हिंदी

Solve the following. Calculate the pressure in atm of 1.0 mole of helium in a 2.0 dm3 container at 20.0°C.

Advertisements
Advertisements

प्रश्न

Solve the following.

Calculate the pressure in atm of 1.0 mole of helium in a 2.0 dm3 container at 20.0°C.

संख्यात्मक
Advertisements

उत्तर

Given:
n = number of moles = 1.0 mol,
V = volume = 2.0 dm3
T = Temperature = 20.0°C = 20.0 + 273.15 K = 293.15 K
R = 0.0821 L atm K–1 mol–1

To find: Pressure (P)

Formula: PV = nRT

Calculation:

According to ideal gas equation,

PV = nRT

∴ P = `"nRT"/"V"`

∴ P = `(1.0xx0.0821xx293.15)/2.0`

∴ P = 12.03 atm

The pressure of the given helium gas is 12.03 atm.

shaalaa.com
  क्या इस प्रश्न या उत्तर में कोई त्रुटि है?
अध्याय 10: States of Matter - Exercises [पृष्ठ १५९]

APPEARS IN

बालभारती Chemistry [English] Standard 11 Maharashtra State Board
अध्याय 10 States of Matter
Exercises | Q 5. (J) | पृष्ठ १५९

संबंधित प्रश्न

Answer in one sentence.

The pressure that each individual gas would exert if it were alone in the container, what do we call it as?


Answer in one sentence.

When a gas is heated the particles move more quickly. What is the change in the volume of a heated gas if the pressure is kept constant?


Solve the following.

At 25°C and 760 mm of Hg pressure, a gas occupies 600 mL volume. What will be its pressure at the height where the temperature is 10°C and the volume of the gas 640 mL?


Solve the following.

A neon-dioxygen mixture contains 70.6 g dioxygen and 167.5g neon. If the pressure of the mixture of the gases in the cylinder is 25 bar. What is the partial pressure of dioxygen and neon in the mixture?


At identical temperature and pressure, the rate of diffusion of hydrogen gas is `3sqrt3` times that of a hydrocarbon having molecular formula CnH2n–2. What is the value of n?


Equal moles of hydrogen and oxygen gases are placed in a container, with a pin-hole through which both can escape what fraction of oxygen escapes in the time required for one-half of the hydrogen to escape.


What is the density of N2 gas at 227°C and 5.00 atm pressure? (R = 0.082 L atm K–1 mol–1)


Give a suitable explanation for the following facts about gases.

Gases don’t settle at the bottom of a container


Suggest why there is no hydrogen (H2) in our atmosphere. Why does the moon have no atmosphere?


Would it be easier to drink water with a straw on the top of Mount Everest?


A combustible gas is stored in a metal tank at a pressure of 2.98 atm at 25°C. The tank can withstand a maximum pressure of 12 atm after which it will explode. The building in which the tank has been stored catches fire. Now predict whether the tank will blow up first or start melting? (Melting point of the metal = 1100 K).


At constant temperature, a quantity of an ideal gas occupies 50 mL at 500 mmHg pressure. At what pressure, the volume will be 100 mL?


A cold drink bottle contains 200 mL liquid, in which CO2 is 0.1 molar. Considering CO2 as an ideal gas the volume of the dissolved CO2 at S.T.P is ______.


For an ideal gas, at constant temperature and pressure, the volume is ____________.


What is the density of water vapour at boiling point of water?


If two moles of an ideal gas at 546 K occupy a volume of 44.8 L. What is the pressure of ideal gas at 546 K? (R = 0.0821 L atm mol-1 K-1)


A box contains 0.90 g of liquid water in equilibrium with water vapour at 27°C. The equilibrium vapour pressure of water at 27°C is 32.0 Torr. When the volume of the box is increased, some of the liquid water evaporates to maintain the equilibrium pressure. If the liquid water evaporates, then the volume of the box must be - litre (nearest integer) R = 0.0821 L atm K-1 mol-1.
(Ignore the volume of the liquid water and assume water vapours behave as an ideal gas)


Which of the following graphs is not correct for ideal gas?


A jar contains a gas and a few drops of water at T K. The pressure in the jar is 830 mm of Hg. The temperature of the jar is reduced by 1%. The vapour pressure of water at two temperatures are 30 and 25 mm of Hg. The new pressure in the jar is ______ mm of Hg.


An evacuated glass vessel weighs 40 g when empty, 135 g when filled with a liquid of density 0.95 g mL−1 and 40.5 g when filled with an ideal gas at 0.82 atm at 250 K. The molar mass of the gas in g mol−1 is ______.

(Given: R = 0.082 L atm K−1 mol−1)


A gas is heated from 273 K to 373 K at 1 atm pressure. If the initial volume of the gas is 10 L, its final volume would be ______.


Gas equation, pV = nRT is obeyed by a gas in ______.


The graph of volume (V) versus absolute temperature (T) at constant pressure is ______.


The ideal gas equation for n moles of gas is ______.


According to Boyle's Law, at constant temperature, the pressure of a gas is ______.


A tyre of a vehicle is filled with air having pressure 270 kPa at 27°C. The air pressure in the tyre when the temperature increases to 37°C is ______.


An oxygen cylinder of volume 30 litres has 18.20 moles of oxygen. After some oxygen is withdrawn from the cylinder, its gauge pressure drops to 11 atmospheric pressure at temperature 27°C. The mass of the oxygen withdrawn from the cylinder is nearly equal to:

[Given: R = `100/12`Jmol−1 K−1,and molecular mass of 12 O2 = 32, 1 atm pressure = 1.01 × 105 N/m]


Share
Notifications

Englishहिंदीमराठी


      Forgot password?
Use app×