The reactions in the table are all zero order and follow the same general reaction process of A→ products. Rate constant, & (M-s-¹) Half-life, 1/2 (s) 7.11 Reaction 1 0.0191 Reaction 2 ? 0.0591 Reaction 3 3.71 ? Reaction 4 4.91 0.0971 Reaction 5 7.11 ? Calculate the missing values for half-life (1/2), rate constant (k), and initial concentration. [Alo reaction 1 initial concentration. [A]o: reaction 3 rate constant, k: reaction 5 rate constant, k: M M-s M.s Initial concentration, [Alo (M) ? 0.551 0.471 ? 0.111 reaction 2 half-life, 12: reaction 4 initial concentration. [Alo: M

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The reactions in the table are all zero order and follow the same general reaction process of A→ products.
Rate constant, & (M-s-¹)
Half-life, 1/2 (S)
7.11
0.0191
?
0.0591
?
3.71
4.91
0.0971
7.11
?
Reaction 1
Reaction 2
Reaction 3
Reaction 4
Reaction 5
Calculate the missing values for half-life (12), rate constant (k), and initial concentration. [Alo.
reaction 1 initial concentration. [A]o:
reaction 3 rate constant, k:
reaction 5 rate constant, k:
M
Initial concentration, [Alo (M)
?
0.551
0.471
?
0.111
M-s
reaction 2 half-life, [in:
M-S¹ reaction 4 initial concentration, [A]o:
M
Transcribed Image Text:The reactions in the table are all zero order and follow the same general reaction process of A→ products. Rate constant, & (M-s-¹) Half-life, 1/2 (S) 7.11 0.0191 ? 0.0591 ? 3.71 4.91 0.0971 7.11 ? Reaction 1 Reaction 2 Reaction 3 Reaction 4 Reaction 5 Calculate the missing values for half-life (12), rate constant (k), and initial concentration. [Alo. reaction 1 initial concentration. [A]o: reaction 3 rate constant, k: reaction 5 rate constant, k: M Initial concentration, [Alo (M) ? 0.551 0.471 ? 0.111 M-s reaction 2 half-life, [in: M-S¹ reaction 4 initial concentration, [A]o: M
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