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Metallic bonding and structure L.O.: Describe metallic bonding as the attraction of positive ions to delocalised electrons. Describe giant metallic lattices.
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Metallic bonding and structure L.O.: Describe metallic bonding as the attraction of positive ions to delocalised electrons. Describe giant metallic.

Jan 01, 2016

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Page 1: Metallic bonding and structure L.O.:  Describe metallic bonding as the attraction of positive ions to delocalised electrons.  Describe giant metallic.

Metallic bonding and structure

L.O.:Describe metallic bonding as the attraction of positive ions to delocalised electrons.

Describe giant metallic lattices.

Page 2: Metallic bonding and structure L.O.:  Describe metallic bonding as the attraction of positive ions to delocalised electrons.  Describe giant metallic.

The ‘sea of electrons’

Page 3: Metallic bonding and structure L.O.:  Describe metallic bonding as the attraction of positive ions to delocalised electrons.  Describe giant metallic.

Metallic bonding:o atoms are ionisedo Positive ions occupy fixed positions in a lattice.o The outer-shell electrons are delocalised

The metal is held together by the attraction between the positive ions and negative electrons.

Page 4: Metallic bonding and structure L.O.:  Describe metallic bonding as the attraction of positive ions to delocalised electrons.  Describe giant metallic.

Metals have high melting and boiling points. The have good electrical conductivity.

Page 5: Metallic bonding and structure L.O.:  Describe metallic bonding as the attraction of positive ions to delocalised electrons.  Describe giant metallic.

Structure of ionic compounds

L.O.:

Describe structures with ionic bonding as giant ionic lattices.

Page 6: Metallic bonding and structure L.O.:  Describe metallic bonding as the attraction of positive ions to delocalised electrons.  Describe giant metallic.

Sodium chloride ionic lattice

Page 7: Metallic bonding and structure L.O.:  Describe metallic bonding as the attraction of positive ions to delocalised electrons.  Describe giant metallic.

All ionic compounds exist as a giant ionic lattice in the solid state

Page 8: Metallic bonding and structure L.O.:  Describe metallic bonding as the attraction of positive ions to delocalised electrons.  Describe giant metallic.

Why is the mp of MgO higher than the mp of NaCl?

o The greater the charge, the stronger the electrostatic forces between the ions o and the greater the amount of energy required to break up the ionic lattice during melting

Page 9: Metallic bonding and structure L.O.:  Describe metallic bonding as the attraction of positive ions to delocalised electrons.  Describe giant metallic.

Ionic compounds are non-conductors of electricity when they are solids.

Page 10: Metallic bonding and structure L.O.:  Describe metallic bonding as the attraction of positive ions to delocalised electrons.  Describe giant metallic.

Ionic compounds are conductors of electricity when molten or dissolved in water.

Page 11: Metallic bonding and structure L.O.:  Describe metallic bonding as the attraction of positive ions to delocalised electrons.  Describe giant metallic.

Sodium and chloride ions surrounded by water molecules.

Page 12: Metallic bonding and structure L.O.:  Describe metallic bonding as the attraction of positive ions to delocalised electrons.  Describe giant metallic.

• Describe the structures of simple molecular lattices.

• Describe the structures of giant covalent lattices.

• Explain physical properties of covalent compounds.

Week 7

© Pearson Education Ltd 2008This document may have been altered from the original

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Crystal structure of solid iodine

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Different forces in iodine

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Tetrahedral structure

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Hexagonal layer structure

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