Chemistry, 20.02.2020 20:03 alexisbrad3107
The overall order of an elementary step directly corresponds to its molecularity. Both steps in this example are second order because they are each bimolecular. Furthermore, the rate law can be determined directly from the number of each type of molecule in an elementary step. For example, the rate law for step 1 is rate =k[NO]^2 .The exponent "2" is used because the reaction involves twoNO^2 molecules. The rate law for step 2 is rate=k[N_2O_4]^1[CO]^1=k[N_2O_4][CO ] because the reaction involves only one molecule of each reactant the exponents are ommitted. Analyzing a new reaction Consider the following elementary steps that make up the mechanism of a certain reaction: 1.3A>B+C 2. B+2D>C+FA. What is the overall reaction? B. Which species is a reaction intermediate?C. What is the rate law for step 1 of this reaction? For example, if the rate law is type k*[A]*[C]^3.D. What is the rate law for step 2 of this reaction? For example, if the rate law is type k*[A]*[C]^3.
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Achemist is studying the following equilibirum, which has the given equilibrium constant at a certain temperature: 2 no(g) + cl2(g) < => 2 nocl(g) kp = 2 x 10^(-6)he fills a reaction vessel at this temperature with 13. atm of nitrogen monoxide gas and 12. atm of chlorine gas. use this data to answer the questions: a. can you predict the equilibrium pressure of noci, using only the tools available to you within aleks? y/nb. if you said yes, then enter the equilibrium pressure of nocl at right. round your answer to 1 significant digit.
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The overall order of an elementary step directly corresponds to its molecularity. Both steps in this...
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