Home
Class 11
CHEMISTRY
Given C(("graphite"))+O(2)(g)toCO(2)(g),...

Given `C_(("graphite"))+O_(2)(g)toCO_(2)(g),`
`Delta_(r)H^(0)=-393.5kJ" "mol^(-1)`
`H_(2)(g)=+(1)/(2)O_(2)(g)toH_(2)O(1),`
`Delta_(r)H^(0)=-285.8" kJ "mol^(-1)`
`CO_(2)(g)+2H_(2)O(1)toCH_(4)(g)+2O_(2)(g)`,
`Delta_(r)H^(0)=+890.3kJ" "mol^(-1)`
Based on the above thermochemical equations, the value of `Delta_(r)H^(0)` at at 298 K for the reaction
`C_(("graphite"))+2H_(2)(g)toCH_(4)(g)` will be:

A

` -74.8 kJ mol^(-1)`

B

`-144.0 kJ mol^(-1)`

C

`+74.8 kJ mol^(-1)`

D

`+ 144.0 kJ mol^(-1)`

Text Solution

Verified by Experts

The correct Answer is:
A

` -74.8 kJ mol^(-1)`
Promotional Banner

Topper's Solved these Questions

  • CHEMICAL THERMODYNAMICS

    ICSE|Exercise TRUE OR FALSE. TYPE QUESTIONS|24 Videos
  • CHEMICAL THERMODYNAMICS

    ICSE|Exercise FILL IN THE BLANKS. TYPE QUESTIONS|20 Videos
  • CHEMICAL THERMODYNAMICS

    ICSE|Exercise ESSAY (LONG ANSWER) TYPE QUESTIONS|32 Videos
  • CHEMICAL BONDING AND MOLECULAR STRUCTURE

    ICSE|Exercise NCERT TEXT-BOOK EXERCISES ( WITH HINTS AND SOLUTIONS)|47 Videos
  • CLASSIFICATION OF ELEMENTS AND PERIODICITY IN PROPERTIES

    ICSE|Exercise NCERT TEXT-BOOK. EXERCISE (With Hints and Solutions)|63 Videos

Similar Questions

Explore conceptually related problems

Given : (i) C("graphite") +O_2(g)toCO_2(g)DeltarH^(Theta)="x kj "mol^(-1) (ii) C("graphite") +(1)/(2)O_2(g)toCO(g),DeltarH^(Theta)="y kj "mol^(-1) (iii) CO(g) +(1)/(2)O_2(g) toCO_2(g),DeltarH^(theta)="zkj" mol^(-1) Based on the above thermochemical equations, find out which one of the following algebraic relationships is correct ?

Calculate enthalpy of formation of methane (CH_4) from the following data : (i) C(s) + O_(2)(g) to CO_(2) (g) , Delta_rH^(@) = -393.5 KJ mol^(-1) (ii) H_2(g) + 1/2 O_(2)(g) to H_(2)O(l) , Deta_r H^(@) = -285.5 kJ mol^(-1) (iii) CH_(4)(g) + 2O_(2)(g) to CO_(2)(g) + 2H_(2)O(l), Delta_(r)H^(@) = -890.3 kJ mol^(-1) .

Comment on the thermodynamic stability of NO(g) , given 1/2N_(2)(g)+1/2O_(2)(g)rarr NO(g), Delta_(r)H^(Θ)=90 kJ mol^(-1) NO(g)+1/2O_(2)(g) rarr NO_(2)(g), Delta_(r)H^(Θ)=-74 kJ mol^(-1)

Given that : C(s)+O_(2)(g)to CO_(2)(g) , Delta H = -394 kJ and 2H_(2)(g)+O_(2)(g)to 2H_(2)O(l) , Delta H =- 568 kJ and C_(2)H_(5)OH(l)+3O_(2)(g)to 2CO_(2)(g)+3H_(2)O(l) , Delta H =- 1058 kJ/mole. Using the data, the heat of formation of ethanol is

C(s)+(1)/(2)O_(2)(g)to CO(g), Delta H =- 42 kJ/mole CO(g)+(1)/(2)O_(2)(g)to CO_(2)(g) , Delta H =-24 kJ/mole The heat of formation of CO_(2) is

