Home
Class 11
CHEMISTRY
For a reaction, CaCO(3(s)) rarr CaO((s...

For a reaction,
`CaCO_(3(s)) rarr CaO_((s))+CO_(2(g))`
`Delta_(f)H^(@)(CaO)=-"631.1 kJ mol"^(-1)`
`Delta_(f)H^(@)(CO_(2))=-"393.5 kJ mol"^(-1) and`
`Delta_(f)H^(@)(CaCO_(3))=-"1206.9 kJ mol"^(-1)`
Which of the following is a correct statement?

A

A large amount of heat is evolved during the decomposition of `CaCO_(3)`.

B

Decomposition of `CaCO_(3)` is an endothermic process and heat is provided for decomposition

C

The amount of heat evolved cannot be calculated from the data provided .

D

`Delta_(f)H^(@)=SigmaDelta_(f)H^(@)" (reactants)"-Sigma Delta_(f)H^(@)" (products)"`

Text Solution

Verified by Experts

The correct Answer is:
B

`Delta_(r)H=Sigma_(f)H_(p)^(@)-SigmaDelta_(f)H_(R)^(@)`
`=[-635.1+(-393.5)]-[-1206.9]=+178.4kJ`
Promotional Banner

Topper's Solved these Questions

  • THERMODYNAMICS

    NCERT FINGERTIPS|Exercise Enthalpies For Different Type Of Reaction|22 Videos
  • THERMODYNAMICS

    NCERT FINGERTIPS|Exercise Spontaneity|30 Videos
  • THERMODYNAMICS

    NCERT FINGERTIPS|Exercise MCQs|2 Videos
  • THE S-BLOCK ELEMENTS

    NCERT FINGERTIPS|Exercise Assertion And Reason|15 Videos

Similar Questions

Explore conceptually related problems

Following data is given for the reaction : CaCO_3 (s) to CaO(s) +CO_2(g) Given that Delta_fH^(@) [CaO(s)]=-635.1 "kJ mol"^(-1) Delta_f H^@[CO_2(g)]=-393.5 "kJ mol"^(-1) Delta_fH^@[CaCO_3(s)]=-1206.9 "kJ mol"^(-1) Predict the effect of temperature on the equilibrium constant of the above reaction.

Given Delta_(i)H^(Theta)(HCN) = 45.2 kJ mol^(-1) and Delta_(i)H^(Theta)(CH_(3)COOH) = 2.1 kJ mol^(-1) . Which one of the following facts is true?

Given Delta_("ioniz")H^(o)(HCN)=45.2 kJ mol^(-1) and Delta_("ioniz")H^(o)(CH_(3)COOH)=2.1 kJ mol^(-1) . Which one of the following facts is ture?

Following data is given for the reaction : CaCO_3(s)hArrCaO(s)+CO_2(g) Delta_(f)H^(Theta)[CaO(s)]=-635.1kJ mol^(-1) Delta_(f)H^(Theta)[Ca_2(s)]=-393.5kJ mol^(-1) Delta_(f)H^(Theta)[CaCO_3(s)]=-1206.9kJ mol^(-1) Predict the effect of temperature on the equilibrium of the above reaction.

Consider the reaction Pb O (s) + CO (g) + CO_(2) (g) , Delta_(r)H^(@) = - 65.69 kJ mol^(-1) . If Delta_(f) H^(@) for CO_(2) and CO (g) are 393.5 kJ mol^(-1) and - 110.5 k J mol^(-1) , respectively, calculate Delta_(f) H^(@) for yellow PbO (s)

For CaCO_(3(s)) iff CaO_((s))+CO_(2(g)) at 977^@ C , Delta H =176 kJ/mol, then Delta U is _______ .

Using Delta_(f)H^(@) and S_(m)^(@) calculate the standard Gibbs energy of formation, Delta_(f)G^(@) for each following : (a) CS_(2)(l) (b) N_(2)H_(4)(l) Delta_(f)H^(@)(CS_(2)) = 89.70 kJ "mol"^(-1), Delta_(r)S^(@)(CS_(2)) = 151.34 J K^(-1) "mol"^(-1) Delta_(f)H^(@)(N_(2)H_(4)) = 50.63 kJ "mol"^(-1) , Delta_(r)S^(@)N_(2)H_(2) = 121.21 J K^(-1) "mol"^(-1) .