II.For each of the following reactions, indicate whether you would expect the entropy change of each of these systems will increase or decrease or it is in its equilibrium state. Write A if it will increase, B for decrease and C for equilibrium Write your answer on the space provided. 12. N2O4 (g) 2NO2 (g) 13. CH3OH(1)- CH3OH(g) 14. 2HCI (g)H2 (g) + Ch (g) 15. 4 Al (s) +3 O2 (g)Al2O3 (s) 16. 2KCIO 3 (s) 2KCI(s) + 302 (g) 17. 2H2O2 (aq) 2 H20 (aq)+O2 (g) 18. NaCl (s)+H2O() Na+(aq) +CI (aq) 19. Cooling one mole of ideal gas 20. Expanding a gas into a vacuum
II.For each of the following reactions, indicate whether you would expect the entropy change of each of these systems will increase or decrease or it is in its equilibrium state. Write A if it will increase, B for decrease and C for equilibrium Write your answer on the space provided. 12. N2O4 (g) 2NO2 (g) 13. CH3OH(1)- CH3OH(g) 14. 2HCI (g)H2 (g) + Ch (g) 15. 4 Al (s) +3 O2 (g)Al2O3 (s) 16. 2KCIO 3 (s) 2KCI(s) + 302 (g) 17. 2H2O2 (aq) 2 H20 (aq)+O2 (g) 18. NaCl (s)+H2O() Na+(aq) +CI (aq) 19. Cooling one mole of ideal gas 20. Expanding a gas into a vacuum
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Answer number 12-20 pls. I don't want to waste my money here.

Transcribed Image Text:II.For each of the following reactions, indicate whether you would
expect the entropy change of each of these systems will increase
or decrease or it is in its equilibrium state. Write A if it will
increase, B for decrease and C for equilibrium Write your answer
on the space provided.
12. N2O4 (g) 2NO2 (g)
13. CH3OH(1) CH3OH(g)
14. 2HCI (g)H2 (g) + Ch (g)
15. 4 Al (s) +3 O2 (g) → Al2O3 (s)
16. 2KCIO 3 (s) 2KCI(s) + 302 (g)
17. 2H2O2 (aq) 2 H20 (aq)+O2 (g)
18. NaCl (s)+H2O() Na+(aq) +CI (aq)
19. Cooling one mole of ideal gas
20. Expanding a gas into a vacuum
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