.
We do not feel the atmospheric pressure - roughly 101kPa - because our bodies have adapted to it, to the point where the pressure in our bodies exactly balances the external pressure, resulting in no net force on your body.