Molecules

How many ATP molecules are produced after one complete process of aerobic cellular respiration?

How many ATP molecules are produced after one complete process of aerobic cellular respiration?

Because oxygen is required for aerobic respiration, it is linked to hydrogen ions to form water. ETP causes the production of 32 ATPs. A total of 36 ATPs are produced from aerobic respiration for each glucose that enters glycolysis (2 from glycolysis, 2 from citric acid cycle, 32 from ETP).

  1. How many ATP are produced after aerobic cellular respiration?
  2. Does aerobic respiration produce 36 or 38 ATP?
  3. How much ATP is produced after the steps of cellular respiration are complete?
  4. How is 34 ATP produced?
  5. How many ATP is produced in glycolysis?
  6. What are the 3 steps of cellular respiration?
  7. What are the 4 steps of cellular respiration?
  8. How many ATP molecules are produced from the breakdown of fatty acids?
  9. How 36 ATP is produced?
  10. How is 36 ATP produced in respiration?
  11. Why is the total count about 36 or 38?
  12. How many ATP are produced from NADH2?
  13. Does the ETC produce 32 or 34 ATP?
  14. How many molecule's of ATP is are released from one pyruvate molecule?
  15. How many ATP molecules are produced in aerobic respiration How many ATP molecules are produced during fermentation and glycolysis?
  16. How many molecules of ATP are produced?
  17. How is 4 ATP produced in glycolysis?

How many ATP are produced after aerobic cellular respiration?

In aerobic conditions, the process converts one molecule of glucose into two molecules of pyruvate (pyruvic acid), generating energy in the form of two net molecules of ATP. Four molecules of ATP per glucose are actually produced, however, two are consumed as part of the preparatory phase.

Does aerobic respiration produce 36 or 38 ATP?

The theoretical maximum yield of ATP for the oxidation of one molecule of glucose during aerobic respiration is 38. In terms of substrate-level phosphorylation, oxidative phosphorylation, and the component pathways involved, briefly explain how this number is obtained.

How much ATP is produced after the steps of cellular respiration are complete?

Reactants and products of the electron transport chain. ETC, the final stage in cellular respiration produces 32 ATP. The Electron Transport Chain is the final stage of cellular respiration. In this stage, energy being transported by NADH and FADH2 is transferred to ATP.

How is 34 ATP produced?

The Krebs cycle takes place inside the mitochondria. The Krebs cycle produces the CO2 that you breath out. This stage produces most of the energy ( 34 ATP molecules, compared to only 2 ATP for glycolysis and 2 ATP for Krebs cycle). The electron transport chain takes place in the mitochondria.

How many ATP is produced in glycolysis?

During glycolysis, glucose ultimately breaks down into pyruvate and energy; a total of 2 ATP is derived in the process (Glucose + 2 NAD+ + 2 ADP + 2 Pi --> 2 Pyruvate + 2 NADH + 2 H+ + 2 ATP + 2 H2O).

What are the 3 steps of cellular respiration?

Summary: the three stages of Aerobic Respiration

Carbohydrates are broken down using all three stages of respiration (glycolysis, citric acid cycle and the electron transport chain).

What are the 4 steps of cellular respiration?

The stages of cellular respiration include glycolysis, pyruvate oxidation, the citric acid or Krebs cycle, and oxidative phosphorylation.

How many ATP molecules are produced from the breakdown of fatty acids?

Complete oxidation of one palmitate molecule (fatty acid containing 16 carbons) generates 129 ATP molecules.

How 36 ATP is produced?

During respiration, 36 ATP molecules are produced per glucose molecule. 2 molecules of ATP are produced outside mitochondria i.e., during glycolysis and other 34 molecules of ATP are produced inside mitochondria from Krebs cycle.

How is 36 ATP produced in respiration?

Electron transport from the molecules of NADH and FADH2 made from glycolysis, the transformation of pyruvate, and the Krebs cycle creates as many as 32 more ATP molecules. Therefore, a total of up to 36 molecules of ATP can be made from just one molecule of glucose in the process of cellular respiration.

Why is the total count about 36 or 38?

33. Why is the total count about 36 or 38 ATP molecules rather than a specific number? Since phosphorylation and the redox reactions aren't directly coupled to each other, the ratio of the number of NADH molecules to the number of ATP molecules is not a whole number.

How many ATP are produced from NADH2?

1 ATP is synthesized using 4 protons; approximately 3 ATPs are produced from one $NADH_2$ molecule. Hence, the correct answer is option (C), That is one molecule of $NADH_2$​ on oxidation yields 3 ATP molecules.

Does the ETC produce 32 or 34 ATP?

In fact, 34 ATP are produced. The ETC is directly aerobic because it uses oxygen and converts it into water.

How many molecule's of ATP is are released from one pyruvate molecule?

Further, 1 molecule of FADH2 and 4 molecules of NADH produce 2 and 12 (4×3) ATP molecules, respectively by oxidation in the electron transport system (ETS). So in total 15 ATPs are produced from one molecule of pyruvate.

How many ATP molecules are produced in aerobic respiration How many ATP molecules are produced during fermentation and glycolysis?

In aerobic respiration, one molecule of glucose yields 38 ATP molecules, eight produced during glycolysis, six from the link reaction and 24 from the Krebs cycle. The net gain is 36 ATP, as two of the ATP molecules produced from glycolysis are used up in the re-oxidation of the hydrogen carrier molecule NAD.

How many molecules of ATP are produced?

Theoretically, 38 ATP molecules are produced by complete oxidation of one molecule of glucose in aerobic respiration.

How is 4 ATP produced in glycolysis?

Results of Glycolysis

Energy is needed at the start of glycolysis to split the glucose molecule into two pyruvate molecules. ... As glycolysis proceeds, energy is released, and the energy is used to make four molecules of ATP. As a result, there is a net gain of two ATP molecules during glycolysis.

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