2A. (7 pts) The reaction A→ B follows first-order kinetics with a half-life of 12 hours. If the concentration of A is 0.

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2A. (7 pts) The reaction A→ B follows first-order kinetics with a half-life of 12 hours. If the concentration of A is 0.

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2a 7 Pts The Reaction A B Follows First Order Kinetics With A Half Life Of 12 Hours If The Concentration Of A Is 0 1
2a 7 Pts The Reaction A B Follows First Order Kinetics With A Half Life Of 12 Hours If The Concentration Of A Is 0 1 (9.04 KiB) Viewed 15 times
2a 7 Pts The Reaction A B Follows First Order Kinetics With A Half Life Of 12 Hours If The Concentration Of A Is 0 2
2a 7 Pts The Reaction A B Follows First Order Kinetics With A Half Life Of 12 Hours If The Concentration Of A Is 0 2 (15.18 KiB) Viewed 15 times
2A. (7 pts) The reaction A→ B follows first-order kinetics with a half-life of 12 hours. If the concentration of A is 0.25 M after 42 hours, what is the initial concentration of A? high temperature equal amount of 0.160 mol of H2(g) and 12(g) are initially

5A. (9pt) Given the equilibrium constants at 200°C for the equilibria, 2NH₁ (aq) + 2H₂O()2NH3(aq) + 2H3O*(aq); K= 5.68× 10-¹8 CH3COO(aq) + H₂O'(aq); K₂=2.56x 10-³ CH3COOH(aq) + H₂O(1) determine K. for the following equilibrium. CH₂COOH(aq) + NH3(aq)CH₂COO (aq) + NH₂ (aq)
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