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name lewis structures worksheet total the valence electrons, then use l…

Question

name
lewis structures worksheet
total the valence electrons, then use lewis structures to show the covalent bonding in the following:
cbr₄
pcl₃
ocl₂
n₂
c₂h₄

Explanation:

Step1: Determine valence electrons for each atom

  • For \(OCl_{2}\):
  • Oxygen (\(O\)) has \(6\) valence electrons (\(Group - 6A\)).
  • Chlorine (\(Cl\)) has \(7\) valence electrons (\(Group - 7A\)).
  • Total valence electrons \(=6+(2\times7)=6 + 14=20\).
  • For \(N_{2}\):
  • Nitrogen (\(N\)) has \(5\) valence electrons (\(Group - 5A\)).
  • Total valence electrons \(=2\times5 = 10\).
  • For \(C_{2}H_{4}\):
  • Carbon (\(C\)) has \(4\) valence electrons (\(Group - 4A\)).
  • Hydrogen (\(H\)) has \(1\) valence electron (\(Group - 1A\)).
  • Total valence electrons \(=(2\times4)+(4\times1)=8 + 4=12\).

Step2: Draw Lewis structures

  • For \(OCl_{2}\):
  • Oxygen is the central atom. It forms single bonds with two chlorine atoms.
  • After bonding, oxygen has two lone pairs and each chlorine has three lone pairs. Lewis structure: \(\ce{:\ddot{O} - Cl:}\) (with appropriate lone pairs on each atom).
  • For \(N_{2}\):
  • Nitrogen atoms form a triple bond. Each nitrogen has one lone pair. Lewis structure: \(\ce{:N#N:}\).
  • For \(C_{2}H_{4}\):
  • Carbon atoms form a double bond. Each carbon forms single bonds with two hydrogen atoms. Lewis structure: \(\ce{H_{2}C=CH_{2}}\) (with appropriate electron distribution).

Answer:

FormulaTotal Valence \(e^{-}\)Lewis Structure
\(N_{2}\)\(10\)\(\ce{:N#N:}\)
\(C_{2}H_{4}\)\(12\)\(\ce{H_{2}C=CH_{2}}\)