Question of 90
Q.a.
(i) Explain Markovnikov rule and anti-Markovnikov rule with reaction.
(ii) Give the IUPAC name of CH3CH2CHOHCH2CH3.
OR
b. What are conformers? Explain the conformation of ethane for Sawhorse projections and Newman projections.
Nagaland NbseNagaland Board of School Education (Class XI) 2021Subjective· 5mImportance★★★★★
0% · 0/90 Questions
You're viewing a preview — the full solution, concept, methods & PYQ mapping are locked.
Start your 14-day free trial to unlock the full solution →- Markovnikov/anti-Markovnikov describe where the halogen ends up when HX adds across an unsymmetrical alkene; CH3CH2CHOHCH2CH3 is named pentan-3-ol. (b) Ethane's C–C bond can rotate freely, giving a continuum of conformers, with staggered being lowest energy (most stable) and eclipsed highest energy (least stable). (a)(i) Markovnikov and anti-Markovnikov rules Markovnikov's rule: when an unsymmetrical reagent HX (e.g. HBr, HCl) adds to an unsymmetrical alkene, the negative part (X) attaches to the carbon atom bearing the fewer hydrogen atoms (the more substituted carbon), while H attaches to the carbon with more hydrogens. Example: This occurs because the reaction proceeds via the more stable (more substituted) carbocation intermediate. Anti-Markovnikov rule (peroxide/Kharasch effect): in the presence of peroxides, HBr specifically adds to unsymmetrical alkenes in the opposite sense — Br attaches to the carbon with more H atoms — via a free-radical chain mechanism instead of an ionic one: (This peroxide effect is observed only with HBr, not with HCl or HI, because of the relative bond energies/thermodynamics of the propagation steps.) (a)(ii) IUPAC name of The longest chain has 5 carbons (pentane) with an –OH group on the middle (3rd) carbon, and numbering from either end gives the same locant (3), so the lowest locant rule is automatically satisfied: IUPAC name: pentan-3-ol.
- OR — Conformers of ethane (Sawhorse and Newman projections) Conformers (conformational isomers) are different spatial arrangements of the atoms of a molecule that result from rotation about a carbon–carbon single bond; they are freely interconvertible without breaking any bonds and are not truly separable isomers. For ethane (), rotation about the central C–C bond generates infinitely many conformations, of which the two extremes are usually depicted:
- Sawhorse projection: the molecule is drawn diagonally in 3D, with the front carbon at the lower-left and the back carbon at the upper-right, each carbon showing its three attached hydrogens. In the eclipsed form the front and back C–H bonds are drawn directly aligned; in the staggered form the back C–H bonds are drawn positioned exactly between the front ones (rotated 60°). …
Unlock everything free for 14 days
- Full step-by-step solutions
- Concept-first explanations
- Methods, shortcuts & mistakes
- PYQ mapping + timed mock tests
Full access for 14 days. No credit card required.