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प्रश्न
Redraw the flowchart with corrections. Explain in brief the process of obtaining energy through oxidation of carbohydrates, lipids and proteins.

How energy is formed from oxidation of carbohydrates, fats and proteins? Correct the diagram given below.

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उत्तर १
Corrected flow-chart:

Process of obtaining the energy:
- Carbohydrates: Carbohydrates such as glucose are broken down into pyruvic acid through glycolysis. Pyruvic acid is then converted into acetyl-Coenzyme A (Acetyl-CoA), which enters the Krebs cycle and is oxidised. The NADH2 and FADH2 produced during this process are oxidised in the electron transport chain, releasing energy as ATP.
- Proteins: Proteins are digested into amino acids. These amino acids are converted into intermediates that enter the Krebs cycle, often through acetyl-CoA. During the Krebs cycle, NADH2 and FADH2 are formed, which are oxidised in the electron transport chain to produce ATP.
- Lipids: Lipids are broken down into fatty acids and glycerol. Fatty acids are converted into acetyl-CoA, which enters the Krebs cycle and is oxidised. The NADH2 and FADH2 produced are then oxidised through the electron transport chain, resulting in the release of energy as ATP.
उत्तर २
- Dietary carbohydrates are digested by enzymes and transformed into glucose. Proteins and lipids are metabolised into amino acids and glycerol, respectively.
- Carbohydrates are oxidised during cellular respiration. Aerobic respiration involves three processes for glucose oxidation: glycolysis, the tricarboxylic acid cycle (Krebs cycle), and the electron transfer chain.
- During glycolysis, one molecule of glucose yields two molecules of pyruvic acid, ATP, NADH2, and water. The process converts pyruvic acid into Acetyl-Coenzyme-A, releasing two molecules of NADH2 and CO2.
- In the TCA cycle, molecules of Acetyl-CoA enter mitochondria and undergo a series of cyclic events. The acetyl portion of Acetyl-CoA is totally oxidised throughout this cyclical phase. This reaction releases chemicals such as CO2, H2O, NADH2, and FADH2.
- In the third step of the ETC reaction, NADH2 and FADH2 from the first two steps are used to produce ATP molecules. Each NADH2 molecule yields 3 ATP molecules, while FADH2 yields 2 ATP molecules.
- When one molecule of glucose is completely oxidised in the presence of oxygen, it produces 38 molecules of ATP, which is how carbohydrates are converted into energy.
- Insufficient carbohydrates in the diet might lead to the use of protein or lipids for energy. Acetyl-CoA is produced by the conversion of fatty acids from lipids and amino acids from proteins. Acetyl-CoA can be oxidised through the TCA cycle to produce energy.

Notes
Student can refer to the provided solution based on their preferred question or marks.
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संबंधित प्रश्न
After complete oxidation of a glucose molecules, ______ number of ATP molecules are formed.
Give scientific reasons.
Cell division is one of the very important properties of cells and living organisms.
Fill in the blank with a suitable word.
During glycolysis ______ molecules of NADH+H+ are formed.
Answer the following question.
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Answer the following question.
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Answer the following question.
Which compound is the terminal electron acceptor in aerobic respiration?
We get __________ energy from lipids.
What is cellular respiration?
Which amino acids are obtained after digestion of proteins?
Explain the use of fatty acids.
Complete the following concept map.

Identify the statement that correctly describes phosphorylation.
Oxidative phosphorylation refers to ______
Identify the cell organelle that is responsible for extracting energy from carbohydrates to form ATP.
Which of the following is TRUE with respect to ATP?
Where does the oxidative phosphorylation occur?
In the mitochondrion, energy is stored in the form of ____________.
What is fatty acid?
