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Under normal physiological condition every 100 ml of oxygenated blood can deliver ____ml of `O_(2)`

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To solve the question, "Under normal physiological conditions, every 100 ml of oxygenated blood can deliver ____ ml of O₂," we can follow these steps: ### Step-by-Step Solution: 1. **Understand the Composition of Oxygenated Blood**: - Oxygenated blood carries oxygen to tissues in two main forms: - Dissolved in plasma (about 2-3%) - Bound to hemoglobin as oxyhemoglobin (about 97%) 2. **Identify the Amount of Oxygen Delivered**: - Under normal physiological conditions, it is known that approximately 5 ml of oxygen can be delivered by 100 ml of oxygenated blood. 3. **Conclusion**: - Therefore, the answer to the question is that every 100 ml of oxygenated blood can deliver **5 ml of O₂**. ### Final Answer: Every 100 ml of oxygenated blood can deliver **5 ml of O₂**. ---
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Every 100 mL of oxygenated blood delivers approximately

Every 100 mL of deoxygenated blood delivers approximately

Assertion :- In the tissue high P_(CO_(2)) , low P_(O_(2)) , higher H^(o+) concentration conditions are favourable for dissociation of oxygen from the oxyhaemoglobin. Reason :- Every 100ml of oxygenated blood can deliver around 5ml of O_(2) to the tissues under normal physiological conditions.

under normal physiological conditions 100 ml of venous blood returns how much amount of O_2 approximately?

Assertion : A sigmoid curve is obtained when percentage saturation of haemoglobin with O_(2) is plotted against the PO_(2) . Reason : Every 100 mL of oxygenated blood can deliver around 5mL of O_(2) to the tissues under normal physiological conditions.

Read the following statements about respiratory system of humans : I. Type II alveoli help in secretion of a chemical surfactant called lecithin , which decreases the surface tension around alveoli. II. The diffusion membrane for exchange of gases is made up of three major cellular layers. III. Binding of oxygen with hemoglobin is primarily related to the partial pressure of O_2 . IV. Every 100 ml of oxygenated blood can deliver around 5 ml CO_2 to the tissues under normal physiological conditions. How many statement is /are correct from the above ?

Assertion : 100 ml of venous blood carries 4 ml of CO2 to the alveoli under normal physiological conditions Reason: About 5 ml of O2 diffuses from arterial blood into the tissue during normal conditions.

What is the amount of O_(2) supplied to tissues through every 100 ml. of oxygenated blood under normal physiological conditions?

How many amount of oxygen deliver to tissue by every 100 ml of oxygenated blood?

Find out the amount of CO_(2) which is delivered by every 100 ml of deoxygenated blood to the alveoli

ALLEN-BREATHING AND EXCHANGE OF GASES-S
  1. Under normal physiological condition every 100 ml of oxygenated blood ...

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  2. What will be the P(O2) and P(CO2) in the atmospheric air compared to t...

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  3. What is the amount of O(2) supplied to tissues through every 100 ml. o...

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  4. Inspiration can occur , when -

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  5. Find out the amount of CO(2) which is delivered by every 100 ml of deo...

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  6. Cellular barriers between alveolar air and capillary blood are -

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  7. Which statements are correct ? (A) During inspiration intra pulmonary...

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  8. If in a person functional residual capacity (FRC) is 2300 ml, residual...

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  9. Match item in column A with those given in column B.

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  10. In the alveoli, dissociation of CO(2) from carbamino haemoglobin occur...

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  11. Find out partial pressure of O(2) and CO(2) in oxygenated blood.

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  12. What is true about regulation of respiration -

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  13. Functional residual capacity is -

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  14. In human beings, CO(2) concentration in the inspired and expired air i...

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  15. Which statement correctly defines Bohr effect ?

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  16. Which of the following statement is wrong ? .

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  17. Which of the following cause increased strength of inspiratory as well...

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  18. Which of the following pulmonary volume can't be measured by spiromete...

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  19. TheP(H) of venous blood is only slightly more acidic than the P(H) of ...

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  20. Which muscle contracts during normal expiration?

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  21. The epithelial tissue present on the inner surface of bronchioles and ...

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