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[" 16.For the first order thermal decomp...

[" 16.For the first order thermal decomposith_n "],[" reaction,the following data obtainposith_n "],[qquad [C_(2)H_(5)C1(g)longrightarrow C_(2)H_(4)(g)+HCl(g)],[" Time/s "],[0],[300]" ."[0.30],[" Calculate the rate constant."],[" (Given: "log2=0.3010,log3=0.4771,],[log4=0.6021)" All notio "2016]]

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For the first order thermal decomposition reaction, the following data were obtained : C_(2)H_(5)Cl(g) to C_(2)H_(4) (g) + HCl(g) {:("Time/Sec", " " "Total pressure/atm"), (0, " " 0.30), (300, " " 0.50):} Calculate the rate constant (Given : log 2= 0.301, log 3 = 0.4771, log 4=0.6021)

For the first order thermal decomposition reaction, the following data were obained : C_(2)H_(5)Cl(g) to C_(2)H_(4) (g) + HCl(g) {:("Time/Sec", " " "Total pressure/atm"), (0, " " 0.30), (300, " " 0.50):} Calculate the rate constant (Given : log 2= 0.301, log 3 = 0.4771, log 4=0.6021)

The following data were obtained during the first order thermal decomposition of SO_(2) Cl_(2) at a constant volume : SO_(2)Cl_(2) (g) to SO_(2)(g)+Cl_(2)(g) {:("Experiment Times"//s^(-1) " Total pressure/atm"),("1 0 0.4" ),("2 100 0.7"):} Calculate the rate constant. Given : log 4 = 0.6021, log 2 = 0.3010)

Following data were obtained during first order thermal decomposition of - SO_(2)Cl_(2)(g)rarrSO_(2)(g)+Cl_(2)(g) {:("Experiment","time"(s^(-1)),"Total pressure"("atm")),(1,0,0.4),(2,100,0.7):} Calculate the rate constant . (Given : log4 = 0.6021, log2 = 0.3010)

The following data were obtained during the first order thermal decomposition of SO_2Cl_2 at a constant volume : SO_2Cl_2 (g) rarr SO_2(g)+ Cl_2(g) Calculate the rate constant. (Given : log 4 = 0.6021, log 2 = 0.3010)