Shapes of molecules Flashcards

1
Q

What determines the shape of a molecule or ion?

A

The angles at which bonds between atoms form

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2
Q

What is the name of the theory which dictates the angles at which bonds will form and the sizes of these angles?

A

Valence shell electron repulsion theory

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3
Q

What does valence shell electron repulsion theory state about shapes of molecules or ions?

A

The shape of a molecule/ ion is caused by repulsion between the pairs of electrons (both bond pairs and lone pairs) that surround the central atom
Electron pairs arrange themselves around the central atom so that the repulsion between them is at a minimum

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4
Q

What does valence shell electron repulsion theory state about the size of the bond angles?

A

The amount of repulsion between electrons decrease going down:
Lone pair-lone pair
Lone pair-bond pair
Bond pair-bond pair
So you can find the magnitude of how large the bond angles are based on size of repulsion

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5
Q

A bond pair of electrons

A

When 1 orbital in one atom with 1 electron in it overlaps with another orbital with 1 electron in it = bonded pair
Or if 2 electrons from one orbital and an empty orbital in a dative bond

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6
Q

A lone pair of electrons

A

Electrons in the valence shell of an atom which are not overlapped with the orbital of another atom = not bonded or shared

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7
Q

How to find the shape of a molecule/ion

A

Draw dot and cross diagram and find out how many bond pairs and lone pairs in each one
If unsure if it’s a double bond, treat as though it only has one bonded pair of electrons

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8
Q

Shape and name for:
Bonded pairs = 2
Lone pairs = 0

A

Linear
On a straight line

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9
Q

Linear bond angle

A

180°

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10
Q

Name and shape for:
Bonded pairs = 3
Lone pairs = 0

A

Trigonal planar
A flat triangle shape which lays flat on a surface = 2D

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11
Q

Trigonal planar bond angle

A

120° because there are 3 bonds
And it’s flat so forms circle = 120x3 = 360°

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12
Q

Name and shape for:
Bonded pairs = 4
Lone pairs = 0

A

Tetrahedral
Where 2 bonds are flat on the plane but one goes behind and the other is in front

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13
Q

Tetrahedral bond angle

A

109.5°

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14
Q

Name and shape for:
Bonded pairs = 5
Lone pairs = 0

A

Trigonal bipyramidal

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15
Q

Trigonal bipyramidal bond angle

A

2 angles that are 90°
3 angles that are at 120°
One goes behind the plain the over goes in front

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16
Q

Name and shape for
Bond pairs = 6
Lone pairs = 0

A

Octahedral

17
Q

Octahedral bond angle

A

At 90° and 180°

18
Q

Name and shape for
Bond pairs = 3
Lone pairs = 1

A

Trigonal pyramidal

19
Q

Trigonal pyramidal bond angle

A

107° Because Lone pair–bond pair repulsion is greater than bond pair–bond pair repulsion, so the angle is slightly less than 109.5°

20
Q

Name and shape for
Bonded pairs = 2
Lone pairs = 2

A

V shaped that lies flat on the plane

21
Q

V shape Angel size

A

104.5°

22
Q

Explanation for v shape angle size

A

Lone pair–lone pair repulsion is greater than lone pair–bond pair repulsion, so the bond angle is even further depressed from 109.5°, and is slightly less than the 107°