Q2/a- Derive the integral equation for first order reactions with varying volume batch reactor in terms of volume. b-The following reaction was investigated as indicated in the following table. Determine the order with respect to each reactant and the rate law for this reaction. Experiment 1 2 3 CH3Cl + 3Cl₂ →→ CCL4+3 HC1 - [CH3C1] (M) 0.050 0.100 0.200 [C1₂] (M) 0.050 0.050 0.200 Initial Rate (M/sec) 0.014 0.029 0.115

Introduction to Chemical Engineering Thermodynamics
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Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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Q2/a- Derive the integral equation for first order reactions with varying volume batch reactor in terms of
volume.
b-The following reaction was investigated as indicated in the following table. Determine the order with
respect to each reactant and the rate law for this reaction.
Experiment
1
2
3
CH3C1+ 3Cl2 → CCl4+3 HCI
[CH3C1] (M)
0.050
0.100
0.200
[C1₂] (M)
0.050
0.050
0.200
Initial Rate (M/sec)
0.014
0.029
0.115
Transcribed Image Text:Q2/a- Derive the integral equation for first order reactions with varying volume batch reactor in terms of volume. b-The following reaction was investigated as indicated in the following table. Determine the order with respect to each reactant and the rate law for this reaction. Experiment 1 2 3 CH3C1+ 3Cl2 → CCl4+3 HCI [CH3C1] (M) 0.050 0.100 0.200 [C1₂] (M) 0.050 0.050 0.200 Initial Rate (M/sec) 0.014 0.029 0.115
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