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Establish a relationship between DeltaH ...

Establish a relationship between `DeltaH and DeltaU`. Under what conditions is `DeltaH = DeltaU` ?

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The enthalpy change for chemical reaction is denoted as DeltaH^(Theta) and DeltaH^(Theta) = H_(P)^(Theta) - H_(R)^(Theta) . The relation between enthalpy and internal energy is expressed by equation: DeltaH = DeltaU +DeltanRT where DeltaU = change in internal energy Deltan = change in number of moles, R = gas constant. Enthalpy of the system is given as

The enthalpy change for chemical reaction is denoted aas DeltaH^(Theta) and DeltaH^(Theta) = H_(P)^(Theta) - H_(R)^(Theta) . The relation between enthalpy and internal enegry is expressed by equation: DeltaH = DeltaU +DeltanRT where DeltaU = change in internal enegry Deltan = change in number of moles, R = gas constant. For a reaction, 2X(s) +2Y(s) rarr 2C(l) +D(g), DeltaH at 27^(@)C is -28 kcal mol^(-1). DeltaU is ..... kcal mol^(-1)

The enthalpy change for chemical reaction is denoted as DeltaH^(Theta) and DeltaH^(Theta) = H_(P)^(Theta) - H_(R)^(Theta) . The relation between enthalpy and internal enegry is expressed by equation: DeltaH = DeltaU +DeltanRT where DeltaU = change in internal enegry Deltan = change in number of moles, R = gas constant. For the change, C_("diamond") rarr C_("graphite"), DeltaH =- 1.89 kJ , if 6g of diamond and 6g of graphite are seperately burnt to yield CO_(2) the heat liberated in first case is

The enthalpy change for chemical reaction is denoted aas DeltaH^(Theta) and DeltaH^(Theta) = H_(P)^(Theta) - H_(R)^(Theta) . The relation between enthalpy and internal energy is expressed by equation: DeltaH = DeltaU +DeltanRT where DeltaU = change in internal energy Deltan = change in number of moles, R = gas constant. Which of the following equations corresponds to the definition of enthalpy of formation at 298K ?

The enthalpy change for chemical reaction is denoted aas DeltaH^(Theta) and DeltaH^(Theta) = H_(P)^(Theta) - H_(R)^(Theta) . The relation between enthalpy and internal enegry is expressed by equation: DeltaH = DeltaU +DeltanRT where DeltaU = change in internal enegry Deltan = change in number of moles, R = gas constant. Enthalpy of the system is given as

ICSE-CHEMICAL THERMODYNAMICS -ESSAY (LONG ANSWER) TYPE QUESTIONS
  1. State and explain the first law of thermodynamics. Derive its mathemat...

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  2. What is internal energy and internal energy change? What is its signif...

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  3. Establish a relationship between DeltaH and DeltaU. Under what conditi...

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  4. Define enthalpy of reaction.

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  5. Discuss the relationship between DeltaU, DeltaH , qp and w for the di...

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  6. Show that the heat absorbed at constant volume is equal to the increas...

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  7. State and explain the second law of thermodynamics.

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  8. What do you understand by spontaneous and non spontaneous processes ? ...

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  9. What do you understand by the spontaneity of a process ? Discuss the s...

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  10. What is entropy and how is it related to the spontaneity of a process?

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  11. Show that the entropy changes in a reversible isothermal process is ze...

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  12. Define the following and write expressions for calculating each of the...

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  13. Define the following and write expressions for calculating each of the...

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  14. Define the following and write expressions for calculating each of the...

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  15. How would you calculate the entropy change in a chemical reaction ? Ho...

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  16. What is Gibbs free energy ? Derive the relation, DeltaG = DeltaH - T D...

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  17. What is the status of a process when (i) Delta G lt 0 (ii) DeltaG = 0 ...

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  18. Discuss the effect of temperature on the spontaneity of a process when...

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  19. Discuss the effect of temperature on the spontaneity of a process when...

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  20. State the third law of thermodynamics.

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