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Does photosynthesis take carbon dioxide out of the atmosphere?

No, Cellular Respiration returns carbon dioxide back into the atmosphere: Photosynthesis: Carbon Dioxide + Water -> Light Energy -> Sugar + Oxygen Cellular Respiration: Sugar + Oxygen -> C.R. -> Carbon Dioxide + Water


How is the balance between oxygen and carbon dioxide maintained?

The balance between oxygen and carbon dioxide in the atmosphere is maintained through the processes of photosynthesis and respiration. During photosynthesis, plants take in carbon dioxide and release oxygen, while during respiration, organisms take in oxygen and release carbon dioxide. This cycle helps to regulate the levels of both gases in the Earth's atmosphere.


Which process is part of the carbon cycle?

cellular respiration


Which process does not release carbon dioxide to the atmosphere?

Photosynthesis is a process that does not release carbon dioxide to the atmosphere. Instead, during photosynthesis, plants absorb carbon dioxide from the environment and convert it into oxygen through a series of chemical reactions.


What two biological processes drive the carbon cycle?

The two processes of the carbon cycle are photosynthesis and cellular respiration. In photosynthesis carbon from carbon dioxide is fixed into carbohydrates. In cellular respiration, carbohydrates are broken down to form ATP and carbon in the form of carbon dioxide is released into the atmosphere. The two processes of the carbon cycle are photosynthesis and cellular respiration. In photosynthesis carbon from carbon dioxide is fixed into carbohydrates. In cellular respiration, carbohydrates are broken down to form ATP and carbon in the form of carbon dioxide is released into the atmosphere.


What 2 processes that cause carbon to move out of the atmosphere?

photosynthesis: plants take in carbon dioxide during photosynthesis and use it to build carbohydrates.dissolving: carbon dioxide dissolves in rainwater and oceans.


How do you describe the carbon cycle?

The two processes of the carbon cycle are photosynthesis and cellular respiration. In photosynthesis carbon from carbon dioxide is fixed into carbohydrates. In cellular respiration, carbohydrates are broken down to form ATP and carbon in the form of carbon dioxide is released into the atmosphere.


Photosynthesis and cellular respiration are part of which cycle?

While photosynthesis requires carbon dioxide and releases oxygen, cellular respiration requires oxygen and releases carbon dioxide. It is the released oxygen that is used by us and most other organisms for cellular respiration.


What do the process of photosynthesis and cellular respiration form?

The Processes Of Photosynthesis And Cellular Respiration Form Carbon Dioxide-Oxygen Cycle


How are cellular respiration and photosynthesis almost opposite process?

Cellular respiration involves breaking down glucose to release energy with the use of oxygen, producing carbon dioxide and water as byproducts. In contrast, photosynthesis uses sunlight to convert carbon dioxide and water into glucose, releasing oxygen as a byproduct. Thus, cellular respiration consumes oxygen and produces carbon dioxide, while photosynthesis consumes carbon dioxide and produces oxygen.


Does oxygen can enter the atmosphere during cellular respiration or photosynthesis?

Oxygen is released into the atmosphere during photosynthesis when plants use sunlight to convert carbon dioxide and water into glucose and oxygen. During cellular respiration, organisms take in oxygen and release carbon dioxide into the atmosphere.


What is the ecological connection between cellular respiration and photosynthesis?

Cellular respiration and photosynthesis are interconnected through the carbon cycle. In photosynthesis, plants take in carbon dioxide and water to produce glucose and oxygen. This glucose is then used in cellular respiration by plants and animals to produce energy, releasing carbon dioxide back into the atmosphere for plants to use in photosynthesis. This cycle maintains the balance of oxygen and carbon dioxide in the atmosphere.