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Electron Configurations

Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

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Page 1: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Electron Configurations

Page 2: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Bohr Model IssuesWhile the Bohr Model

correctly positions electrons into energy levels, the true locations of electrons aren’t shown.Instead of electrons

following a set circular path around the nucleus, they are randomly found in regions of space we call orbitals.

Page 3: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Quantum Mechanical

ModelThis model uses probability functions to calculate an area of space that takes a specific shape around the nucleus.

The orbital is the region where these electrons are found approximately 90% of the time.

Page 4: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Quantum NumbersPrincipal Quantum

Numbers:Show relative sizes and energy of orbital sublevels

n = 1 (1st level)

n = 2 (2nd level)

n = 3 (3rd level)n = 4 (4th level)

Page 5: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Identifying nWhat is the principal energy level for the outermost electron in the following element?

Page 6: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Identifying nWhat is the principal energy level for the outermost electron in the following element?

Page 7: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Identifying nWhat is the principal energy level for the outermost electron in the following element?

Page 8: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Orbital BasicsDifferent orbitals have different shapes and sizes.

s p d f

Additional shapes are possible for orbitals in the same energy sublevel.

Page 9: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Energy SublevelsThere is a pattern to the

location where the electrons are found on the periodic table.

Page 10: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Orbital SublevelsIn which orbital sublevel

would you find the final electron for the atom below?

A) 4sB) 3sC) 3pD) 2p

Page 11: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Orbital SublevelsIn which orbital sublevel

would you find the final electron for the atom below?

A) 2sB) 3sC) 3pD) 4p

Page 12: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Orbital SublevelsIn which orbital sublevel

would you find the final electron for the atom below?

A) 4dB) 4sC) 3dD) 4p

Page 13: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Orbital SublevelsIn which orbital sublevel

would you find the final electron for the atom below?

A) 5fB) 5dC) 7fD) 7s

Page 14: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Energy Sublevels

The type of orbital being filled determines the number of orbitals available in a sublevel.

s: only 1 orbital per sublevelp: 3 orbitals per subleveld: 5 orbitals per sublevelf: 7 orbitals per sublevel

Once an orbital sublevel is filled, the next electron is placed in the next sublevel up.

Page 15: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Electron Filling Principles1) The Aufbau Principle:

an electron will occupy the lowest energy position possible (Think 2-8-8 Rule)

Page 16: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Electron Filling Principles2) Pauli Exclusion Principle:

A single orbital can hold at most 2 electrons (with opposite spin).

3) Hund’s Rule:An electron will fill an unoccupied orbital in an energy sublevel before sharing an orbital with another electron.

Page 17: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Orbital DiagramsOrbital diagrams use the electron filling principles to show the number of orbitals that are filled, partially filled, or empty.

Arrows represent electrons with up or down spin in an orbital.

Oxygen1s 2s 2p

Page 18: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Orbital Diagram PracticeTrue or False:

the correct orbital diagram for sulfur is shown below

Page 19: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Orbital Diagram PracticeTrue or False:

the correct orbital diagram for vanadium is shown below

Page 20: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Orbital Diagram PracticeTrue or False:

the correct orbital diagram for copper is shown below

Page 21: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

An Easier Way…You’ll notice that if you show every electron being filled, larger atoms would take a very long time to write.We have electron

configurations to help simplify that process.

Electron configurations abbreviate an orbital sublevel with the sublevel-type-number notation.

2p4

Page 22: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Electron ConfigurationsFull electron configurations

show all orbital sublevels in the order the electrons are filled up.

Shortened (noble gas) configurations start with the last noble gas electron filled and then the remaining electrons.

1s22s22p63s2

3p3

[Ne]3s23p4

Page 23: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Electron Configuration

PracticeWhich of the following is the correct electron configuration for oxygen?

A) 1s2 2p6

B) 1s2 2s2 2p4

C) 2p4

Page 24: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Electron Configuration

PracticeWhich of the following is the correct electron configuration for potassium?A) 1s2 2s2 2p6 3s1 B) 1s2 2s2 2p6 3s2 3p7

C) 1s2 2s2 2p6 3s2 3p6 4s1

Page 25: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Electron Configuration

PracticeWhich of the following is the correct electron configuration for molybdenum?A) 1s2 2s2 2p6 3s2 3p6 4s2 3d10 4p6 5s2 4d4 

B) 1s2 2s2 2p6 3s2 3p6 4s2 4d10 4p6 5s2 5d4

C) 1s2 2s2 2p6 3s2 3p6 4s2 3d10 4p6 5s1 4d5  

Page 26: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Short Configuration Practice

Which of the following is the correct short-form electron configuration for silicon?

A) [Ne] 3p2 B) [Ne] 3s2 3p2

C) [Ar] 3s2 3p2

Page 27: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Short Configuration Practice

Which of the following is the correct short-form electron configuration for chromium?

A) [Ar] 4s2 3d4

B) [Kr] 4s2 3d4

C) [Ar] 4s1 3d5

Page 28: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Short Configuration Practice

Which of the following is the correct short-form electron configuration for lead?

A) [Xe]  6s2 4f14 5d10 6p2   

B) [Xe]  6s2 5d10 6p2  

C) [Xe]  6s2 6p2  

Page 29: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Lewis SymbolsLewis symbols show the element symbol surrounded by only electrons that fill the outer s & p orbitals.

Li C Al Cl

Page 30: Electron Configurations. Bohr Model Issues While the Bohr Model correctly positions electrons into energy levels, the true locations of electrons aren’t

Lewis Symbol PracticeDraw the Lewis Symbol for

each of the following atoms:

Ba N

Pb Ag