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Brown's chemistry notes on atomic and electron structure
6.
Which electron
arrangements are stable and which are not and why? Considering electronically
stable or unstable atoms or ions
[Author
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Dr Phil Brown GRIC, PhD:
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why do we have
stable or unstable electron arrangements
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INDEX of atomic structure exam
revision notes
4. Which electron arrangements are
stable
and which are not?
Both atoms and ions are considered
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WHY ARE SOME ELECTRON ARRANGEMENTS ARE MORE
STABLE THAN OTHERS?
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WHICH ELECTRON ARRANGEMENTS ARE THE MOST
STABLE AND WHICH ELECTRON ARRANGEMENTS THE LEAST STABLE?
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HOW DO ELECTRON ARRANGEMENTS RELATE TO THE
REACTIVITY OF CHEMICAL ELEMENTS?
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When an atom has its outer
level full to the maximum number of electrons allowed, the atom is particularly
stable electronically and very unreactive.
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The most
electronically stable atoms have a full outer shell
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This is the situation
with the Noble Gases: He is [2], neon is [2,8]
and argon is [2,8,8] etc.
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There atoms are the most
reluctant to lose, share or gain electrons in any sort of chemical
interaction because they are so electronically stable.
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For all elements most
of their chemistry is about what outer electrons do or don't!
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[2], [2,8]
and [2,8,8] etc. are known as the 'stable Noble Gas
arrangements', and the atoms of other elements try to attain
this sort of electron structure when reacting to become more stable.
-
More details on
Electron configuration notes for
Advanced Level Chemistry Students
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The most reactive metals
have just one outer electron.
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These are the Group
1 Alkali Metals, lithium [2,1], sodium [2,8,1],
potassium [2,8,8,1]
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With one outer shell
electron, they have one more electron than a stable Noble Gas
electron structure.
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So, they readily lose the
outer electron when they chemically react to try to form (if
possible) one of the
stable Noble Gas electron arrangements – which is why atoms react in
the first place!
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When Group 1 Alkali Metal atoms lose an electron they form a positive ion because
the positive proton number doesn't change, but with one negative
electron lost, there is a surplus of one + charge e.g.
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sodium atom ==>
sodium ion
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Na ==> Na+
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is [2.8.1] ==> [2.8] electronically
more stable
-
in fundamental particles
[11p + 11e] ==> [11p + 10e]
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IONS are atoms
or group of atoms which carry an overall electrical charge i.e.
not electrically neutral.
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The most reactive
non–metals are just one electron short of a full outer shell.
-
These are the Group 7
Halogens, namely fluorine [2,7], chlorine [2,8,7] etc.
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These atoms are one
electron short of a stable full outer shell and seek an 8th outer
electron to become electronically stable – yet again, this is why
atoms react!
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They readily gain an
outer electron, when they chemically react, to form one of the
stable Noble Gas electron arrangements either by sharing electrons
(in a covalent bond) or by electron transfer forming a singly
charged negative ion (ionic bonding) e.g.
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chlorine atom ==>
chloride ion
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Cl ==> Cl–
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is [2.8.7] ==> [2.8.8]
electronically more stable
-
in fundamental particles
[17p + 17e] ==> [17p + 18e]
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the positive
proton number of Cl doesn't change but the chloride ion carries one
extra negative electron to give the surplus charge of a single – on
the ion.
-
For more on electron
structure and chemical changes and compound formation see ...
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and for more on metal and
non–metal reactivity see
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INDEX of atomic structure exam
revision notes
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