I need help with Chemistry Question. Tks. prob0001pdf Adobe Acrobat Reader DC Fi
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I need help with Chemistry Question. Tks.
prob0001pdf Adobe Acrobat Reader DC File Edit View Window Help Sign In 11. Export PDF The reaction A B + C Ms1 at 25 °C. An experiment was run at 25 °C where [A] 1.0 x 10 a. Write the integrated rate law for this reaction b. Calculate the first half life for the reaction c. Calculate the concentration of B after 5.0 x 10 s has elapsed is known to be zero order in A and to have a rate constant of 0.050 M Create PDF v Edit PDF Combine Files ^ Adobe Acrobat Pro DC Combine two or more files into a single POF Learn more organize Pages Protect Optimize PDF Fill& Sign Send for Signature Send & 1 rack Store and share files in the Document Cloud Learn More 1054 PM Type here to search e OChegg Study | Guid. aprob0001.pdf . Ado ^ 4x ENG 2018-01-12Explanation / Answer
a)
Integrated rate law for zero order reaction is
[A] = -kt + [A]0
where,
t = time
k = rate constant
[A]= concentration at time t
[A]0 = Initial concentration
b) Half life of Zero order reaction obtained by the following equation
t1/2 = [A]0/2k
= 0.001M/2*(0.050Ms-1)
= 0.02s
c) Apply integrated Zero oreder rate law
[A] = - kt + [A]0
= - (0.050Ms-1) * 0.005s + 0.001M
= 0.00075M
So, after 0.005s elapsed, concentration of A is 0.00075
So, Concentration of A reacted = 0.00100 - 0.00075 = 0.00025M
concentration of B produced = Concentration of A reacted
Therefore,
Concentration of B after 0.005s elapsed = 0.00025M
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