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CH(3)CH(2)CH(2)OH+PBr(3)rarrA CH(3)CH(...

`CH_(3)CH_(2)CH_(2)OH+PBr_(3)rarrA`
`CH_(3)CH_(2)CH_(2)OH+NararrB, A+B rarr C` Produce 'C' is

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The IUPAC name of CH_(3)-=C-CH_(2)-CH_(2)OH is

The conversion CH_(3)CH_(2)CHO "––––"rarr CH_(3)CH_(2)CH_(2) OH can not be affected by:

How would you carry out the following conversions ? (a) H_(3)C CH_(2)=CH_(2) to H_(3)C- CH_(2)CH_(2)CH_(2)OH (b) H_(3)C CH_(2)-CH =CH_(2) to H_(3)C-CH_(2)-CH(OH)CH_(2)OH (c) H_(3)C C-= CH to H_(3)C COCH_(3) (d) Br_(2)CH CHBr_(2) to HC -=CH

Which of the following would you predict to be the stronger acid? (a) Benzoic acid or para-nitrobenzoic acid (b) CH_(3)-CH_(2)-CH_(2)-OH or CH_(3)-CH=CH-OH (c) CH_(3)-CH=CH-CH_(2)-OH or CH_(3)-CH=CH-OH .

Which of the following would you predict to be the stronger acid? (a) Benzoic acid or para-nitrobenzoic acid (b) CH_(3)-CH_(2)-CH_(2)-OH or CH_(3)-CH=CH-OH (c) CH_(3)-CH=CH-CH_(2)-OH or CH_(3)-CH=CH-OH .

Write IUPAC name of- (i) CH_(3)-CH_(2)-CH_(2)-OH (ii) CH_(3)CH(OH)-CH_(3) (iii) CH-=CH (iv) CH_(3)-CO-OH (v) H-CHO (vi) CH_(3)-CHO (viii) CH_(3)-C-=C-H

Conversion (CH_(3)-CH_(3) rarr CH_(3)-CH_(2)-OH) alkane rarr alcohol is achieved by :