
сколько молекул атф будет синтезироваться в клетках эукариот при полном окислении фрагмента
молекулы гликогена,содержащего 100 остатков глюкозы?

Ответы на вопрос




Calculating ATP Molecules Synthesized from Glycogen
To calculate the number of ATP molecules synthesized from the complete oxidation of a fragment of a glycogen molecule containing 100 glucose residues, we can use the following information:
- Each glucose molecule yields a net of 36 ATP molecules during complete oxidation. - Glycogen is a polymer of glucose molecules.
Calculation
The number of ATP molecules synthesized can be calculated using the following steps:
1. Determine the number of glucose molecules in the glycogen fragment. 2. Calculate the total ATP molecules synthesized from the complete oxidation of the glucose molecules.
Answer
Step 1: Determine the Number of Glucose Molecules in the Glycogen Fragment
The number of glucose molecules in a glycogen fragment containing 100 glucose residues can be calculated by dividing the total number of glucose residues by the degree of polymerization of glycogen.
The degree of polymerization of glycogen is 10, meaning that each glycogen molecule contains 10 glucose residues.
Number of glucose molecules = Total number of glucose residues / Degree of polymerization
Number of glucose molecules = 100 / 10 = 10 glucose molecules
Step 2: Calculate the Total ATP Molecules Synthesized
Each glucose molecule yields a net of 36 ATP molecules during complete oxidation.
Total ATP molecules synthesized = Number of glucose molecules * ATP molecules per glucose molecule
Total ATP molecules synthesized = 10 * 36 = 360 ATP molecules
Therefore, 360 ATP molecules will be synthesized in eukaryotic cells from the complete oxidation of a fragment of a glycogen molecule containing 100 glucose residues.


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