Type your answer here..is it the 4 carbon molecules and C4 plants
The light-independent reactions of photosynthesis, also known as the Calvin cycle, occur in the stroma of the chloroplasts in plant cells. This process uses the products of the light-dependent reactions to convert carbon dioxide into sugars.
During the light-independent reactions of photosynthesis, also known as the Calvin cycle, glucose is synthesized from carbon dioxide using ATP and NADPH produced in the light-dependent reactions. This process occurs in the stroma of the chloroplasts.
In the Calvin-Benson cycle, also known as the light-independent reactions of photosynthesis, carbon dioxide is fixed and converted into sugars using energy from ATP and NADPH generated in the light-dependent reactions. This process involves a series of enzymatic reactions that ultimately produce glucose, the primary product of photosynthesis, and regenerate the molecules needed to continue the cycle.
When carbon dioxide gas is involved in a reaction, it can act as a reactant, product, or catalyst. It can participate in reactions such as combustion where it reacts with oxygen to form carbon dioxide and heat. In other cases, it can act as a catalyst in reactions like the synthesis of urea.
Type your answer here..is it the 4 carbon molecules and C4 plants
The light-independent reactions of photosynthesis, also known as the Calvin cycle, occur in the stroma of the chloroplasts in plant cells. This process uses the products of the light-dependent reactions to convert carbon dioxide into sugars.
During the light-independent reactions of photosynthesis, also known as the Calvin cycle, glucose is synthesized from carbon dioxide using ATP and NADPH produced in the light-dependent reactions. This process occurs in the stroma of the chloroplasts.
In the Calvin-Benson cycle, also known as the light-independent reactions of photosynthesis, carbon dioxide is fixed and converted into sugars using energy from ATP and NADPH generated in the light-dependent reactions. This process involves a series of enzymatic reactions that ultimately produce glucose, the primary product of photosynthesis, and regenerate the molecules needed to continue the cycle.
The process of photosynthesis breaks up CO2 molecules.
In the van Niel experiment, the oxygen molecules that originated from carbon dioxide are released as byproducts during the process of photosynthesis. These oxygen molecules are a result of splitting water molecules to produce molecular oxygen (O2) while converting carbon dioxide into carbohydrates.
When carbon dioxide gas is involved in a reaction, it can act as a reactant, product, or catalyst. It can participate in reactions such as combustion where it reacts with oxygen to form carbon dioxide and heat. In other cases, it can act as a catalyst in reactions like the synthesis of urea.
When carbon dioxide and chlorine are mixed, they do not react chemically with each other. Instead, they remain as separate molecules. Both carbon dioxide and chlorine are stable molecules and will not form a chemical compound when combined.
The light-independent reactions, also known as the Calvin cycle, occur in the stroma of the chloroplasts in plant cells. This process uses ATP and NADPH produced during the light-dependent reactions to convert carbon dioxide into sugars.
Photosynthesis happens in two stages, also called reactions. The first stage is the light-dependent stage. In this stage light energy is absorbed by chlorophyll and converted into chemical energy, and water is split to produce hydrogen. The unwanted oxygen from the water is released. The second stage is the light-independent stage. In this stage the chemical energy and the hydrogen from the first stage are used to convert carbon dioxide into carbohydrates, such as glucose. More details can be found on this site by searching for photosynthesis.
Much faster. For example, there are enzymes that help exchange O2 (oxygen molecules) and CO2 (carbon-dioxide molecules). In your body, this happens in an instant, but without enzymes this process would take minutes. So without enzymes you would suffocate.
When carbon dioxide and chlorine mix, they do not react with each other. Both are stable molecules and they remain separate in the mixture.