OnLA] LA),=-Kt TA %3D t. Kinetics Worksheet Two 0MLA =-er ONCA} A- (4) The first order rate constant for the decomposition of N2O5 is 0.0841 s-. If 2.50 moles are in a 1.00 L flask at the start, how many moles are present at 1.00 min? On CXコ.= 0084 4s H地reis0u in First odan enCX 84-1860s tlais0J On Cy コ = S.o4b +lnE2-50コ On Cyコowス5.96168 Hel (2) The first order rate constant for a reaction at 1000 °C is 87.0 s1. If the reaction is started with 1.C sample (molecular weight = 55.0 amu) in a 2.00 L flask, how long would it take to react 0.0600 g? %3D

Chemistry for Engineering Students
4th Edition
ISBN:9781337398909
Author:Lawrence S. Brown, Tom Holme
Publisher:Lawrence S. Brown, Tom Holme
Chapter11: Chemical Kinetics
Section: Chapter Questions
Problem 11.48PAE: 11.48 The following data were collected for the decomposition of NT),-: Time, f (min) [N2Os] (mol...
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OnLA]
LA),=-Kt TA
%3D
t.
Kinetics Worksheet Two 0MLA =-er
ONCA}
A-
(4) The first order rate constant for the decomposition of N2O5 is 0.0841 s-. If 2.50 moles are in a 1.00 L
flask at the start, how many moles are present at 1.00 min?
On CXコ.= 0084 4s H地reis0u
in
First odan
enCX
84-1860s tlais0J
On Cy コ =
S.o4b +lnE2-50コ
On Cyコowス5.96168
Hel
(2) The first order rate constant for a reaction at 1000 °C is 87.0 s1. If the reaction is started with 1.C
sample (molecular weight = 55.0 amu) in a 2.00 L flask, how long would it take to react 0.0600 g?
%3D
Transcribed Image Text:OnLA] LA),=-Kt TA %3D t. Kinetics Worksheet Two 0MLA =-er ONCA} A- (4) The first order rate constant for the decomposition of N2O5 is 0.0841 s-. If 2.50 moles are in a 1.00 L flask at the start, how many moles are present at 1.00 min? On CXコ.= 0084 4s H地reis0u in First odan enCX 84-1860s tlais0J On Cy コ = S.o4b +lnE2-50コ On Cyコowス5.96168 Hel (2) The first order rate constant for a reaction at 1000 °C is 87.0 s1. If the reaction is started with 1.C sample (molecular weight = 55.0 amu) in a 2.00 L flask, how long would it take to react 0.0600 g? %3D
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