Home
Class 12
CHEMISTRY
Calculate the work performed when 2 mole...

Calculate the work performed when `2` moles of hydrogen expand isothermally and reversibly at `25^(@)C` from `15` to `50` litres. (in cal)

Text Solution

AI Generated Solution

To calculate the work performed when 2 moles of hydrogen expand isothermally and reversibly from 15 to 50 liters at 25°C, we will use the formula for work done during isothermal reversible expansion: \[ W = -2.303 \, nRT \, \log \left( \frac{V_2}{V_1} \right) \] ### Step-by-Step Solution: **Step 1: Identify the given values.** - Number of moles, \( n = 2 \) moles ...
Promotional Banner

Topper's Solved these Questions

  • THERMODYNAMICS

    RESONANCE ENGLISH|Exercise MISCELLANEOUS SOLVED EXAMPLES|18 Videos
  • THERMODYNAMICS

    RESONANCE ENGLISH|Exercise A-1|1 Videos
  • TEST SERIES

    RESONANCE ENGLISH|Exercise CHEMISTRY|50 Videos

Similar Questions

Explore conceptually related problems

Calculate the maximum work obtained when 0.75 mol of an ideal gas expands isothermally and reversible at 27^(@)C from 10 L to 20 L Also calculate value of q and Delta U accompanying the process.

One mole of an ideal gas is heated at constant pressure from 0^(@)C to 100^(@)C . a. Calculate the work done. b. If the gas were expanded isothermally and reversibly at 0^(@)C from 1 atm to some othe pressure P , what must be the final pressure if the maixmum work is equal to the work in (a) ?

Calculate the work done (in joules) when 0.2 mole of an ideal gas at 300 K expands isothermally and reversible from an initial volume of 2.5 litres to the final volume of 25 litres.

Calculate the work done in calories when 5 moles of an ideal gas are compressed isothermally and reversibly from a pressure of 1.5 atm to 15 atm at 27^@C .

2 moles of ideal gas is expanded isothermally & reversibly from 1 litre to 10 litre. Find the enthalpy changes in KJ mol^(-1) .

Calculate the entropy change when 2 mol of an idela gas expand isothermally and reversibly from an initial volume of 2 dm^(3) to 20 dm^(3) at 300 K .

Two moles of an ideal gas expanded isothermally and reversibly from 1L to 10L at 300K . What is the enthalpy change?

When two moles of hydrogen expands isothermally against a constant pressure of 1 atm , at 25^@C from 15 L to 50 L , the work done (in litre atm) will be

What is the entropy change when 1 mole oxygen gas expands isothermally and reversibly from an initial volume of 10 L to 100 L at 300 K ?

If 1 mole of an ideal gas expands isothermally at 37^(@)C from 15 litres to 25 litres, the maximum work obtained is :

RESONANCE ENGLISH-THERMODYNAMICS-exercise-3 part-III Advanced level Solutions (STAGE-II)
  1. Calculate the work performed when 2 moles of hydrogen expand isotherma...

    Text Solution

    |

  2. Greenhouse gas CO(2) can be converted to CO(g) by the following reacti...

    Text Solution

    |

  3. Greenhouse gas CO(2) can be converted to CO(g) by the following reacti...

    Text Solution

    |

  4. Greenhouse gas CO(2) can be converted to CO(g) by the following reacti...

    Text Solution

    |

  5. Greenhouse gas CO(2) can be converted to CO(g) by the following reacti...

    Text Solution

    |

  6. Greenhouse gas CO(2) can be converted to CO(g) by the following reacti...

    Text Solution

    |

  7. Carbon monoxide emitted by automobiles is an environmental hazard . A ...

    Text Solution

    |

  8. Photosysthesis si a bio process by which plants make energy rich molec...

    Text Solution

    |

  9. Photosysthesis is a bio process by which plants make energy rich mole...

    Text Solution

    |

  10. Photosysthesis si a bio process by which plants make energy rich molec...

    Text Solution

    |

  11. Photosysthesis is a bio process by which plants make energy rich molec...

    Text Solution

    |

  12. Photosynthesis is a bio process by which plants make energy rich molec...

    Text Solution

    |

  13. Photosysthesis si a bio process by which plants make energy rich molec...

    Text Solution

    |

  14. Photosysthesis si a bio process by which plants make energy rich molec...

    Text Solution

    |

  15. Photosysthesis si a bio process by which plants make energy rich molec...

    Text Solution

    |

  16. Photosysthesis si a bio process by which plants make energy rich molec...

    Text Solution

    |

  17. The rapid depletion of fossil fuels has inspired extensive research ...

    Text Solution

    |

  18. The rapid depletion of fossil fuels has inspired extensive research ...

    Text Solution

    |

  19. The rapid depletion of fossil fuels has inspired extensive research ...

    Text Solution

    |

  20. The rapid depletion of fossil fuels has inspired extensive research ...

    Text Solution

    |

  21. One method to produce hydrogen on an industrial on an industrial scale...

    Text Solution

    |