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Chemical bonds hold compounds together.

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Presentation on theme: "Chemical bonds hold compounds together."— Presentation transcript:

1 Chemical bonds hold compounds together.
Notes for D 2.2 Chemical bonds hold compounds together.

2 Chemical bonds between atoms involve electrons.
Chemical bonds=the glue that holkds the atoms in compounds together Chemical bonds=the result of interactions between the electron clouds of 2 or more atoms.

3 Atoms can transfer electrons.
1. Ions—formed when atoms gain or lose electrons 2. When 1 atom loses an electron, another atom picks up that electron forming a negative and positive ion pair. 3. Positive ion attracted to negative ion= IONIC BOND

4 Continued Ionic bonds produce large crystal networks of atoms because the attraction between positive and negative ions acts in all directions. In an ionic compound, positive ions are attracted to all negative ions, and all negative ions are attracted to all positive ions.

5 Continued Ionic compounds bear the name of the positive ion followed by the name of the negative ion, with the suffix –ide. The ionic compound made of lithium and chlorine is lithium chloride.

6 Atoms can share electrons.
Atoms that share a pair of electrons have what is called a covalent bond. Atoms form covalent bonds because they are more energetically stable when they have a certain number of electrons around their nuclei. Covalent bonds can form between 2 atoms of the same element or 2 atoms of different elements.

7 Continued Molecule—a group of atoms held together by covalent bonds (no electrical charge) In some cases 2 atoms can form as many as 4 covalent bonds. Most often, electrons shared in a covalent bond spend more time closer to one of the nuclei than the other. (Diagrams on pp )=polar covalent bond

8 Chemical bonds give all materials their structures.
The shape of the crystal formed by an ionic compound depends on the ratios, shapes, and sizes of the ions. Covalent compounds do not form crystals; they form individual molecules. Molecules have characteristic shapes, or molecular structures. Molecular structure affects many properties of the compounds


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