55. Solution to Chemistry Problem
📂 Chemistry
👤 Derkach
Product Description
1. According to Hess's law and using tabular data, the heat of reaction at p = const and T = 298 K (ΔH298).
2. The magnitude of the heat of reaction at the same temperature and at V = const (ΔU298).
3. According to the Kirchhoff equation, the heat of reaction at constant pressure and a given temperature
4. Change in the entropy of the system at T = 298
5. Change in the enthalpy of the system at a given temperature.
6. Change in the Gibbs energy at T = 298 K
7. Change in the Helmholtz energy at T = 298 K
8. According to the Temkin-Schwartzman equation, change in the Gibbs energy at a given temperature.
9. The equilibrium constant of the reaction and draw a conclusion about the completeness of the process.
10. According to the reaction isotherm equation, change in the Gibbs energy under given conditions and draw a conclusion about the direction of the process.
The atmosphere consists only of gases participating in the reaction. The total pressure is 1 atm. If there is one reacting gas, the rest is Ar.
12 MnO+CO= Mn + CO2 1000 % CO=50
2. The magnitude of the heat of reaction at the same temperature and at V = const (ΔU298).
3. According to the Kirchhoff equation, the heat of reaction at constant pressure and a given temperature
4. Change in the entropy of the system at T = 298
5. Change in the enthalpy of the system at a given temperature.
6. Change in the Gibbs energy at T = 298 K
7. Change in the Helmholtz energy at T = 298 K
8. According to the Temkin-Schwartzman equation, change in the Gibbs energy at a given temperature.
9. The equilibrium constant of the reaction and draw a conclusion about the completeness of the process.
10. According to the reaction isotherm equation, change in the Gibbs energy under given conditions and draw a conclusion about the direction of the process.
The atmosphere consists only of gases participating in the reaction. The total pressure is 1 atm. If there is one reacting gas, the rest is Ar.
12 MnO+CO= Mn + CO2 1000 % CO=50
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