Lesson 2A.2
2A.2 Covalent bonding and molecular shapes Quiz: Pearson Edexcel Chemistry, Unit 2
20 questions
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Lesson 2A.2, Covalent bonding and molecular shapes: 20 multiple choice questions for the Pearson Edexcel Chemistry (9CH0), Unit 2: Bonding and Structure, written with Revision Ninja.
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The 20 questions
-
What is a covalent bond?
- The electrostatic attraction between two nuclei and the shared pair of electrons between them
- The attraction between molecules caused by temporary dipoles that form and disappear very quickly
- The transfer of electrons from one atom to another, leaving the two atoms as oppositely charged ions
- The attraction between metal ions and the sea of delocalised electrons that holds a metal together
-
What is the shape of a methane molecule, CH4?
- Tetrahedral, with bond angles of 109.5 degrees
- Linear, with bond angles of 180 degrees
- Square planar, with bond angles of 90 degrees
- Trigonal planar, with bond angles of 120 degrees
-
What is the approximate bond angle in a water molecule?
- 109.5 degrees
- 104.5 degrees
- 180 degrees
- 120 degrees
-
What is the shape of an ammonia molecule, NH3?
- Trigonal pyramidal, with bond angles of about 107 degrees
- Trigonal planar, with all bond angles of 120 degrees and no lone pairs on the central nitrogen atom
- Tetrahedral, with bond angles of 109.5 degrees because four electron pairs repel equally
- Bent, with bond angles of about 104.5 degrees because the lone pairs compress the bonds
-
What is the shape of a carbon dioxide molecule?
- Trigonal planar, with bond angles of 120 degrees
- Linear, with bond angles of 180 degrees
- Tetrahedral, with bond angles of 109.5 degrees
- Bent, with bond angles of about 104.5 degrees
-
What is the shape of a boron trichloride molecule, BCl3?
- Tetrahedral, with bond angles of 109.5 degrees
- Trigonal planar, with bond angles of 120 degrees
- Trigonal pyramidal, with bond angles of 107 degrees
- Linear, with bond angles of 180 degrees
-
In the ammonium ion, NH4+, how is the fourth N-H bond formed?
- Nitrogen donates a lone pair to a hydrogen ion, forming a dative covalent bond
- Nitrogen loses an electron to the hydrogen ion, which then bonds to the nitrogen through an ionic link
- Both bonding electrons are shared equally between the nitrogen and hydrogen atoms in the ion
- Hydrogen donates a pair of electrons to nitrogen, which then accepts them into a new bonding orbital
-
Which bond is shortest?
- The double bond in C=C
- The triple bond in N2
- The single bond in N-N
- The single bond in C-C
-
Which order of electron-pair repulsion is correct?
- Bonding pair-bonding pair > lone pair-bonding pair > lone pair-lone pair
- Lone pair-bonding pair > lone pair-lone pair > bonding pair-bonding pair
- All pairs repel equally regardless of type
- Lone pair-lone pair > lone pair-bonding pair > bonding pair-bonding pair
-
What is the shape of a PCl5 molecule?
- Square planar, because the five chlorine atoms lie in a single flat plane around the phosphorus
- Octahedral, because six electron pairs surround the central phosphorus atom in the molecule
- Tetrahedral, because four bonding pairs surround the central phosphorus atom in the molecule
- Trigonal bipyramidal
-
What is the shape and bond angle of an SF6 molecule?
- Tetrahedral, with bond angles of 109.5 degrees
- Trigonal bipyramidal, with bond angles of 120 degrees
- Octahedral, with bond angles of 180 degrees
- Octahedral, with bond angles of 90 degrees
-
How many lone pairs are on the central oxygen atom of a water molecule?
- 1
- 2
- 4
- 0
-
Predict the bond angle in BeCl2.
- 109.5 degrees
- 180 degrees
- 90 degrees
- 120 degrees
-
Why is the H-O-H bond angle in water smaller than the H-C-H angle in methane?
- Hydrogen atoms repel each other more strongly in water than they do in methane molecules
- Water has double bonds that pull the two hydrogen atoms closer to the central oxygen atom
- The two lone pairs on oxygen repel more strongly than bonding pairs, compressing the H-O-H angle
- Oxygen has fewer electrons than carbon, so the bonding pairs in water are drawn closer together
-
How many shared electron pairs are in a triple covalent bond, as in N2?
- 3
- 6
- 1
- 2
-
In Al2Cl6, how many dative (coordinate) bonds are there?
- 1
- 4
- 6
- 2
-
How many electron pairs surround the central sulfur atom in SF6?
- 4
- 5
- 8
- 6
-
Which species has a bond angle closest to 120 degrees?
- BCl3
- NH3, a trigonal pyramid with bond angles of about 107 degrees because of its single lone pair
- CH4, a tetrahedral molecule with bond angles of about 109.5 degrees between its four bonds
- H2O, a bent molecule with bond angles of about 104.5 degrees because of its two lone pairs
-
Predict the shape and bond angle of the NH4+ ion and justify your answer.
- Tetrahedral, with bond angles of 104.5 degrees, because the lone pairs on nitrogen compress the angle between its bonding pairs
- Trigonal pyramidal, with bond angles of 107 degrees, because one lone pair remains on the nitrogen atom and pushes the bonds together
- Tetrahedral, with bond angles of 109.5 degrees, because there are four bonding pairs and no lone pairs around nitrogen
- Square planar, with bond angles of 90 degrees, because four bonding pairs repel equally and lie in a single plane around nitrogen
-
A molecule XF5 is trigonal bipyramidal. Which bond angles are present?
- 109.5 degrees between all atoms, because the five fluorine atoms arrange themselves as a regular tetrahedron around X
- 180 degrees between the equatorial atoms only, because the equatorial fluorines sit directly opposite one another across X
- 90 degrees between all atoms, because the five fluorine atoms all lie at right angles to the central atom in the molecule
- 120 degrees between equatorial atoms and 90 degrees between axial and equatorial atoms, with 180 degrees between axial atoms
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