The study of the kinetics of the decomposition reaction of N205 gas was carried out in a closed cylinder with a volume of 1 L. The reactions that occur are: 2N2O5 (e) → 4N02(e) + O2(e) The following is a curve of 1/N205 against the reaction time of decomposition of N205 gas at temperatures of 427K and 527K. y = 2,0923x - 3,75 R² = 0,9999 0,7708x + 146,96 R² = 0,9995 ¥=0,7708x + 146,96 R² = 0,9995 %3D Time (sekon) a. Determine the rate equation for the decomposition reaction of gas N205 b. Determine the value of the rate constant (k) for the reaction at both temperatures. Express in the correct units. (jow/1) [°o°N]/T

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Chapter11: Chemical Kinetics
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The study of the kinetics of the decomposition reaction of N205 gas was carried out in a
closed cylinder with a volume of 1 L. The reactions that occur are:
2N2O5 (g) → 4N02(g) + O2(e)
The following is a curve of 1/N205 against the reaction time of decomposition of N205 gas
at temperatures of 427K and 527K.
y = 2,0923x - 3,75
R² = 0,9999
0,7708x + 146,96
R² = 0,9995
¥=0,7708x + 146,96
R² = 0,9995
%3D
Time (sekon)
a. Determine the rate equation for the decomposition reaction of gas N205
b. Determine the value of the rate constant (k) for the reaction at both temperatures.
Express in the correct units.
1/[N,Og] (L/mol)
Transcribed Image Text:The study of the kinetics of the decomposition reaction of N205 gas was carried out in a closed cylinder with a volume of 1 L. The reactions that occur are: 2N2O5 (g) → 4N02(g) + O2(e) The following is a curve of 1/N205 against the reaction time of decomposition of N205 gas at temperatures of 427K and 527K. y = 2,0923x - 3,75 R² = 0,9999 0,7708x + 146,96 R² = 0,9995 ¥=0,7708x + 146,96 R² = 0,9995 %3D Time (sekon) a. Determine the rate equation for the decomposition reaction of gas N205 b. Determine the value of the rate constant (k) for the reaction at both temperatures. Express in the correct units. 1/[N,Og] (L/mol)
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