Question

17) Consider the reaction between nitrogen monoxide and ozone that occurs in the stratosphere. NO(g) + O3(g) → NO2(g) + O2(8)

0 0
Add a comment Improve this question Transcribed image text
Answer #1

Q.17 Given reaction NO (g) + 03 (9) ► NO,(g) + 02 19). 9) Rate loo rate (n) = K[NOJ (03] . b) it [no] = a[no] then, ratécn) =

Add a comment
Know the answer?
Add Answer to:
17) Consider the reaction between nitrogen monoxide and ozone that occurs in the stratosphere. NO(g) +...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • The rate constant for the reaction of nitrogen monoxide and ozone as shown in the corresponding...

    The rate constant for the reaction of nitrogen monoxide and ozone as shown in the corresponding image, is 1.67 x 1010 M-1 s-1 at 325 K. The rate constant for the same reaction at 375 K is 2.79 x 1010 M-1 s-1 determine the activation energy of this reaction. A) 10.4 kJ B) 19.7 kJ C) 21.3 kJ D) 100.4 kJ O3(g) + NO(g) → O2(g) + NO2(g)

  • A reaction of importance in the formation of smog is that between ozone and nitrogen monoxide...

    A reaction of importance in the formation of smog is that between ozone and nitrogen monoxide described by O3(g)+NO(g)⟶O2(g)+NO2(g)O3(g)+NO(g)⟶O2(g)+NO2(g) The rate law for this reaction is rate of reaction=?[O3][NO]rate of reaction=k[O3][NO] Given that ?=3.02×106 M−1⋅s−1k=3.02×106 M−1⋅s−1 at a certain temperature, calculate the initial reaction rate when [O3O3] and [NONO] remain essentially constant at the values [O3]0=2.65×10−6 M[O3]0=2.65×10−6 M and [NO]0=7.57×10−5 M[NO]0=7.57×10−5 M, owing to continuous production from separate sources. Calculate the number of moles of NO2(g)NO2(g) produced per hour per...

  • 57.) The ozone, O3, of the stratosphere can be decomposed by reac- tion with nitrogen oxide...

    57.) The ozone, O3, of the stratosphere can be decomposed by reac- tion with nitrogen oxide (commonly called nitric oxide), NO, from high-flying jet aircraft. O3(g) + NO(g) → NO2(g) + O2(g) The rate expression is rate = k[O3][NO]. Which of the following mechanisms are consistent with the observed rate expression? (a) NO + 03 - NO3 + 0 (slow) NO3 +0 - NO2 + O2 (fast) O3 + NO → NO2 + O2 overall (b) NO + O3 ->...

  • Nitrogen dioxide, NO2 decomposes into nitrogen monoxide (NO)

    Nitrogen dioxide, NO2 decomposes into nitrogen monoxide (NO) and oxygen gas O2, according to the following reaction. 2 NO2(g) → 2NO(g) + O2(g) A sample of nitrogen dioxide in a sealed vessel, and the total pressure in the vessel was measured to be 0.0980 atm before any reaction had occurred. The total pressure in the vessel was monitored over time during the reaction at 575 K, giving the following data. (a) (20 points) Determine the rate law (in pressure) for this reaction at 575...

  • The depletion of ozone (O3) in the stratosphere has been a matter of great concern among...

    The depletion of ozone (O3) in the stratosphere has been a matter of great concern among scientists in recent years. It is believed that ozone can react with nitric oxide (NO) that is discharged from the high-altitude jet plane, the SST. The reaction is O3 + NO longrightarrow O2 + NO2 If 0.845 g of O3 reacts with 0.687 g of NO, how many grams of NO2 will be produced? g NO2 Which compound is the limiting reagent? nitric oxide...

  • The ozone cycle that occurs in the stratosphere is responsible for the absorption of some of...

    The ozone cycle that occurs in the stratosphere is responsible for the absorption of some of the high energy radiation emitted by the sun The photo dissociation of O2(g) is the first step in the ozone cycle. 02(g) + hv → 0(g) + 0(g) The bond dissociation energy of O2 is 495 kJ/mol I. What is the minimum energy a photon could have to be able to break this bond upon absorption? Il. What is the wavelength of the photon?...

  • Ozone decomposes to form oxygen molecules and oxygen atoms, O3(g) ? O2(g) + O(g), in the...

    Ozone decomposes to form oxygen molecules and oxygen atoms, O3(g) ? O2(g) + O(g), in the upper atmosphere. The energy of activation for this reaction is 93.1 kJ/mol. At 600 K, the rate constant for this reaction is 3.37

  • Ozone (O3) in the atmosphere can be converted to oxygen gas by reaction with nitric oxide...

    Ozone (O3) in the atmosphere can be converted to oxygen gas by reaction with nitric oxide (NO). Nitrogen dioxide is also produced in the reaction. What is the enthalpy change when 8.50L of ozone at a pressure of 1.00 atm and 25°C reacts with 12.00 L of nitric oxide at the same initial pressure and temperature? [∆H°f (NO) = 90.4 kJ/mol; [∆H°f (NO2) = 33.85 kJ/mol; ∆H°f (O3)= 142.2 kJ/mol] [O3 + NO  O2 + NO2] show all work...

  • The rate of reaction of nitrogen monoxide with oxygen was measured at 25 degree C starting...

    The rate of reaction of nitrogen monoxide with oxygen was measured at 25 degree C starting with various initial concentrations of NO and O2. 2 NO(g) + O2(g) --> 2 NO2(g) The data collected is summarized in the following table: Trail n Initial concentration mol / L Initial reaction rate mol/l.s 1 0.020 0.010 0.028 2 0.020 0.020 0.057 3 0.040 0.020 0.227 a. Use the method of initial rates to find the reaction orders with respect to NO and...

  • ClO is a reactive gas that is involved in the destruction of the ozone layer in...

    ClO is a reactive gas that is involved in the destruction of the ozone layer in the stratosphere. The rate constant, k, for the decomposition of the gas into Cl2 and O2 at 298 K is 7.2 x 109 M-1 s-1and the activation energy is 13.2 kJ/mol. Write the balanced equation for the decomposition reaction. Write the rate law for the reaction and explain how you determined the order of the reaction. What is the rate constant of this reaction...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT