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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Start your 14-day free trial to unlock the full solution →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 , , and hybridization depending on their bonding environment.
Why hybridization matters
Hybridization explains the geometry and bonding capacity of carbon atoms. A carbon atom mixes its and 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:
- : four single bonds → tetrahedral
- : three regions (one may be a double bond) → trigonal planar
- : 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:
Step-by-step analysis
1. Carbon-1 (the terminal alkyne carbon, )
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 → hybridization.
2. Carbon-2 (the internal alkyne carbon, )
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 → hybridization.
3. Carbon-3 (the first carbonyl carbon, )
This carbon forms:
- One σ bond to carbon-2
- One σ bond and one π bond to oxygen (the double bond)
- One σ bond to carbon-4
Total: 3 σ bonds → steric number = 3 → hybridization.
4. Carbon-4 (the methylene carbon, )
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 → hybridization.
5. Carbon-5 (the carboxyl carbon, )
This carbon forms:
- One σ bond to carbon-4
- One σ bond and one π bond to the carbonyl oxygen (the double bond)
- One σ bond to the hydroxyl oxygen
Total: 3 σ bonds → steric number = 3 → hybridization.
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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