WorksheetsMolecular Geometry Quiz
Total questions: 50
Worksheet time: 34mins
Hybridization of an electron group of 2
(a)
Hybridization of an electron group of 3
(a)
Hybridization of an electron group of 4
(a)
Hybridization of an electron group of 5
(a)
Hybridization of an electron group of 6
(a)
If the # of Electron Groups is 2 and the # of Lone Pairs is 0, what is the Electron Pair aggrangement?
Bent
T-Structure
Linear
Octahedral
If the # of Electron Groups is 3 and the # of Lone Pairs is 0, what is the Electron Pair aggrangement?
Linear
Trigonal Planar
Trigonal Pyramid
See-saw
If the # of Electron Groups is 3 and the # of Lone Pairs is 1, what is the Electron Pair aggrangement?
Octahedral
Linear
Bent
T- Structure
If the # of Electron Groups is 4 and the # of Lone Pairs is 0, what is the Electron Pair aggrangement?
Trigonal Bipyramidal
Bent
Tetrahedral
If the # of Electron Groups is 4 and the # of Lone Pairs is 1, what is the Electron Pair aggrangement?
Trigonal Pyramid
See-saw
Linear
If the # of Electron Groups is 4 and the # of Lone Pairs is 2, what is the Electron Pair aggrangement?
Square Planar
Bent
T-Structure
Octahedral
If the # of Electron Groups is 5 and the # of Lone Pairs is 0, what is the Electron Pair aggrangement?
Tetrahedral
Trigonal Bipyramidal
Trigonal Planar
Bent
If the # of Electron Groups is 5 and the # of Lone Pairs is 1, what is the Electron Pair aggrangement?
Square Pyramidal
T-Structure
See-Saw
If the # of Electron Groups is 5 and the # of Lone Pairs is 2, what is the Electron Pair aggrangement?
Square Planar
Square Pyramidal
T-Structure
Octahedral
If the # of Electron Groups is 5 and the # of Lone Pairs is 3, what is the Electron Pair aggrangement?
Trigonal Planar
Linear
See-saw
If the # of Electron Groups is 6 and the # of Lone Pairs is 0, what is the Electron Pair aggrangement?
Bent
Octahedral
Trigonal Planar
If the # of Electron Groups is 6 and the # of Lone Pairs is 1, what is the Electron Pair aggrangement?
Square Planar
Square Pyramidal
If the # of Electron Groups is 6 and the # of Lone Pairs is 2, what is the Electron Pair aggrangement?
Bent
Octahedral
Square Planar
Label
See-Saw
Linear
Bent
T-Structure
Label
Linear
Trigonal Bipyramidal
Trigonal Planar
Label
See-Saw
Trigonal Planar
Bent
Linear
Label
Bent
Tetrahedral
Label
Trigonal Bipyramidal
Square Planar
Trigonal Pyramid
Bent
Label
Trigonal Bipyramidal
Tetrahedral
Label
Linear
See-Saw
T-Structure
Bent
Label
Octahedral
T-Structure
Square Pyramidal
Label
Square Pyramidal
Octahedral
Label
T-Structure
Bent
See-Saw
Square Pyramidal
Label
Linear
Square Planar
Bent
What two Electron groups and lone pairs can create BENT arrangements
# of Electron Groups: 3
# of Lone Pairs: 1
# of Electron Groups: 5
# of Lone Pairs: 2
# of Electron Groups: 4
# of Lone Pairs: 2
# of Electron Groups: 6
# of Lone Pairs: 1
# of Electron Groups: 2
# of Lone Pairs: 0
What two Electron Groups and Lone Pairs can create LINEAR arrangements
# of Electron Groups: 2
# of Lone Pairs: 0
# of Electron Groups: 5
# of Lone Pairs: 3
# of Electron Groups: 6
# of Lone Pairs: 1
# of Electron Groups: 4
# of Lone Pairs: 2
Bond angles of LInear Arrangements
(a)
Bond angles of Trigonal Planar Arrangements
(a)
Bond angles of Bent Arrangements
(a)
Bond angles of Tetrahedral Arrangements
(a)
Bond angles of Trigonal Pyramid Arrangements
(a)
Bond angles of Trigonal Bipyramidal Arrangements
(a)
Bond angles of See-Saw Arrangements
(a)
Bond angles of T-Structure Arrangements
(a)
Bond angles of Octahedral Arrangements
(a)
Bond angles of Square Pyramidal Arrangements
(a)
Bond angles of Square Planar Arrangements
(a)
How do you find the # of Electron Groups
# of Valence Electrons
# of Bonded Electrons + # of Lone Pairs
VSEPR
Valence, Shell, Electron, Proton, Repelling
Valence, Shell, Energy, Pair, Repuslion
Valence, Shell, Electron, Pair, Repulsion
Exceptions to the Octect Rule
Boron (6 Valence electrons)
3p Elements can do 8 or more
There aren't any
Hydrogen
+ means you _________ an electron while - means you ________ an electron
Lost, Gained
Gained, Lost
Had, Loses
This doesn't exist
Gained= ________
Subtraction
Addition
Lost = ____________
Subtraction
Addition
Equation for Formal Charge
Valence Electron -Non-bonded Electron -1/2(Bonded Electron)
There isn't one
Valence Electron x Non-Bonded Electron x 1/2(Bonded Electron)
Resonance
More than one valid Lewis Structure is possible for a given molecule
Difference between the number of valence electrons on the free atom
Can be used to decide on most likely Lewis Structure
