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question_answer1) Find the number of monochloro derivatives formed (excluding stereoisomers) in the above reaction.
question_answer2) Find the total number of trichloroderivatives of the compound (excluding stereoisomers).
question_answer3) How many isomers (including geometrical and optical) are possible for bromochlorocyclobutane?
question_answer4) How many stereoisomers are possible for dichlorocyclobutane?
question_answer5) How many enantiomeric pairs are possible in bromochlorocyclopentane?
question_answer6) How many alkyl bromides would yield isopentane on reaction with Grignard reagent followed by treatment with water?
question_answer7) How many free radicals can be produced during following reaction (ignoring resonating structure)?
question_answer8) Find the number of fractions obtained after fractional distillation of product mixture.
question_answer9) (c) Calculate sum of number of products formed in the reaction a, b and c.
question_answer10) How many alkenes, alkynes, alkadienes can be hydrogenated to form isopentane (include all isomers)?
question_answer11) Find the total number of cyclic isomers possible for a hydrocarbon with the molecular formula \[{{C}_{4}}{{H}_{6}}\].
question_answer12) Write total number of hydrogen atoms on all the carbon atoms which are connected directly by a single bond to benzylic carbon (carbon connected to benzene ring) in the product
question_answer13) Number of monochloro derivatives (excluding stereoisomers), dichloro derivatives and trichloro derivatives of cyclopentane are \[{{n}_{1}},{{n}_{2}}\] and \[{{n}_{3}}\]. Find the value of \[({{n}_{1}}+{{n}_{2}})/{{n}_{3}}\].
question_answer14) Find the number of alkenes produced in the reaction given.
question_answer15) Find the total no. of alkynes that on catalytic reduction gives 3-ethyl-4-methylheptane.
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