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The second law of thermodynamics: Spontaneity of processes, Delta S of the universe and Delta G of the system as criteria for spontaneity Revision for JEE

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  1. 1.Core idea: The second law of thermodynamics: Spontaneity of processes, Delta S of the universe and Delta G of the system as criteria for spontaneity
  2. 2.Relates to other subtopics in Chemical Thermodynamics
  3. 3.First law, enthalpy, Hess's law
  4. 4.Entropy and Gibbs energy
  5. 5.Master The second law of thermodynamics: Spontaneity of processes, Delta S of the universe and Delta G of the system as criteria for spontaneity definitions and standard results
  6. 6.Solve 20 timed MCQs for The second law of thermodynamics: Spontaneity of processes, Delta S of the universe and Delta G of the system as criteria for spontaneity

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Q1ChemistryUnit 4: Chemical Thermodynamics
Assertion The gas is heated, if its temperature is less than its inversion temperature in Joule-Thomson effect. Reason Heating effect in gas is noticed during Joule-Thomson effect when T>Ti\boldsymbol{T}>\boldsymbol{T}_{i}
Q2ChemistryUnit 4: Chemical Thermodynamics
Which of the following does not result in an increase in entropy?
Q3ChemistryUnit 4: Chemical Thermodynamics
All reactions involving chemical decomposition:
Q4ChemistryUnit 4: Chemical Thermodynamics
For a given reaction, H2O(l)\boldsymbol{H}_{2} \boldsymbol{O}(l) \rightleftharpoons H2O(s)at0CH_{2} O(s) a t 0^{\circ} C and 1 bar, which of the following is true?
Q5ChemistryUnit 4: Chemical Thermodynamics
Assertion Adsorption is exothermic and spontaneous inspite of the fact that adsorption is accompained with decrease in entropy. Reason The factor TΔST \Delta S is lesser than ΔH\Delta H
Q6ChemistryUnit 4: Chemical Thermodynamics
Fill in the blanks by putting appropriate choices.During adsorption there is _{-}- -in enthalpy and in the entropy of a system but adsorption is a spontaneous process and thus AG must be \quad Rate of physisorption with increase in pressure.
Q7ChemistryUnit 4: Chemical Thermodynamics
For the reaction, X2O4(l)\boldsymbol{X}_{2} \boldsymbol{O}_{4}(l) \longrightarrow 2XO2(g)\mathbf{2} \boldsymbol{X} \boldsymbol{O}_{2}(\boldsymbol{g}) ΔU=2.1kcal,ΔS=20calK1at\Delta U=2.1 k c a l, \Delta S=20 \operatorname{cal} K^{-1} \mathrm{at} 300K300 \mathrm{K} Hence ,ΔG, \Delta G is
Q8ChemistryUnit 4: Chemical Thermodynamics
For the reaction at 25C,X2O4(l)25^{\circ} C, X_{2} O_{4(l)} \longrightarrow 2XO2(g)\mathbf{2} \boldsymbol{X} \boldsymbol{O}_{\mathbf{2}(\boldsymbol{g})} ΔH=2.1kcal\Delta H=2.1 k c a l and ΔS=20calK1\Delta S=20 c a l \quad K^{-1} The reaction would be:

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