The rate equation for the hydrolysis of sucrose to fructose and glucose C₁2H₂O(aq) + H₂O()→ CsH₁2Os(aq) + CH₂Os (aq) is -A[sucrose)/At=k[C₁H₂O₂). After 28 minutes at 27 °C, the sucrose concentration decreased from 0.0112 M to 0.0090 M. Find the rate constant k. k= min-1
The rate equation for the hydrolysis of sucrose to fructose and glucose C₁2H₂O(aq) + H₂O()→ CsH₁2Os(aq) + CH₂Os (aq) is -A[sucrose)/At=k[C₁H₂O₂). After 28 minutes at 27 °C, the sucrose concentration decreased from 0.0112 M to 0.0090 M. Find the rate constant k. k= min-1
Chemistry
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Chapter12: Chemical Kinetics
Section: Chapter Questions
Problem 5ALQ: Consider the following statements: In general, the rate of a chemical reaction increases a bit at...
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![The rate equation for the hydrolysis of sucrose to fructose and glucose
C₁2H₂O(aq) + H₂O()→ CsH₁2Os(aq) + CH₂Os (aq)
is-A[sucrose]/At=k[C₁₂H₂O₂). After 28 minutes at 27 °C, the sucrose concentration decreased from 0.0112 M to 0.0090 M.
Find the rate constant k.
k=
min-1
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Transcribed Image Text:The rate equation for the hydrolysis of sucrose to fructose and glucose
C₁2H₂O(aq) + H₂O()→ CsH₁2Os(aq) + CH₂Os (aq)
is-A[sucrose]/At=k[C₁₂H₂O₂). After 28 minutes at 27 °C, the sucrose concentration decreased from 0.0112 M to 0.0090 M.
Find the rate constant k.
k=
min-1
Submit Answer
Try Another Version
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