Every card in Bonding and structure, Year 10: the three bonds and ionic bonding
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- Which type of strong chemical bond forms when a metal combines with a non-metal? (one word)
Ionic
HintThe metal atoms give electrons away, leaving charged particles that attract each other.
WhyMetal atoms lose outer electrons and non-metal atoms gain them, so oppositely charged ions form and attract. Two non-metals share electrons instead (covalent bonding), and metals on their own share a sea of electrons (metallic bonding).
- A shared pair of electrons that holds two non-metal atoms together
A covalent bond
HintThe name begins with "co-", as in co-operate: each of the two atoms has a part in it.
WhyBoth nuclei attract the shared pair, and that attraction holds the two atoms together. Covalent bonds are found in most non-metal elements, such as oxygen, and in compounds of non-metals, such as water.
- Brass is an alloy of the metals copper and zinc. What type of bonding holds its atoms together?
Metallic bonding
HintBoth ingredients are the same class of element, so nothing is handed from one kind of atom to the other.
WhyMetallic bonding is found in metallic elements and in alloys. The atoms share delocalised electrons, which are free to move through the whole structure.
- Ionic, covalent and metallic bonds are all held together by ____ forces: attractions between opposite charges.
electrostatic
HintThe word begins like "electron" and ends like "static".
WhyIn every bond, opposite charges attract. In ionic bonding the charges are on positive and negative ions; in covalent bonding they are the positive nuclei and the shared negative electrons; in metallic bonding, the positive centres of the atoms and the delocalised electrons.
- Sodium chloride (NaCl) and hydrogen chloride (HCl) both contain chlorine. Why is the bonding ionic in one and covalent in the other?
Sodium is a metal; hydrogen is a non-metal
HintLook at the element partnered with chlorine in each compound and ask which side of the periodic table it belongs to.
WhyA metal bonded to a non-metal transfers electrons, which gives ions. Two non-metals share electrons, which gives molecules. So the same element, chlorine, bonds in two different ways depending on its partner.
- A charged particle formed when an atom loses or gains electrons
An ion
HintA three-letter word; table salt is built from two kinds of them.
WhyAn atom is neutral because it has equal numbers of protons and electrons. Losing electrons leaves more protons than electrons, so the particle is positive; gaining electrons makes it negative.
- Chlorine is in Group 7. Why does a chlorine atom form an ion with a charge of 1−?
It gains one electron to fill its outer shell
HintCount how many more it needs to match the noble gas next door, argon.
WhyA Group 7 atom has seven outer electrons, one short of a full shell. Taking one extra electron gives it one more negative charge than it has protons, so the ion is 1−. In the same way a Group 6 atom gains two and becomes 2−.
- In a dot and cross diagram of sodium chloride, the chloride ion is drawn in square brackets with eight outer electrons: seven crosses and one dot. What does the single dot stand for?
The electron transferred from the sodium atom
HintThe two symbols are a way of labelling where each one started out.
WhyThe seven crosses are chlorine's own outer electrons; the eighth is a dot because it came from sodium's outer shell. All electrons are really identical, and the two symbols only keep track of where each came from. The sodium ion is labelled with a + charge and the chloride ion with a − charge.
- When a Group 1 or 2 metal atom, or a Group 6 or 7 non-metal atom, becomes an ion, its electrons end up arranged like those of a ____.
noble gas
HintThink of the family in Group 0, whose atoms hardly react at all.
WhyA sodium ion has the electronic structure 2,8, the same as neon; a chloride ion has 2,8,8, the same as argon. A full outer shell is a stable arrangement, which is why these ions form.
- Calcium is in Group 2 and chlorine is in Group 7. When they react, how many chlorine atoms does each calcium atom give electrons to, and why?
Two, because calcium loses two electrons and each chlorine gains one
HintCompare how many the metal must get rid of with how many a single non-metal atom has room for.
WhyA Group 2 atom loses its two outer electrons and becomes a 2+ ion. A Group 7 atom can take only one, becoming 1−, so two chlorine atoms are needed for every calcium. That is why the formula of calcium chloride is CaCl2.
- A giant, regular arrangement of oppositely charged ions held together by electrostatic attraction
A giant ionic lattice
HintThe last word is also used for a criss-cross garden fence or the top of a pie.
WhyThe pattern repeats in all three dimensions through the whole crystal, so there are no separate molecules. Sodium chloride is the one example whose structure you are expected to know.
- In solid sodium chloride, each sodium ion is attracted to the chloride ions around it. In which directions do these forces of attraction act?
In all directions
HintThe pull of a charge is not aimed at one neighbour; picture it spreading out like light from a bulb.
WhyEach ion attracts every oppositely charged ion near it: above, below and on every side. This attraction throughout the lattice is what is meant by ionic bonding.
- A ball and stick model of sodium chloride shows the ions held apart by sticks. How are the ions really arranged in the solid?
Packed closely together, with no sticks between them
HintThe gaps in the model are only there so that you can see inside it.
WhyThe sticks stand for the forces of attraction, which are not solid objects and act in every direction. A three-dimensional model with the ions touching shows the packing better, but then the ions in the middle are hidden.
- A dot and cross diagram of sodium chloride shows just one sodium ion and one chloride ion. What does it fail to show about solid sodium chloride?
That it is a giant structure of many ions
HintThink about the number of each kind in a single grain of salt, and the way they are stacked.
WhyA dot and cross diagram is good at showing how the electron is transferred and what charges result. It says nothing about the lattice: the huge number of ions, their regular arrangement, or the forces acting in all directions.
- A diagram of an ionic compound shows twice as many chloride ions (each with a 1− charge) as calcium ions (each with a 2+ charge). What is its empirical formula? (type it on one line with the digit after the symbol, as in H2O)
CaCl2
HintWrite the metal first, then put a number after the ion there are more of.
WhyAn empirical formula is the simplest whole-number ratio of the ions: one calcium to two chloride. The charges balance as well, because one 2+ charge is cancelled by two 1− charges.
1★ GCSE-CHEM-BON-0001
2★ GCSE-CHEM-BON-0002
3★ GCSE-CHEM-BON-0003
4★ GCSE-CHEM-BON-0004
5★ GCSE-CHEM-BON-0005
6★ GCSE-CHEM-BON-0006
7★ GCSE-CHEM-BON-0007
8★ GCSE-CHEM-BON-0008
9★ GCSE-CHEM-BON-0009
10★ GCSE-CHEM-BON-0010
11★ GCSE-CHEM-BON-0011
12★ GCSE-CHEM-BON-0012
13★ GCSE-CHEM-BON-0013
14★ GCSE-CHEM-BON-0014
15★ GCSE-CHEM-BON-0015
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