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Lesson 15 Part II: Ionic Bonding & Intro to Lewis Structures

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Page 1: Lesson 15 Part II: Ionic Bonding & Intro to Lewis Structures › ... › 15_ionic_bonding_part_… · Ionic Bonding & Intro to Lewis Structures. Do Now: Follow all instructions to

Lesson 15 Part II:

Ionic Bonding &

Intro to Lewis Structures

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Do Now: Follow all instructions to earn 5 points for participation grade.

• Take your CJs out – write info down from board.

• Keep CJs out and open on desk.

• Take out your HW – boxes 4 and 5 in Lesson 15 Part II notes.

• Answer the following question(s) in a box on your ‘do now’ sheet:

1. Brainstorm a list of things you know about polyatomic ions.

2. What is this separation technique shown below? What kind of mixtures are

separated with this technique? How?

Date: 1-10-18

7B, 7Pb

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Check your HW – Boxes 4 & 5 in Lesson 15 Part II notes

2(+1) + 1(-2) = 0

1(+2) + 1(-2) = 0

3(+2) + 2(-3) = 0

1(+2) + 2(-1) = 0

Gold (I) sulfide

Mercury (II) sulfate

Manganese (II) phosphate

Cobalt (II) bromite

Ammonium fluoride

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CaCO3

Mg(NO3)2

(NH4)2SO4

Na2SO4

Fe(OH)3

Cr3(PO4)2

NaClO

NaClO4

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Review – halogen polyatomic ions

ClO-

hypochloriteClO2

-

chlorite

ClO3-

chlorate*most common

ClO4-

perchlorate

One MORE

oxygen

One LESS

oxygenOne LESS

oxygen

base name

for chlorine

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Review – halogen polyatomic ions

F Cl Br I

One oxygen

“Hypo___ite”

Two oxygens

“___ite”

Three oxygens

“___ate”

Four oxygens

“per___ate”

ClO-

hypochlorite

ClO2-

chlorite

ClO3-

chlorate

ClO4-

perchlorate

FO-

hypofluorite

FO2-

fluorite

FO3-

fluorate

FO4-

perfluorate

BrO-

hypobromite

BrO2-

bromite

BrO3-

bromate

BrO4-

perbromate

IO-

hypoiodite

IO2-

iodite

IO3-

iodate

IO4-

periodate

All have an

overall charge

of 1-

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Review “Practice with Orbital Diagrams”:

Turn to p.5 in Lesson 15 Part II notes

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Review “Practice with Orbital Diagrams”:

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Review “Practice with Orbital Diagrams”:

Be will lose these

valence electrons

How many fluorine atoms

will accept Be’s valence

electrons?

F has one spot to fill

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2s now empty.

1s2 is considered a full outer shell.

Two fluorine atoms each accepted one

electron. 2s22p6 is a full outer shell.

Review “Practice with Orbital Diagrams”: BeF2

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Review “Practice with Orbital Diagrams”:

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Review “Practice with Orbital Diagrams”:

Li will lose this

valence electron

O has two spots to fill

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Review “Practice with Orbital Diagrams”:

2s now empty.

1s2 is considered a full outer shell.

One oxygen accepted two electrons, one

from each Li atom.

2s22p6 is a full outer shell.

Li2O

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Intro to Lewis Dot Symbols:

Guidelines:

- dots are used to represent electrons

- only valence electrons are included

- cations no dots & and positive charge

- anions will have a filled valence shell (8) & a negative charge

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STEPS:

1. Find the number of valence electrons (A group elements = group number)

2. Write the element symbol.

3. Draw dots starting at the top of the symbol and continue clockwise.

Intro to Lewis Dot Symbols:

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EXAMPLES

1.Tin

Group # ____ How many valence electrons? ______4A 4

Sn

Now move

clockwise

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EXAMPLES

2. Sulfur

Group # ____ How many valence electrons? ______6A 6

S

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Cu Br B

Ne H Se

PRACTICE:

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Cu Br BTransition metals have 1

or 2 valence electrons

PRACTICE:

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Cu Br B

Ne H Se

PRACTICE:

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Lewis Structures are also used to show ions and ionic compound

formation.

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Lewis Structures are also used to show ions and ionic compound

formation.

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Lewis Structures are also used to show ions and ionic compound

formation.

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Lewis Structures are also used to show ions and ionic compound

formation.

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Ffluorine

Ffluoride

-gains an

electron

#1

8 valence electrons =

full outer shell

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Nasodium

Nasodium ion

+loses an

electron

#2

Cation has a full outer shell – we

don’t draw the electrons for cations

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Ooxygen

Ooxide

2-gains two

electrons

#3

8 valence electrons =

full outer shell

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PRACTICE:

Selenide Beryllium ion Barium ion

Potassium ion Nitride Phosphide

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PRACTICE:

Selenide

Se2-

Beryllium ion

Be2+

Barium ion

Ba2+

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PRACTICE:

Selenide

Se2-

Beryllium ion

Be2+

Barium ion

Ba2+

Potassium ion

K

Nitride

N

Phosphide

P+ 3- 3-

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EXAMPLE: Draw how an ionic compound would from between Li and O to

form Li2O

Each Li atom will

donate their one

valence electron.

Li

Li

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EXAMPLE: Draw how an ionic compound would from between Li and O to

form Li2O

Oxygen needs two

electrons to have

a full outer shell

Each Li atom will

donate their one

valence electron.

Li

Li

O

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EXAMPLE: Draw how an ionic compound would from between Li and O to

form Li2O

Oxygen needs two

electrons to have

a full outer shell

Each Li atom will

donate their one

valence electron.

Li

Li

O1+

1+

2-

Li1+

Li1+

O....

.... 2-

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#2 PRACTICE:

Draw how an ionic compound would from between Ca and F to form CaF2

Ca F2+

-

Ca2+

F....

.... -

F-

F.... .... -

Alkaline earth

ion

Fluoride ion

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#3 PRACTICE:

Draw how an ionic compound would from between Na and Cl to form NaCl

Na Cl1+

-

Na1+

Cl....

....

-

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Homework: Parts I, II, III under “Review & Practice” in Lesson 15 Part 2.

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Element # of electron

shells

Group

number

# of valence

electrons

Predict the ion it

will form:

Metal, nonmetal,

metalloid?

Na 3 1A 1 Na+ metal

K

Sr

B

P

Cl

Kr