Home
Class 11
CHEMISTRY
200 cm^(2) of a ga at 800 mm pressure is...

`200 cm^(2)` of a ga at 800 mm pressure is allowed to expand till the pressure is 0.9 atm keeping ath temperature constant. Calculate the volume of the gas.

Text Solution

AI Generated Solution

To solve the problem step by step, we will use Boyle's Law, which states that for a given mass of gas at constant temperature, the product of pressure and volume is constant. This can be mathematically expressed as: \[ P_1 V_1 = P_2 V_2 \] Where: - \( P_1 \) = initial pressure - \( V_1 \) = initial volume - \( P_2 \) = final pressure ...
Promotional Banner

Topper's Solved these Questions

  • STATES OF MATTER

    CENGAGE CHEMISTRY ENGLISH|Exercise Ex 5.2|16 Videos
  • STATES OF MATTER

    CENGAGE CHEMISTRY ENGLISH|Exercise Ex 5.3|16 Videos
  • STATES OF MATTER

    CENGAGE CHEMISTRY ENGLISH|Exercise Archives (Subjective)|34 Videos
  • SOME BASIC CONCEPTS AND MOLE CONCEPT

    CENGAGE CHEMISTRY ENGLISH|Exercise Archives Subjective|11 Videos
  • STOICHIOMETRY

    CENGAGE CHEMISTRY ENGLISH|Exercise Archives Subjective|33 Videos

Similar Questions

Explore conceptually related problems

Volume of certain amount of a gas at 25^@C 100 cm Hg pressure is 80 mL. The gas is expanded to 160 mL keeping the temperature constant. Calculate the pressure of the ended gas.

Volume of certain amount of a gas at 25^@C and 100 cm Hg pressure is 80 mL. The gas is expanded to 160 mL keeping the temperature constant. Calculate the pressure of the expanded gas.

The volume of a certain amount of a gas at 25^@C and at 100 cm pressure is 80 mL. The gas is expanded to 140.5 mL keeping temperature constant. Calculate the pressure of the expanded gas.

300 L of ammonia gas at 20^(@)C and 20 atm pressure is allowed to expand in a space of 600 L capacity and to a pressure of 1 atm. Calculate the drop in temperature.

30 litre of ammonia gas at 30^@C and 40 atm pressure is allowed to expand in a space of 40 litre capacity and pressure becomes 20 atm. Calculate the drop in temperature.

If a gas is allow to expand at constant temperature,

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 vessel of volume 8.0xx10^(-3) m^(3) contains an ideal gas at 300K and 200kPa. The gas is allowed to leak till the pressure falls to 125kPa. Calculate the amount of the gas (in moles) leaked assuming that the temperature remains constant.

Volume occupied by gas under pressure of 740 mm of Hg is 500 "cm"^3 . If the volume will be reduced by 25 percent keeping the temperature constants, calculate the pressure of gas.

7L of gas is enclosed in a vessel at a pressure of 760 mm Hg. If temperature remain constant , calculate pressure when volume changes to 9 L .