Given that: 2C(s)+O_(2)(g)to2CO_(2)(g)" "(DeltaH=-787kJ) . . . (i) H_(2)(g)+1//2O_(2)(g)toH_(2)O(l)" "(DeltaH=-286kJ) . . . (ii) C_(2)H_(2)+2(1)/(2)O_(2)(g)to2CO_(2)(g)+H_(2)O(l)" "(DeltaH=-1310kJ) . . .(iii) The heat of formation of acetylene is:

The enthalpy of vaporisation of liquid water using the data H_(2)(g)+(1)/(2)O_(2)(g)toH_(2)O(l) , DeltaH=-285.77 kJ//mol H_(2)(g)+(1)/(2)O_(2)(g)toH_(2)O(g) , DeltaH=-241.84 kJ//mol

H_(2)(g) +(1)/(2)O_(2)(g) rarr H_(2)O(g) DeltaH =- 242 kJ mol^(-1) Bond energy of H_(2) and O_(2) is 436 and 500 kJ mol^(-1) , respectively. What is bond energy of O-H bond?

{:(C+O_(2)(g)rarrCO_(2)" ......(i),",DeltaH=-"393 kJ mol"^(-1)),(H_(2)+1//2O_(2)rarr H_(2)O", .....(ii)",DeltaH=-"287.3 kJ mol"^(-1)),(2CO_(2)+3H_(2)O rarr C_(2)H_(5)OH+2O_(2)" .....(iii)",DeltaH="1366.8 kJ mol"^(-1)):} Find the standard enthalpy of formation of C_(2)H_(5)OH(l)

Calculate the heat of formation of methane in kcalmol^(-1) using the following thermo chemical reactions C(s)+O_(2)toCO_(2)(g) , DeltaH=-94.2 kcal mol^(-1) H_(2)(g)+1/2O_(2)(g)toH_(2)O(l) , DeltaH=-68.3 kcal mol^(-1) CH_(4)(g)+2O_(2)(g)toCO_(2)(g)+2H_(2)O(l) , DeltaH=-210.8 kcal mol^(-1)

ICSE-CHEMICAL THERMODYNAMICS -OBJECTIVE (MULTIPLE CHOCE) TYPE QUESTIONS
  1. A piston filled with 0.04 mole of an ideal gas expands reversibly from...

    Text Solution

    |

  2. For complete combustion of ethanol, C(2)H(5)OH(l) + 3O(2)(g) rarr 2CO(...

    Text Solution

    |

  3. A gas is allowed to expand in a well insulated container against a co...

    Text Solution

    |

  4. For a given reaction, DeltaH = 35.5 kJ mol^(-1) and Delta S = 83.6 JK...

    Text Solution

    |

  5. Given C(("graphite"))+O(2)(g)toCO(2)(g), Delta(r)H^(0)=-393.5kJ" "mo...

    Text Solution

    |

  6. DeltaU is equal to

    Text Solution

    |

  7. The bond dissociation energies of X2, Y2 and XY are in the ratio of 1 ...

    Text Solution

    |

  8. The combustion of benzene(/) gives CO2(g) and H2O(l) Given that heat o...

    Text Solution

    |

  9. For the cell reaction 2Fe^(3+)(aq) + 2l^(-1) (aq) to 2Fe^(2+) (aq) +...

    Text Solution

    |

  10. Under isothermal condition, a gas at 300 K expands from 0.1 L to 0.25 ...

    Text Solution

    |

  11. In which case change in entropy is negative?

    Text Solution

    |

  12. For a cell involving one electron E(cell)^(0)=0.59V and 298K, the equi...

    Text Solution

    |

  13. The INCORRECT match in the following is

    Text Solution

    |

  14. During compression of a spring the work done is 10 kJ and 2 kJ escaped...

    Text Solution

    |

  15. Consider the given plot of enthalpy of the following reaction between ...

    Text Solution

    |

  16. The standard Gibbs energy for the given cell reaction in kJ mol^(-1) a...

    Text Solution

    |

  17. Among the following, the set of parameters that represents path functi...

    Text Solution

    |

  18. Which one of the following equations does not correctly represent the ...

    Text Solution

    |

  19. For silver, C(P)(J K^(-1)"mol"^(-1))=23+0.01T. If the temperature (T) ...

    Text Solution

    |

  20. 5 moles of an ideal gas at 100 K are allowed to undergo reversible com...

    Text Solution

    |