Concept explainers
Interpretation:
The rate constant of deuterated reaction is 7 times lower than hydrogen containing reaction. The effect of the given statement about the mechanism of the given reaction has to be explained.
Concept introduction:
In organic reactions, there is a competition between unimolecular nucleophilic substitution
In
The strong nucleophile (strong base) facilitates
The formation of stable carbocation is the common intermediate for both reactions.
After formation of carbocation, abstraction of proton yields alkene product in
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- (a) Select all of the correct statements about reaction rates from the choices below. 1.The lower the rate of a reaction the longer it takes to reach completion.2 The rate of a reaction is independent of temperature.3 Slow reactions can be speeded up by raising the temperature.4. Reaction rates increase with increasing temperature.5. Solid catalysts do not affect reaction rates.6. Reactions involving very unstable combinations of chemicals have large rate constants.7. A balanced chemical reaction is necessary to relatearrow_forwardIs this correct?arrow_forwardWhat is the NAME of the Mechanism for this reaction?arrow_forward
- Chloromethane reacts with dilute sodium cyanide (Na+ -C‚N) chloromethane cyanide acetonitrile chloride. When the concentration of chloromethane is doubled, the rate is observed to double. When the concentration of cyanide ion is tripled, the rate is observed to triple. Write the rate equation for this reaction.arrow_forwardHow many steps in the mechanism of this reaction?arrow_forwardDraw the most stable resonance form for the intermediate in the following electrophilic substitution reaction. • • You do not have to consider stereochemistry. • Include all valence lone pairs in your answer. Br2 Br In cases where there is more than one answer, just draw one. + √n [ ? N ZIarrow_forward
- 197. Subject : - Chemistryarrow_forwardd) During the reaction between 3, 3-dimethylbutene (W) and HBr, intermediate species and Y are formed. CH3 CH;-C-CH=CH2 ČH3 HBr Y step 1 step 2 step 3 i) Write a mechanism for the formation of intermediate X? ii) Write the structure of intermediate Y? iii) Explain in your own words what happens in step 2 of the reaction? iv) Write a mechanism for the formation of Z from Y?arrow_forwardConsider the following reaction mechanism. Step 1: 2 X + Y W+ 2 Z fast Step 2: Z U+V slow Step 3: V +Z 2 W + Y fast The rate-limiting step is Step. because O 2; it is the slowest step 1; the first step must occur before any others can occur O 3; the last step is always the rate-limiting step O 2; it uses a product of the first step Consider the hypothetical reaction: A + 5 B + 3 C D + 2 E+ 4 F. Which of the reagents will undergo the highest rate of loss in concentration? O D Ов ос ОА Similar to the standard enthalpy of formation, the absolute molar entropy (S) of a pure element in its standard state is zero. Select one: O True O Falsearrow_forward
- What is the value of the rate law constant for the reaction shown in the picture? a) -1.9 x10^4 b) +1.9 x 10^4 c) -5.2 x 10^-5 d) +5.2 x 10^-5 e) +6.2arrow_forwardDraw the reaction mechanismsarrow_forwardConsider the following reaction mechanism. Step 1: 2X + Y- W + 2 Z fast Step 2: Z- U+ V slow Step 3: V+Z-2 W + Y fast The rate-limiting step is Step because. 1; the first step must occur before any others can occur O 2; it uses a product of the first step O 3; the last step is always the rate-limiting step O 2; it is the slowest steparrow_forward
- Organic ChemistryChemistryISBN:9781305580350Author:William H. Brown, Brent L. Iverson, Eric Anslyn, Christopher S. FootePublisher:Cengage Learning