A solution is prepared that is initially 0.24 M in trimethylamine ((CH 3),N), a weak base, and 0.30 M in trimethylammonium chloride ((CH3),NHCI). 3. Complete the reaction table below, so that you could use it to calculate the pH of this solution. Use x to stand for the unknown change in OH ]. You can leave out the M symbol for molarity. [(cH.),"] NH"] [(CH,), [oH] 3 initial change final

Living By Chemistry: First Edition Textbook
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ChapterU4: Toxins: Stoichiometry, Solution Chemistry, And Acids And Bases
SectionU4.18: Pass The Proton: Acid-base Theories
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A solution is prepared that is initially 0.24 M in trimethylamine ((CH 3),N),
a weak base, and 0.30 M in trimethylammonium chloride ((CH3),NHCI).
3.
Complete the reaction table below, so that you could use it to calculate the pH of this solution.
Use x to stand for the unknown change in OH ]. You can leave out the M symbol for molarity.
[(cH.),"] NH"]
[(CH,),
[oH]
3
initial
change
final
Transcribed Image Text:A solution is prepared that is initially 0.24 M in trimethylamine ((CH 3),N), a weak base, and 0.30 M in trimethylammonium chloride ((CH3),NHCI). 3. Complete the reaction table below, so that you could use it to calculate the pH of this solution. Use x to stand for the unknown change in OH ]. You can leave out the M symbol for molarity. [(cH.),"] NH"] [(CH,), [oH] 3 initial change final
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