over time? P17B.10 Sucrose is readily hydrolysed to glucose and fructose in acidic solution. The hydrolysis can be monitored by measuring the angle of rotation of plane-polarized light passing through the solution because the concentration of sucrose can be inferred from this angle. An experiment on the hydrolysis of sucrose in 0.50 M HCl(aq) produced the following data: em for the 39 60 p 80 110 140 170 210 0 14 duz aistiso s to notizoqmoosb 0.316 0.300 0.274 0.256 0.238 0.211 0.190 0.170 0.146 t/min [sucrose]/ (mol dm¯³) Assume that the reaction is first-order in sucrose, and determine the rate constant of the reaction and the half-life of sucrose.

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Chapter1: Chemical Foundations
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Please, answer the problem graphically using Excel and additionally check to make sure it is NOT second order (make plots for both a 1st or 2nd order reaction). Upload your Excel file along with your answers. Assume the sucrose is the only reactant (the HCl essentially acts as a catalyst).
vary over time?
P17B.10 Sucrose is readily hydrolysed to glucose and fructose in acidic
solution. The hydrolysis can be monitored by measuring the angle of
rotation of plane-polarized light passing through the solution because the
concentration of sucrose can be inferred from this angle. An experiment on
the hydrolysis of sucrose in 0.50 M HCl(aq) produced the following data:
anim for the de
0 14 39 60 80 110 140 170 210
duz ai
20qmoosb
t/min
21
[sucrose]/ 0.316 0.300 0.274 0.256 0.238 0.211 0.190 0.170 0.146
(mol dm¯³)
Assume that the reaction is first-order in sucrose, and determine the rate
constant of the reaction and the half-life of sucrose.
duob of baue
a procitavite da sterler Q°2&PA) 2£mpt
state approximation can be applied to A
mont basis
Transcribed Image Text:vary over time? P17B.10 Sucrose is readily hydrolysed to glucose and fructose in acidic solution. The hydrolysis can be monitored by measuring the angle of rotation of plane-polarized light passing through the solution because the concentration of sucrose can be inferred from this angle. An experiment on the hydrolysis of sucrose in 0.50 M HCl(aq) produced the following data: anim for the de 0 14 39 60 80 110 140 170 210 duz ai 20qmoosb t/min 21 [sucrose]/ 0.316 0.300 0.274 0.256 0.238 0.211 0.190 0.170 0.146 (mol dm¯³) Assume that the reaction is first-order in sucrose, and determine the rate constant of the reaction and the half-life of sucrose. duob of baue a procitavite da sterler Q°2&PA) 2£mpt state approximation can be applied to A mont basis
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