The temperature dependence of the rate constant for the gas-phase reaction are as follows 2 N₂Os(g) 4NO2(g) + O2(g) Temperature (°C) K(s¹) 2.0 × 10 7.3 × 10-⁹ 2.7 × 10 9.1 × 10 2.9 × 10-¹ Determine the values of activation energy (Ea) and frequency factor (A) for this reaction 20 30 40 50 60 Activation energy = 1.22 kJ/mol and frequency factor = 2.14E+13 b. Activation energy = 101.21 kJ/mol and frequency factor = 30.70 c. Activation energy = 101.21 kJ/mol and frequency factor = 2.14E+13 d. Activation energy = 1.22 kJ/mol and frequency factor = 30.70

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Chapter1: Chemical Foundations
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The temperature dependence of the rate constant for the gas-phase reaction
are as follows
2 N₂Os(g)
Temperature (°C) K(s¹)
2.0 × 10
7.3 × 10-'
2.7 × 10 -
9.1 × 10
2.9 × 10-¹
Determine the values of activation energy (Ea) and frequency factor (A) for this reaction
20
30
40
50
60
4NO2(g) + O2(g)
a. Activation energy = 1.22 kJ/mol and frequency factor = 2.14E+13
b.
Activation energy = 101.21 kJ/mol and frequency factor = 30.70
c. Activation energy = 101.21 kJ/mol and frequency factor = 2.14E+13
d. Activation energy = 1.22 kJ/mol and frequency factor = 30.70
What is the volume at the equivalence point volume?
a. 50.001
b. 50.000
IC 50.011
49.932
le 49.861
Clear my choice
Liptoad YOUR eacel für showing all work
Transcribed Image Text:The temperature dependence of the rate constant for the gas-phase reaction are as follows 2 N₂Os(g) Temperature (°C) K(s¹) 2.0 × 10 7.3 × 10-' 2.7 × 10 - 9.1 × 10 2.9 × 10-¹ Determine the values of activation energy (Ea) and frequency factor (A) for this reaction 20 30 40 50 60 4NO2(g) + O2(g) a. Activation energy = 1.22 kJ/mol and frequency factor = 2.14E+13 b. Activation energy = 101.21 kJ/mol and frequency factor = 30.70 c. Activation energy = 101.21 kJ/mol and frequency factor = 2.14E+13 d. Activation energy = 1.22 kJ/mol and frequency factor = 30.70 What is the volume at the equivalence point volume? a. 50.001 b. 50.000 IC 50.011 49.932 le 49.861 Clear my choice Liptoad YOUR eacel für showing all work
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