nafica EOC Part 2 The dimerization of butadiene was studied at 500. K: 2 0 Hạ (g) - C Ha (9) The following data were obt
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nafica EOC Part 2 The dimerization of butadiene was studied at 500. K: 2 0 Hạ (g) - C Ha (9) The following data were obtained, where: Top Rate = -ACH) dt Time (s) ICE) (mol/L) 212,0 1.61 x 10-9 508.0 1.50 X 10- 1344 1.28 x 10-1 2352 1.08 x 10-2 5829 7.04 x 10' (a) Determine the form of the integrated rate law. 1 1 - [CH] CH! O [CH] = -At+C Hl. 1 1 =k+ CHO C Hel. O InfC.H. --*+ In[C.H.. ОО (b) Determine the form of the differential rate law. (Use k for the rate constant) w Rate Then Email Instructor Save and Exit
bub. 1.0 x LU Tel 1344 Tpt 1.28 x 10-2 2352 1.08 x 10 1 pt 5829 7.04 x 10-> (a) Determine the form of the integrated rate law. 1 1 -kt + CH [CH], [CH]-kt + [C, Hole 1 1 =kt + [CH] (C. Hele O In[CH] = -kt + In[C, Hel. оооо (b) Determine the form of the differential rate law. (Use k for the rate constant.) Rate = (c) Using the first and last data points, determine the value of the rate constant for this reaction Rate constant L mol-':- Submit Answer Try Another Version 10 item attempts remaining
bub. 1.0 x LU Tel 1344 Tpt 1.28 x 10-2 2352 1.08 x 10 1 pt 5829 7.04 x 10-> (a) Determine the form of the integrated rate law. 1 1 -kt + CH [CH], [CH]-kt + [C, Hole 1 1 =kt + [CH] (C. Hele O In[CH] = -kt + In[C, Hel. оооо (b) Determine the form of the differential rate law. (Use k for the rate constant.) Rate = (c) Using the first and last data points, determine the value of the rate constant for this reaction Rate constant L mol-':- Submit Answer Try Another Version 10 item attempts remaining