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A gas volume 100 cc is kept in a vessel ...

A gas volume 100 cc is kept in a vessel at pressure `10.4 Pa` maintained at temperature `24^(@)C`. Now, if the pressure is increased to `105Pa`, keeping the temperature constant, then the volume of the gas becomes

A

`10cc`

B

`100cc`

C

`1 cc`

D

`1000 cc`

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AI Generated Solution

To solve the problem, we will use the ideal gas law, specifically the relationship between pressure and volume when temperature is held constant. This relationship is described by Boyle's Law, which states that \( P_1 V_1 = P_2 V_2 \). ### Step-by-Step Solution: 1. **Identify the Given Values:** - Initial volume \( V_1 = 100 \, \text{cc} \) - Initial pressure \( P_1 = 10.4 \, \text{Pa} \) - Final pressure \( P_2 = 105 \, \text{Pa} \) ...
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CENGAGE CHEMISTRY ENGLISH-STATES OF MATTER-Exercises (Single Correct)
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  2. Which of the following expression at constant pressure represents Char...

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  3. A gas volume 100 cc is kept in a vessel at pressure 10.4 Pa maintained...

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  4. A sample of gas occupies 100 mL at 27^(@)C and 740 mm pressure. When i...

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  5. At 25^(@)C and 730 mm pressure, 730 mL of dry oxygen was collected. If...

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  6. The density of a gas at 27^(@)C and 1 atm is d. Pressure remaining con...

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  7. The kinetic theory of gases predicts that total kinetic energy of a ga...

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  13. Which of the following is true about gaseous state?

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  14. Which of the following is not a correct postulate of kinetic theory of...

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  16. According to kinetic theory of gases, for a datomic molecule.

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  17. A vessel is filled with a mixture of oxygen and nitrogen. At what rati...

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  19. When is the deviation more in the behaviour of a gas from the ideal ga...

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  20. An ideal gas obeying the kinetic theory of gases can be liquefied if

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