The primary gases involved in the process of gaseous exchange are oxygen (O₂) and carbon dioxide (CO₂). During inhalation, oxygen from the air enters the lungs and diffuses into the bloodstream, where it is transported to body tissues. Conversely, carbon dioxide, a waste product of cellular respiration, is carried from the tissues back to the lungs, where it is expelled from the body during exhalation. This exchange occurs in the alveoli of the lungs, facilitating the vital process of respiration.
Gaseous exchange and evaporation of water vapour
Gaseous exchange takes place in the lungs, specifically in the alveoli. Oxygen from inhaled air diffuses into the bloodstream, while carbon dioxide from the bloodstream diffuses into the alveoli to be exhaled.
Transpiration is the inevitable consequence of gaseous exchange in land plants because it is the process by which plants lose water vapor through their leaves while exchanging gases with the atmosphere. As plants take in carbon dioxide for photosynthesis through their stomata, water vapor is released. This helps maintain the plant's internal water balance and allows the exchange of gases necessary for photosynthesis and respiration.
Gaseous exchange in Amoeba occurs through diffusion. Oxygen from the surrounding environment diffuses into the cell across the cell membrane, while carbon dioxide produced by cellular respiration diffuses out of the cell. This process allows for the exchange of gases to support the metabolic activities of the cell.
the best answer is:Smoking reduces the gases in oxygen
the cells
Leaf gaseous exchange occurs through tiny pores called stomata on the surface of leaves. During photosynthesis, carbon dioxide enters the leaf through the stomata, while oxygen and water vapor exit the leaf through the same pores. This exchange of gases is crucial for the process of photosynthesis and respiration in plants.
Root Surface
every living thing uses gasses, one of the signs of life is respiration (ie gaseous exchange)
In lower plants such as mosses and liverworts, gaseous exchange occurs through simple diffusion across the cell membranes. These plants lack specialized structures like stomata found in higher plants, so gases enter and exit the plant cells directly through their surfaces. This process is limited by the surface area available for exchange, making lower plants reliant on moist environments for efficient gaseous exchange.
Stomata on the underside of the leaf control the passage of gases into and out of the leaf.
Diffusion.