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How to predict the number of valence electrons for an atom.

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Presentation on theme: "How to predict the number of valence electrons for an atom."— Presentation transcript:

1 How to predict the number of valence electrons for an atom.

2 Introduction The valence electrons (VE) are the electrons in the outer shell of an atom.  The valence electrons are the ones involved in forming bonds to adjacent atoms.  The number of VE is important for determining the number of bonds an atom will form, the number of unpaired electrons, and an atom’s formal charge.

3 How to: For neutral atoms, the number of valence electrons is equal to the atom’s main group number.   number of valence electrons = main group number (neutral atoms) The main group number for an element can be found from its column on the periodic table. 

4 Example Carbon is in group 4 and has 4 valence electrons.
Oxygen is in group 6 and has 6 valence electrons.

5 Charged Atoms There is a deviation from the normal number of valence electrons.  The charge on an atom tells you how much of a deviation there is from an element’s normal valence number.  number of valence electrons  =  (main group number) - (charge)     (charged atoms)

6 Charged Atoms Electrons are negatively charged.
A negatively charged atom means that there are more electrons than the normal valence number.  A positively charged atom has fewer electrons than the normal valence number.

7 Example Ca⁺² has zero valence electrons.
Ca normally has 2 valence electrons but with a ⁺² charge it is missing two electrons.  F⁻¹ has 8 valence electrons.  S⁻² has 8 valence electrons.

8 Quiz How many valence electrons does a neutral hydrogen have?
How many valence electrons does a carbon with a +1 charge have? How many valence electrons does an aluminum with a -1 charge have? How many valence electrons does a chlorine with a +1 charge have? How many valence electrons does a lithium with a +1 charge have?

9 Answers H = 1 Cl⁺¹ = 6 C⁺¹ = 3 Li⁺¹ = 0 Al⁻¹ = 4

10 Reading Lewis Diagrams
Lewis electron dot diagrams use dots to visually represent the valence electrons of an atom.

11 Example: Oxygen = 6 valence electrons Fluorine = 7 valence electrons
Nitrogen = 5 valence electrons


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