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The osmotic pressure pi depends on the m...

The osmotic pressure `pi` depends on the molar concentration of the solution `(pi=CRT)`. If two solutions are of equal solute concentration and, hence, have the same omotic pressure, they are said to be isotonic. If two solutions are of unequal osmotic pressures, the more concentrated solution is said to be hypertonic and the more diluted solution is described as hypotonic.
Osmosis is the major mechanism for transporting water upward in the plants. Answer the following questions:
The glucose solution to be injected into the bloodstream and the blood itself should have the same.

A

molarity

B

vapour pressure

C

osmotic pressure

D

viscosity

Text Solution

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The correct Answer is:
C
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The osomotic pressure pi depends on the molar concentration of the solution (pi=CRT) . If two solutions are of equal solute concentration and, hence, have the same omotic pressure, they are said to be isotonic. If two solutions are of unequal osmotic pressures, the more concentrated solution is said to be hypertonic and the more diluted solution is described as hypotonic. Osmosis is the major mechanism for transporting water upward in the plants. Answer the following questions: Osmotic rise of a solution depends on

The osomotic pressure pi depends on the molar concentration of the solution (pi=CRT) . If two solutions are of equal solute concentration and, hence, have the same omotic pressure, they are said to be isotonic. If two solutions are of unequal osmotic pressures, the more concentrated solution is said to be hypertonic and the more diluted solution is described as hypotonic. Osmosis is the major mechanism for transporting water upward in the plants. Answer the following questions: Isotonic solutions have same

The osomotic pressure pi depends on the molar concentration of the solution (pi=CRT) . If two solutions are of equal solute concentration and, hence, have the same omotic pressure, they are said to be isotonic. If two solutions are of unequal osmotic pressures, the more concentrated solution is said to be hypertonic and the more diluted solution is described as hypotonic. Osmosis is the major mechanism for transporting water upward in the plants. Answer the following questions: A plant cell shrinks when it is kept in:

The osomotic pressure pi depends on the molar concentration of the solution (pi=CRT) . If two solutions are of equal solute concentration and, hence, have the same omotic pressure, they are said to be isotonic. If two solutions are of unequal osmotic pressures, the more concentrated solution is said to be hypertonic and the more diluted solution is described as hypotonic. Osmosis is the major mechanism for transporting water upward in the plants. Answer the following questions: What would be the percent strength of solution of urea that would be isotonic with 4.5% solution of glucose?

The osmotic pressure of a solution depends on

Hypertonic solutions have same osmotic pressure.

The osmotic pressure of the solution having concentration 0.05M

Isotonic solutions have different osmotic pressure.

The osmotic pressure of a solution is

Solutions having the same osmotic pressure are called:

OP TANDON-SOLUTIONS (GENERAL AND COLLIGATIVE PROPERTIES)-Comprehension
  1. The osomotic pressure pi depends on the molar concentration of the sol...

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  2. The osomotic pressure pi depends on the molar concentration of the sol...

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  3. The osmotic pressure pi depends on the molar concentration of the solu...

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  4. The osomotic pressure pi depends on the molar concentration of the sol...

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  5. The osomotic pressure pi depends on the molar concentration of the sol...

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  6. Compartment A and B have the following combinations of solution: {:(...

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  7. Compartment A and B have the following combinations of solution: {:(...

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  8. Compartment A and B have the following combinations of solution: {:(...

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  9. Compartment A and B have the following combinations of solution: {:(...

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  10. Compartment A and B have the following combinations of solution: {:(...

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  11. The boiling point elevation and freezing point depression of solution...

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  12. The boiling point elevation and freezing point depression of solution...

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  13. The boiling point elevation and freezing point depression of solution...

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  14. The boiling point elevation and freezing point depression of solution...

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  15. The boiling point elevation and freezing point depression of solution...

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  16. The solution which boil at constant temperature like a pure liquid and...

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  17. The solution which boil at constant temperature like a pure liquid and...

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  18. The solution which boil at constant temperature like a pure liquid and...

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  19. The solution which boil at constant temperature like a pure liquid and...

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  20. The solution which boil at constant temperature like a pure liquid and...

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