Dinitrogen trioxide, N2O3, is largely dissociated into NO and NO2 in the gas phase where there exists the equilibrium, N2O3 NO + NO2 In an effort to determine the structure of N2O3, a mixture of NO and "NO2 was prepared containing isotopically labeled N in the NO2. After a period of time the mixture was analyzed and found to contain substantial amounts of both *NO and *NO2. Explain how this is consistent with the structure of N2O3 being ONONO. Because this is an equilibrium process, there is a change that either the forward or the reverse reactions will occur. As NO reacts with NO2 we form This compound can decompose and give either NO2 and and "NO2. or After sufficient time, v will be present in the mixture. both "NO and NO Attempts: 0 of 3 used Submit Answer Save for Later only "NO only NO

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Dinitrogen trioxide, N2O3, is largely dissociated into NO and NO2 in the gas phase where there exists the equilibrium,
N2O3 = NO + NO2
In an effort to determine the structure of N2O3, a mixture of NO and "NO2 was prepared containing isotopically labeled N in the NO2.
After a period of time the mixture was analyzed and found to contain substantial amounts of both *NO and *NO2. Explain how this is
consistent with the structure of N2O3 being ÔNONO.
Because this is an equilibrium process, there is a change that either the forward or the reverse reactions will occur.
As NO reacts with NO2 we form
This compound can decompose and give either NO2 and
and "NO2.
or
After sufficient time,
v will be present in the mixture.
both "NO and NO
Attempts: 0 of 3 used
Submit Answer
Save for Later
only *NO
only NO
Transcribed Image Text:Dinitrogen trioxide, N2O3, is largely dissociated into NO and NO2 in the gas phase where there exists the equilibrium, N2O3 = NO + NO2 In an effort to determine the structure of N2O3, a mixture of NO and "NO2 was prepared containing isotopically labeled N in the NO2. After a period of time the mixture was analyzed and found to contain substantial amounts of both *NO and *NO2. Explain how this is consistent with the structure of N2O3 being ÔNONO. Because this is an equilibrium process, there is a change that either the forward or the reverse reactions will occur. As NO reacts with NO2 we form This compound can decompose and give either NO2 and and "NO2. or After sufficient time, v will be present in the mixture. both "NO and NO Attempts: 0 of 3 used Submit Answer Save for Later only *NO only NO
Dinitrogen trioxide, N2O3, is largely dissociated into NO and NO2 in the gas phase where there exists the equilibrium,
N2O3 NO + NO2
In an effort to determine the structure of N2O3, a mixture of NO and "NO2 was prepared containing isotopically labeled N in the NO2.
After a period of time the mixture was analyzed and found to contain substantial amounts of both *NO and "NO2. Explain how this is
consistent with the structure of N2O3 being ONONO.
Because this is an equilibrium process, there is a change that either the forward or the reverse reactions will occur.
As NO reacts with NO2 we form
or
and "NO2.
This compound can decompose and give either NO2 and
NO
will be prese "NO
hixture.
After sufficient time,
Transcribed Image Text:Dinitrogen trioxide, N2O3, is largely dissociated into NO and NO2 in the gas phase where there exists the equilibrium, N2O3 NO + NO2 In an effort to determine the structure of N2O3, a mixture of NO and "NO2 was prepared containing isotopically labeled N in the NO2. After a period of time the mixture was analyzed and found to contain substantial amounts of both *NO and "NO2. Explain how this is consistent with the structure of N2O3 being ONONO. Because this is an equilibrium process, there is a change that either the forward or the reverse reactions will occur. As NO reacts with NO2 we form or and "NO2. This compound can decompose and give either NO2 and NO will be prese "NO hixture. After sufficient time,
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