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Determination of the figure of Lewis of an
atom from the atomic number
 It is the representation of an atom
surrounded by its electrons of valence.
 The valence electrons are those that are
in the last level represent in the
electronically configuration.
 The atom is represented with the symbol
(just as in the periodic table) and the
electrons with points or crossings.
The steps
 First the electronic configuration of the
element is determined.
 The number of electrons in the last level
is identified (valence electrons).
 These electrons are drawn around the
symbol of the element (as points or
crossings).
 In each one of the four sides of the
symbol two electrons can be put at the
most.
 First it is tried to fill all the sides with an
electron and later pairs form.
 First the electronic configuration of the
element is determined that is desired to
represent.
In the case of hydrogen it will be:
1H = 1S1
Atomic it just has one valence electron
number
 The number of electrons of the last level
is identified.
The valence electrons are drawn around the
symbol of the element
Hydrogen
Symbol single valence electron
H *
Example:Boron
Electronic configuration :
5B=1S2,2S2,2P1
Last level Valence Electrons
Electrons occupy
* the greaternumber
B* possible sides
*
Example: Oxygen.
Configuration:
8 O = 1S2,2S2,2P4
last level valence electrons
Oxygen Symbol
Paired Electrons
..
. O .
..
Dispaired Electron
Maximum 2 electrons by side Total of 6 points then (so that they
represent orbital) that is its valence
Example: Br.
Configuration.
Number valence electrons: 7
35 Br =1S2,2S2,2P6,3S2,3P6,4S2,3d10,4P5
Last level It is not part of last level
Bromine
electronic Pairs
.. Dispaired Electron
:Br .
..

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Determine Lewis Structure from Atomic Number

  • 1. Determination of the figure of Lewis of an atom from the atomic number
  • 2.  It is the representation of an atom surrounded by its electrons of valence.  The valence electrons are those that are in the last level represent in the electronically configuration.  The atom is represented with the symbol (just as in the periodic table) and the electrons with points or crossings.
  • 3. The steps  First the electronic configuration of the element is determined.  The number of electrons in the last level is identified (valence electrons).  These electrons are drawn around the symbol of the element (as points or crossings).  In each one of the four sides of the symbol two electrons can be put at the most.  First it is tried to fill all the sides with an electron and later pairs form.
  • 4.  First the electronic configuration of the element is determined that is desired to represent. In the case of hydrogen it will be: 1H = 1S1 Atomic it just has one valence electron number  The number of electrons of the last level is identified.
  • 5. The valence electrons are drawn around the symbol of the element Hydrogen Symbol single valence electron H *
  • 6. Example:Boron Electronic configuration : 5B=1S2,2S2,2P1 Last level Valence Electrons Electrons occupy * the greaternumber B* possible sides *
  • 7. Example: Oxygen. Configuration: 8 O = 1S2,2S2,2P4 last level valence electrons
  • 8. Oxygen Symbol Paired Electrons .. . O . .. Dispaired Electron Maximum 2 electrons by side Total of 6 points then (so that they represent orbital) that is its valence
  • 9. Example: Br. Configuration. Number valence electrons: 7 35 Br =1S2,2S2,2P6,3S2,3P6,4S2,3d10,4P5 Last level It is not part of last level