Step 1: Find the Central Atom Central atom is: S Look your line bond structure on page 1. :0 - 5=0 Step 3: Choose the ABE classification Circle the correct AB, E, notation. Recall, we use (A) to represent the central atom, (B) to represent the number of atoms bonded to the central atom, and (E) to represent the number of lone pairs AB₁E3 AB₁E₂ AB₁E AB₂E AB₂E2 AB₂ AB₂E AB3 AB4 Step 5: Use the Molecular Shape table from your notes to draw the ball and stick representation O O Step 2: Count number of atoms bonded to the central atom (B) # of atoms bonded to central atom = B = 2 Count number of lone pairs on the central atom (E) # of lone pairs on central atom = E= |___ Step 4: Use the Molecular Shape Table from your notes to select the molecular shape and bond angles. Bent Molecular Shape=_ Bond angles = 120⁰ Step 6: Determine Polarity Is the central atom surrounded by identical electron groups? Circle one: yes no If the answer was yes, then the molecule is nonpolar. If the answer is no, then the molecule is polar. Is the molecule polar? Circle one: yes no 24

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Chapter1: Chemical Foundations
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Molecular Shape of SO2
(1) sulfur central atom A
(2) Oxygen B (atom surrounding central atom)
(1) sulfur
E (lone pair central atom)
A, B₂ E₁=AB2E
Step 1: Find the Central Atom
Central atom is:
Look your line bond structure on
page 1.
ee
80-5=0
AB₂E
Step 3: Choose the ABE classification
Circle the correct AB, E, notation.
Recall, we use (A) to represent the
central atom, (B) to represent the
number of atoms bonded to the central
atom, and (E) to represent the number
of lone pairs
AB₁E3 AB₁E₂ AB₁E
AB₂E
AB₂E2 AB₂
00
AB3
AB4
Step 5: Use the Molecular Shape
table from your notes to draw the
ball and stick representation
Step 2:
Count number of atoms bonded to the central
atom (B)
# of atoms bonded to central atom = B =
Count number of lone pairs on the
central atom (E)
# of lone pairs on central atom=E=
·L
Step 4: Use the Molecular Shape Table from
your notes to select the molecular shape and
bond angles.
Molecular Shape- Bent
Bond angles = 120⁰
Step 6: Determine Polarity
Is the central atom surrounded by identical
electron groups?
Circle one: yes
no
If the answer was yes, then the molecule is
nonpolar. If the answer is no, then the molecule
is polar.
Is the molecule polar?
Circle one: yes
no
24
Transcribed Image Text:Molecular Shape of SO2 (1) sulfur central atom A (2) Oxygen B (atom surrounding central atom) (1) sulfur E (lone pair central atom) A, B₂ E₁=AB2E Step 1: Find the Central Atom Central atom is: Look your line bond structure on page 1. ee 80-5=0 AB₂E Step 3: Choose the ABE classification Circle the correct AB, E, notation. Recall, we use (A) to represent the central atom, (B) to represent the number of atoms bonded to the central atom, and (E) to represent the number of lone pairs AB₁E3 AB₁E₂ AB₁E AB₂E AB₂E2 AB₂ 00 AB3 AB4 Step 5: Use the Molecular Shape table from your notes to draw the ball and stick representation Step 2: Count number of atoms bonded to the central atom (B) # of atoms bonded to central atom = B = Count number of lone pairs on the central atom (E) # of lone pairs on central atom=E= ·L Step 4: Use the Molecular Shape Table from your notes to select the molecular shape and bond angles. Molecular Shape- Bent Bond angles = 120⁰ Step 6: Determine Polarity Is the central atom surrounded by identical electron groups? Circle one: yes no If the answer was yes, then the molecule is nonpolar. If the answer is no, then the molecule is polar. Is the molecule polar? Circle one: yes no 24
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