Calculate the average rate of production of H2 between 0 and 37.9 s. Now calculate the rates for PH3 and H₂ between 75.8 and 113.7 s. Draw a graph representing the relative rates of appearance and disappearance of all species in the chemical reaction. disappearance of PH3 and the rate of

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6) Given the reaction and data below:
4 PH3 (9)
Time (s)
0
37.9
75.8
113.7
P4 (g) + 6 H₂(g)
[PH3] (mol.L-¹)
0.555
0.277
0.139
0.0694
a. -7 x 10-3, -1 x 10-2
b. 2 x 10-3, -3 x 10-3
c. Should include all three species, with the concentration of reactants
decreasing, products increasing, and stoichiometry effects.
Transcribed Image Text:6) Given the reaction and data below: 4 PH3 (9) Time (s) 0 37.9 75.8 113.7 P4 (g) + 6 H₂(g) [PH3] (mol.L-¹) 0.555 0.277 0.139 0.0694 a. -7 x 10-3, -1 x 10-2 b. 2 x 10-3, -3 x 10-3 c. Should include all three species, with the concentration of reactants decreasing, products increasing, and stoichiometry effects.
6) Given the reaction and data below:
4 PH3 (9)
Time (s)
0
37.9
75.8
113.7
P4 (g) + 6 H₂ (g)
[PH3] (mol.L-¹)
0.555
0.277
0.139
0.0694
a. Calculate the average rate of disappearance of PH3 and the rate of
production of H2 between 0 and 37.9 s.
b. Now calculate the rates for PH3 and H₂ between 75.8 and 113.7 s.
c. Draw a graph representing the relative rates of appearance and
disappearance of all species in the chemical reaction.
Transcribed Image Text:6) Given the reaction and data below: 4 PH3 (9) Time (s) 0 37.9 75.8 113.7 P4 (g) + 6 H₂ (g) [PH3] (mol.L-¹) 0.555 0.277 0.139 0.0694 a. Calculate the average rate of disappearance of PH3 and the rate of production of H2 between 0 and 37.9 s. b. Now calculate the rates for PH3 and H₂ between 75.8 and 113.7 s. c. Draw a graph representing the relative rates of appearance and disappearance of all species in the chemical reaction.
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