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NCERT Exemplar · Q49

Q.Predict the hybridisation of each carbon in the molecule of organic compound given below. Also indicate the total number of sigma and pi bonds in this molecule.
CH≡C—C(=O)—CH2—C(=O)—OH (i.e. HC≡C–CO–CH2–COOH)

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Each carbon's hybridization is determined by counting its sigma bonds and lone pairs (steric number). The molecule contains 13 σ bonds and 4 π bonds, with carbons showing spsp, sp2sp^2, and sp3sp^3 hybridization depending on their bonding environment.

Why hybridization matters

Hybridization explains the geometry and bonding capacity of carbon atoms. A carbon atom mixes its 2s2s and 2p2p orbitals to form hybrid orbitals that point toward bonding partners. The type of hybridization depends on how many regions of electron density surround the carbon:

  • sp3sp^3: four single bonds → tetrahedral
  • sp2sp^2: three regions (one may be a double bond) → trigonal planar
  • spsp: two regions (one may be a triple bond) → linear

Every single bond is a σ bond. Multiple bonds add π bonds: a double bond has one σ and one π; a triple bond has one σ and two π.

Let me label the carbons for clarity:

H−CX1≡CX2−CX3(=O)−CX4X224HX2−CX5(=O)−OH\ce{H-C^1≡C^2-C^3(=O)-C^4H2-C^5(=O)-OH}

Step-by-step analysis

1. Carbon-1 (the terminal alkyne carbon, HC≡\ce{HC≡})

This carbon forms:

  • One σ bond to hydrogen
  • One σ bond and two π bonds to carbon-2 (the triple bond)

Total: 2 σ bonds → steric number = 2 → spsp hybridization.

2. Carbon-2 (the internal alkyne carbon, ≡C−C\ce{≡C-C})

This carbon forms:

  • One σ bond and two π bonds to carbon-1
  • One σ bond to carbon-3

Total: 2 σ bonds → steric number = 2 → spsp hybridization.

3. Carbon-3 (the first carbonyl carbon, −C(=O)X−\ce{-C(=O)-})

This carbon forms:

  • One σ bond to carbon-2
  • One σ bond and one π bond to oxygen (the C=O\ce{C=O} double bond)
  • One σ bond to carbon-4

Total: 3 σ bonds → steric number = 3 → sp2sp^2 hybridization.

4. Carbon-4 (the methylene carbon, −CHX2−\ce{-CH2-})

This carbon forms:

  • Two σ bonds to hydrogen atoms
  • One σ bond to carbon-3
  • One σ bond to carbon-5

Total: 4 σ bonds → steric number = 4 → sp3sp^3 hybridization.

5. Carbon-5 (the carboxyl carbon, −COOH\ce{-COOH})

This carbon forms:

  • One σ bond to carbon-4
  • One σ bond and one π bond to the carbonyl oxygen (the C=O\ce{C=O} double bond)
  • One σ bond to the hydroxyl oxygen

Total: 3 σ bonds → steric number = 3 → sp2sp^2 hybridization.

Tip

A quick rule: count the number of atoms directly bonded to the carbon. If it's 4, check for multiple bonds. Each multiple bond reduces the steric number but adds π bonds. …

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