Electron Groups (EGs) shape 2 Total smallest 90° 120° 180° number angle of bonded atoms shape (B.P) + lone pairs (L.P) on 3. smallest centre 90° 109° 120° angle atom Discuss with your neighbours and provide answers to the following questions. Circle the words that make each statement correct. 1) Each row represents different possible arrangements of that number of electron groups (EG). In each structure, the EGs get [ closer together / further apart ] and the angles between them get [smaller / larger ]. 2) The observed structures adopted by real molecules are those in the thick borders. These structure have the [ smallest / largest ] angles and the EGs are the [ closest together I furthest apart ]. 3) The preferred structure is adopted because this [ minimizes / maximizes ] the [ repulsion / attraction ] felt between all EGs. (Clue: what does VSEPR stand for?)
Electron Groups (EGs) shape 2 Total smallest 90° 120° 180° number angle of bonded atoms shape (B.P) + lone pairs (L.P) on 3. smallest centre 90° 109° 120° angle atom Discuss with your neighbours and provide answers to the following questions. Circle the words that make each statement correct. 1) Each row represents different possible arrangements of that number of electron groups (EG). In each structure, the EGs get [ closer together / further apart ] and the angles between them get [smaller / larger ]. 2) The observed structures adopted by real molecules are those in the thick borders. These structure have the [ smallest / largest ] angles and the EGs are the [ closest together I furthest apart ]. 3) The preferred structure is adopted because this [ minimizes / maximizes ] the [ repulsion / attraction ] felt between all EGs. (Clue: what does VSEPR stand for?)
Chapter8: Bonding: General Concepts
Section: Chapter Questions
Problem 7RQ: Define formal charge and explain how to calculate it. What is the purpose of the formal charge?...
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Question
![Electron
Groups
shape
(EGs)
2.
Total
smallest
90°
120°
180°
number
angle
of bonded
atoms
shape
(B.P) +
lone pairs
(L.P) on
smallest
centre
90°
109°
120°
angle
atom
Discuss with your neighbours and provide answers to the following questions. Circle the words
that make each statement correct.
1) Each row represents different possible arrangements of that number of electron groups (EG).
In each structure, the EGs get [ closer together / further apart ] and the angles between them
get [smaller /larger ].
2) The observed structures adopted by real molecules are those in the thick borders.
These structure have the [ smallest / largest ] angles and the EGs are the [ closest together
| furthest apart ].
3) The preferred structure is adopted because this [ minimizes / maximizes ] the [ repulsion /
attraction ] felt between all EGs.
(Clue: what does VSEPR stand for?)
3.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F655bd7d6-0468-4553-bb81-2f5d532a8e20%2Fa160d6b1-9524-4282-989c-d19e91846be5%2Fflro4h_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Electron
Groups
shape
(EGs)
2.
Total
smallest
90°
120°
180°
number
angle
of bonded
atoms
shape
(B.P) +
lone pairs
(L.P) on
smallest
centre
90°
109°
120°
angle
atom
Discuss with your neighbours and provide answers to the following questions. Circle the words
that make each statement correct.
1) Each row represents different possible arrangements of that number of electron groups (EG).
In each structure, the EGs get [ closer together / further apart ] and the angles between them
get [smaller /larger ].
2) The observed structures adopted by real molecules are those in the thick borders.
These structure have the [ smallest / largest ] angles and the EGs are the [ closest together
| furthest apart ].
3) The preferred structure is adopted because this [ minimizes / maximizes ] the [ repulsion /
attraction ] felt between all EGs.
(Clue: what does VSEPR stand for?)
3.
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