Biological processes such as photosynthesis and respiration by marine plants and animals influence the type and amount of gases dissolved in seawater. During photosynthesis, marine plants absorb carbon dioxide and release oxygen, which increases the dissolved oxygen concentration in seawater. Similarly, during respiration, marine organisms consume oxygen and release carbon dioxide, which reduces the dissolved oxygen concentration and increases carbon dioxide levels. These processes play a crucial role in maintaining the balance of gases in seawater and supporting marine ecosystems.
The two gases that are recycled by the process of photosynthesis and cellular respiration are oxygen and carbon dioxide. In photosynthesis, plants take in carbon dioxide and release oxygen, while during cellular respiration, organisms take in oxygen and release carbon dioxide.
Water plants need carbon dioxide and oxygen as gases for their respiration and photosynthesis processes. Carbon dioxide is utilized during photosynthesis to produce glucose, while oxygen is needed for cellular respiration to generate energy for growth and survival.
Both photosynthesis and respiration involve the exchange of gases, specifically oxygen and carbon dioxide. Additionally, both processes are essential for the survival of living organisms, as photosynthesis produces oxygen and glucose for energy, while respiration uses oxygen to break down glucose to release energy.
Cellular respiration and photosynthesis are both fundamental processes for living organisms. Both involve the transformation of energy, with cellular respiration breaking down glucose to release energy and photosynthesis using sunlight to produce glucose. Additionally, both processes involve the exchange of gases, with cellular respiration releasing carbon dioxide and photosynthesis utilizing it to produce oxygen.
Biological processes such as photosynthesis and respiration by marine plants and animals influence the type and amount of gases dissolved in seawater. During photosynthesis, marine plants absorb carbon dioxide and release oxygen, which increases the dissolved oxygen concentration in seawater. Similarly, during respiration, marine organisms consume oxygen and release carbon dioxide, which reduces the dissolved oxygen concentration and increases carbon dioxide levels. These processes play a crucial role in maintaining the balance of gases in seawater and supporting marine ecosystems.
Photosynthesis and respiration are both processes that involve the exchange of gases, specifically oxygen and carbon dioxide. They are also interconnected in that the products of photosynthesis, such as glucose, are used as energy sources in respiration.
The two gases that are recycled by the process of photosynthesis and cellular respiration are oxygen and carbon dioxide. In photosynthesis, plants take in carbon dioxide and release oxygen, while during cellular respiration, organisms take in oxygen and release carbon dioxide.
Water plants need carbon dioxide and oxygen as gases for their respiration and photosynthesis processes. Carbon dioxide is utilized during photosynthesis to produce glucose, while oxygen is needed for cellular respiration to generate energy for growth and survival.
Both photosynthesis and respiration involve the exchange of gases, specifically oxygen and carbon dioxide. Additionally, both processes are essential for the survival of living organisms, as photosynthesis produces oxygen and glucose for energy, while respiration uses oxygen to break down glucose to release energy.
Plants give off oxygen during photosynthesis and carbon dioxide during respiration.
Cellular respiration and photosynthesis are both fundamental processes for living organisms. Both involve the transformation of energy, with cellular respiration breaking down glucose to release energy and photosynthesis using sunlight to produce glucose. Additionally, both processes involve the exchange of gases, with cellular respiration releasing carbon dioxide and photosynthesis utilizing it to produce oxygen.
Plants. By allowing gases to enter and exit through stomata, plants can exchange gases needed for respiration, such as oxygen and carbon dioxide, with the external environment. This adaptation helps plants survive by facilitating the exchange of gases required for cellular respiration and photosynthesis.
Photosynthesis. 6CO2 + 6H2O -> C6H12O6 + 6O2 ------------------------------------------- Cellular respiration. C6H12O6 + 6O2 -> 6CO2 + 6H2O One is the opposite of the other. Photosynthesis is an anabolic ( composition/synthesis ) reaction which builds sugar out of carbon dioxide and water to get food and building material. Cellular respiration is a catabolic ( combustion ) reaction that breaks down and reduces glucose to gain energy from ATP.
Plants produce food to run their cellular activities, so they burn the food they produce while some of it gets stored. Therefore, the rate of respiration must be taken in account in order to see the complete rate of photosynthesis.
Respiration involves the processes of inhalation and exhalation. It is used to control breathing through the exchanges of gases and distribution of oxygen.
Photosynthesis takes the energy from sunlight and uses it to put together large sugar molecules from the raw ingredients CO2 and H2O. Cellular respiration occurs when organisms break down large sugar molecules to use the energy to do work and release the waste products CO2 and H2O