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Zorluk: ZorIonic (Electrovalent) Bonding and Properties of Ionic Compounds

An element MM forms a stable electrovalent chloride with the formula MCl2MCl_2. If the dipositive cation M2+M^{2+} has the electronic configuration 1s22s22p63s23p61s^2 2s^2 2p^6 3s^2 3p^6, which of the following statements correctly explains the electrical conductivity and lattice properties of MCl2MCl_2?

  1. It does not conduct electricity in the solid state because its ions are held in fixed positions, but conducts in the molten state due to mobile M2+M^{2+} and ClCl^- ions.Cevap
  2. B
    It conducts electricity in both the solid and molten states because delocalized valence electrons move freely through the ionic crystal lattice.
  3. C
    It has a low melting point and conducts electricity in the solid state because M2+M^{2+} cations migrate easily between lattice nodes.
  4. D
    It conducts electricity when molten because the neutral compound dissociates into free electrons and uncharged elemental atoms.

Cevap

The compound does not conduct electricity in the solid state because its ions are held in fixed positions within the lattice, but conducts in the molten state due to mobile M2+M^{2+} and ClCl^- ions.
In giant electrovalent (ionic) lattices like CaCl2CaCl_2, ions are immobilized in fixed positions in the solid state, making the solid a non-conductor. Upon melting, the electrostatic lattice forces are overcome, producing free mobile M2+M^{2+} and ClCl^- ions that conduct electricity.

Adım Adım Çözüm

1
Identify the element and ion structure
The ion M2+M^{2+} has 18 electrons (1s22s22p63s23p61s^2 2s^2 2p^6 3s^2 3p^6), corresponding to a neutral calcium atom (CaCa, atomic number 20). The compound formed is calcium chloride (CaCl2CaCl_2).
Determining the electronic structure confirms MCl2MCl_2 is a typical giant ionic (electrovalent) lattice.
2
Analyze solid-state properties
In the solid state, M2+M^{2+} cations and ClCl^- anions are locked in a rigid three-dimensional crystal lattice by strong omnidirectional electrostatic forces of attraction. Because the ions cannot move, the solid is an electrical insulator.
Conduction of electricity requires mobile charge carriers.
3
Analyze molten-state properties
When heated to its high melting point, thermal energy overcomes the lattice energy, allowing the M2+M^{2+} and ClCl^- ions to move freely and carry electrical current.
Liquid ionic compounds conduct electricity via migration of ions toward oppositely charged electrodes.

Anahtar Kavram

Ionic Lattice Properties and Conduction Mechanism
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