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- The reaction between peroxodisulphate (VI) ions, S2O82- and iodide ions, I- can be catalyzed by iron(III) ions, Fe3+. Suggest a mechanism for the catalytic reaction.[Rh(PPh3)3Cl] is a precatalyst that can be activated by dissociation of a phosphine ligand to form an active catalyst, B, which is used in the hydrogenation of alkenes. The active catalyst can then undergo oxidative addition in the presence of H2 to form complex C. Propene coordinates to C to form complex D, which then undergoes a 1,2- insertion step to form E. Reductive elimination of propane from E regenerates the active catalyst B. Draw complexes B – E and hence provide a full catalytic cycle, including the activation step, for the hydrogenation of propeneConsider the following statement in reference to SN1, SN2, E1, and E2 reactions of haloalkanes. To which mechanism(s), if any, does the statement apply? Is first order in haloalkane and zero order in base
- A) Provide the reagent and reaction mechanism to show how the reactants and products in the following reaction can interconvert B) under what conditions would the reaction I) favour reactants, II) favour the products and III) why?Why is the existence of a series of entering groups with different rate constants evidence for an associative mechanism ( A or I a )what are the difference between SN1 and SN2 reaction ? describe the reaction mechanism difference between SN1 and SN2 and give examples with specific detailed explanation.
- 1.) Establish the reaction mechanism for the conversion of 2,3-dimethylbutanol to the corresponding alkyl halide if hydrochloric acid is used. What method of chemical reaction would you use? Justify your answer. Show the overall reaction and the reaction mechanism.State whether the reaction below gave a single product or more than one product in quantitiesequimolars or more than one product in different proportions (if this was the case, indicate which was the main one). justify, depending on the structural characteristics of the substrate and the intermediates formed.With regards to this, I have been reading journals about activated carbon that is being modified. Now, the activated carbon is modified through acid treatment, and sulfuric acid is added to it. The result was, that there is a presence of SO3-, C=O=C, and C=O on the modified activated carbon. They concluded that the process of sulfonation on the activated carbon treated with sulfuric acid took place. Can you explain the chemistry/mechanism/reaction that happened? Explain in detail and clearly. Thank you so much!