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Calculate the percentages of all the mon...

Calculate the percentages of all the monochlorinated products obtained from 2-methylbutane. The relative reactivity of `1^(@), 2^(@)` and `3^(@)` hydrogen towards chlorination is 1 : 3.8: 5.

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To calculate the percentages of all the monochlorinated products obtained from 2-methylbutane, we will follow these steps: ### Step 1: Identify the types of hydrogen atoms in 2-methylbutane 2-methylbutane has: - 9 primary (1°) hydrogen atoms - 2 secondary (2°) hydrogen atoms - 1 tertiary (3°) hydrogen atom ...
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Predict the percentage of ismoers formed during monobromination of 2,3-dimethyl butane at room temperature. Relative reactivity of 1^(@) , 2^(@) , 3^(@) H atoms to chlorination is (1.0 : 3.8 : 5.0) .

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Knowledge Check

  • Calculate the percentage of all the monochlorinated products obtained from the chlorination of 2 -methyl butane. The relative reactivity of 1^(@), 2^(@) and 3^(@) hydrogen to chlorination is (1:3. 8:5) .

    A
    `15%, 45%, 20%, 25%`
    B
    `14%, 35%, 23%, 28%`
    C
    `12%, 30%, 22%, 29%`
    D
    `17%, 36%, 20%, 23%`
  • How many enantiomer pairs are obtained by monochlorination of 2, 3-dimethylbutane

    A
    Nil
    B
    Four
    C
    Two
    D
    One
  • A : When isobutane-is-reacted with Cl_(2) in presence of sunlight then CH_(3)-overset(CH_(3))overset(|)CH-CH_(3)Cl is formed in high percentage. R : The reactivity of 1^(@), 2^(@) “and” 3^(@) H-atoms towards chlorine are 1 : 3.8 : 5 respectively.

    A
    If both Assertion & Reason are true and the reason is the correct explanation of the assertion, then mark (1).
    B
    If both Assertion & Reason are true but the reason is not the correct explanation of the assertion, then mark (2)
    C
    if Assertion is true statement but Reason is false, then mark (3)
    D
    If both Assertion and Reason are false statements, then mark (4)
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    How many enantiomeric pairs are obtained by monochlorination of 2,3-dimethylbutane

    An isomer of C_(5)H_(12) gives total six isomeric products on monochlorination. Calculate the percentage yield of the primary monochloride which is chiral. Consider the following relative reactivity of C-H bonds for chlorination. |{:("Degree of "C-H,1^(@) C-H,2^(@) C-H,3^(@) C-H),("Relative reactivity for chlorination (R R)",1,3,5):}|

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