Consider this scenario and answer the following questions: Chlorine atoms resulting from decomposition of chloro?uoromethanes, such as CCI 2 F 2 , catalyze the decomposition of ozone in the atmosphere. One simplified mechanism for the decomposition is: O 3 → sunlight O 2 + O O 3 + CI → O 2 + CIO CIO + O → CI + O 2 (a) Explain why chlorine atoms are catalysts in the gas-phase transformation: 2 O 3 → 3 O 2 (b) Nitric oxide is also involved in the decomposition of ozone by the mechanism: O 3 → sunlight O 2 + O O 3 + NO → NO 2 + O 2 NO 2 + O → NO + O 2 Is NO a catalyst for the decomposition? Explain your answer.
Consider this scenario and answer the following questions: Chlorine atoms resulting from decomposition of chloro?uoromethanes, such as CCI 2 F 2 , catalyze the decomposition of ozone in the atmosphere. One simplified mechanism for the decomposition is: O 3 → sunlight O 2 + O O 3 + CI → O 2 + CIO CIO + O → CI + O 2 (a) Explain why chlorine atoms are catalysts in the gas-phase transformation: 2 O 3 → 3 O 2 (b) Nitric oxide is also involved in the decomposition of ozone by the mechanism: O 3 → sunlight O 2 + O O 3 + NO → NO 2 + O 2 NO 2 + O → NO + O 2 Is NO a catalyst for the decomposition? Explain your answer.
Consider this scenario and answer the following questions: Chlorine atoms resulting from decomposition of chloro?uoromethanes, such as CCI2F2, catalyze the decomposition of ozone in the atmosphere. One simplified mechanism for the decomposition is:
O
3
→
sunlight
O
2
+
O
O
3
+
CI
→
O
2
+
CIO
CIO
+
O
→
CI
+
O
2
(a) Explain why chlorine atoms are catalysts in the gas-phase transformation:
2
O
3
→
3
O
2
(b) Nitric oxide is also involved in the decomposition of ozone by the mechanism:
O
3
→
sunlight
O
2
+
O
O
3
+
NO
→
NO
2
+
O
2
NO
2
+
O
→
NO
+
O
2
Is NO a catalyst for the decomposition? Explain your answer.
19. (3 pts) in Chapter 7 we will see a reaction of halocyclohexanes that requires that the halogen occupy an axial position with
this in mind, would you expect cis-1-bromo-3-methylcyclohexane or trans-1-bromo-3-methylcyclohexane to be more
reactive in this reaction? Briefly explain your choice using structures to support your answer.
Mere-eries-cecleone)
The tran-i-browse-3-methylcyclohexione
Please help me calculate the undiluted samples ppm concentration.
My calculations were 280.11 ppm. Please see if I did my math correctly using the following standard curve.
Link: https://mnscu-my.sharepoint.com/:x:/g/personal/vi2163ss_go_minnstate_edu/EVSJL_W0qrxMkUjK2J3xMUEBHDu0UM1vPKQ-bc9HTcYXDQ?e=hVuPC4
Provide an IUPAC name for each of the compounds shown.
(Specify (E)/(Z) stereochemistry, if relevant, for straight chain alkenes only. Pay attention to
commas, dashes, etc.)
H₁₂C
C(CH3)3
C=C
H3C
CH3
CH3CH2CH
CI
CH3
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Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell