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Glyceraldehyde 3-phosphate, also known as triose phosphate or G3P, is an organic compound. It occurs as an intermediate in several central metabolic pathways of all organisms.

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How many molecules of G3P are required to produce one molecule of glucose?

To produce one molecule of glucose, six molecules of G3P are required.


How many turns of the Calvin Cycle are necessary for one G3P molecule to exit?

One G3P molecule exits the Calvin Cycle after three turns.


How many carbon atoms are in G3P?

There are three carbon atoms in each molecule of glyceraldehyde-3-phosphate (G3P).


How many turns of the Calvin Cycle are required to produce a G3P molecule that can be utilized in the synthesis of glucose?

Three turns of the Calvin Cycle are required to produce a G3P molecule that can be utilized in the synthesis of glucose.


How many molecules of G3P made during the Calvin cycle are required to produce one molecule of glucose?

Six molecules of G3P are required to produce one molecule of glucose during the Calvin cycle.


How does the molecule G3P play a role in the production of glucose in cellular metabolism?

G3P, or glyceraldehyde-3-phosphate, is a key molecule in the process of glycolysis, which is the first step in cellular metabolism. During glycolysis, G3P is produced from glucose and serves as an intermediate molecule that can be further converted into pyruvate. Pyruvate can then be used to produce glucose through a series of reactions in a process called gluconeogenesis. Therefore, G3P plays a crucial role in the production of glucose in cellular metabolism by serving as a precursor molecule for the synthesis of glucose.


How many molecules of G3P made during the Calvin cycle can be used to make one molecule of a larger organic compound?

During the Calvin cycle, 3 molecules of G3P are needed to make one molecule of a larger organic compound.


During the Calvin cycle, how many G3P molecules are required to regenerate RuBP?

During the Calvin cycle, three molecules of G3P are required to regenerate one molecule of RuBP.


How does g3p get 6 oxygen?

During the Calvin cycle of photosynthesis, three molecules of CO2 are used to produce one molecule of glyceraldehyde-3-phosphate (G3P) with three carbons. Since CO2 molecules contain one carbon and two oxygen atoms each, a total of six oxygen atoms are added to the G3P molecule during this process.


How many G3P are needed to make one glucose?

Three molecules of glyceraldehyde-3-phosphate (G3P) are needed to synthesize one molecule of glucose in the Calvin cycle of photosynthesis.


What molecules are required for the reduction of 3-phosphoglycerate (3PG) to glyceraldehyde-3-phosphate (G3P)?

The reduction of 3-phosphoglycerate (3PG) to glyceraldehyde-3-phosphate (G3P) requires the molecule NADPH.


How many g3p to make1 molecule of glucose?

Three molecules of glyceraldehyde-3-phosphate (G3P) are needed to produce one molecule of glucose through the gluconeogenesis pathway in the liver.