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Atoms, Molecules and Atoms, Molecules and Ions Ions Chapter 2
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Atoms, Molecules and Ions Chapter 2. Properties of the Electron, Proton & Neutron amu = atomic mass units 1 amu = 1.66x10 -24 g Mass of carbon-12 = 12.

Jan 04, 2016

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Page 1: Atoms, Molecules and Ions Chapter 2. Properties of the Electron, Proton & Neutron amu = atomic mass units 1 amu = 1.66x10 -24 g Mass of carbon-12 = 12.

Atoms, Molecules and IonsAtoms, Molecules and Ions

Chapter 2

Page 2: Atoms, Molecules and Ions Chapter 2. Properties of the Electron, Proton & Neutron amu = atomic mass units 1 amu = 1.66x10 -24 g Mass of carbon-12 = 12.

Properties of the Electron, Proton & NeutronProperties of the Electron, Proton & Neutron

amu = atomic mass units

1 amu = 1.66x10-24 g

Mass of carbon-12 = 12 amu

The Modern View of Atomic Structure

Page 3: Atoms, Molecules and Ions Chapter 2. Properties of the Electron, Proton & Neutron amu = atomic mass units 1 amu = 1.66x10 -24 g Mass of carbon-12 = 12.

The nucleus of an atom has a structure– It is composed of protons and neutrons

The proton a nuclear particle positive charge equal to that of the

electron mass more that 1800 times that of the

electron.

The neutron a nuclear particle having a mass almost identical to that

of the proton but no electric charge.

Page 4: Atoms, Molecules and Ions Chapter 2. Properties of the Electron, Proton & Neutron amu = atomic mass units 1 amu = 1.66x10 -24 g Mass of carbon-12 = 12.

Atomic number (Z) = number of protons in the nucleus of an atom.

Isotopes, Atomic Numbersand Mass Numbers

Mass number (A) = the total number of protons and neutrons in a nucleus.

An element is a substance whose atoms all have the same atomic number.

Page 5: Atoms, Molecules and Ions Chapter 2. Properties of the Electron, Proton & Neutron amu = atomic mass units 1 amu = 1.66x10 -24 g Mass of carbon-12 = 12.

Isotopes have the same atomic number (p+), but different mass numbers (p+

+no)

Page 6: Atoms, Molecules and Ions Chapter 2. Properties of the Electron, Proton & Neutron amu = atomic mass units 1 amu = 1.66x10 -24 g Mass of carbon-12 = 12.

Nuclide symbols

You write the nuclide symbol for the naturally occurring sodium nuclide as follows:

Na23

11

Mass number

Atomic number

A nuclide is an atom characterised by a definite atomic and mass number.

Page 7: Atoms, Molecules and Ions Chapter 2. Properties of the Electron, Proton & Neutron amu = atomic mass units 1 amu = 1.66x10 -24 g Mass of carbon-12 = 12.

Alternate Example

Write the nuclide symbol for the nucleus that has 19 protons and 20 neutrons.

Page 8: Atoms, Molecules and Ions Chapter 2. Properties of the Electron, Proton & Neutron amu = atomic mass units 1 amu = 1.66x10 -24 g Mass of carbon-12 = 12.

Periodic table of the elements

A tabular arrangement of elements in rows and columns, highlighting the regular repetition of properties of the elements.

Mendelev

Page 9: Atoms, Molecules and Ions Chapter 2. Properties of the Electron, Proton & Neutron amu = atomic mass units 1 amu = 1.66x10 -24 g Mass of carbon-12 = 12.
Page 10: Atoms, Molecules and Ions Chapter 2. Properties of the Electron, Proton & Neutron amu = atomic mass units 1 amu = 1.66x10 -24 g Mass of carbon-12 = 12.

Molecules and Molecular Compounds

A molecule is a definite group of atoms that are chemically bonded together - that is tightly connected by attractive forces.

Molecular compounds compounds that consist of molecules

Page 11: Atoms, Molecules and Ions Chapter 2. Properties of the Electron, Proton & Neutron amu = atomic mass units 1 amu = 1.66x10 -24 g Mass of carbon-12 = 12.

The chemical formula of a substance is a notation that uses atomic symbols with numeric subscripts to convey the relative proportions of atoms of the different elements in the substance.

eg. Alumina = Al2O3

Salt = NaCl

Ethanol = C2H6O

A molecular formula gives the exact number of different atoms of an element in a molecule

eg. Ethanol = C2H6O

Page 12: Atoms, Molecules and Ions Chapter 2. Properties of the Electron, Proton & Neutron amu = atomic mass units 1 amu = 1.66x10 -24 g Mass of carbon-12 = 12.

Some molecules

Page 13: Atoms, Molecules and Ions Chapter 2. Properties of the Electron, Proton & Neutron amu = atomic mass units 1 amu = 1.66x10 -24 g Mass of carbon-12 = 12.

Elements that can exist as molecules

H2, O2, N2, F2, Cl2, Br2, I2,

Page 14: Atoms, Molecules and Ions Chapter 2. Properties of the Electron, Proton & Neutron amu = atomic mass units 1 amu = 1.66x10 -24 g Mass of carbon-12 = 12.

Polymers are very large molecules that are made up of a number of smaller molecules repeatedly linked together.

Monomers are the small molecules that are linked together to form the polymer

... ...

H3C CH2 CH2 CH3( )n

e.g. ethylene to polyethylene

Page 15: Atoms, Molecules and Ions Chapter 2. Properties of the Electron, Proton & Neutron amu = atomic mass units 1 amu = 1.66x10 -24 g Mass of carbon-12 = 12.

Ions and Ionic Compounds Not all substances are molecular, some are made up of ions.

An ion is an electrically charged particle obtained from an atom or chemically bonded group of atoms by adding or removing electrons.

Anion - a negatively charged ion

Cation - a positively charged ion

An ionic compound is a compound composed of cations and anions, eg NaCl

Page 16: Atoms, Molecules and Ions Chapter 2. Properties of the Electron, Proton & Neutron amu = atomic mass units 1 amu = 1.66x10 -24 g Mass of carbon-12 = 12.

NaCl - Lattice

Page 17: Atoms, Molecules and Ions Chapter 2. Properties of the Electron, Proton & Neutron amu = atomic mass units 1 amu = 1.66x10 -24 g Mass of carbon-12 = 12.

The empirical formula of a substance is the relative number of atoms or ions symbolized in the formula.

Use the smallest set of integers to express the correct ratios of atoms present.

Eg. Consider hydrogen peroxide:

Molecular formula = H2O2

Empirical formula =

Page 18: Atoms, Molecules and Ions Chapter 2. Properties of the Electron, Proton & Neutron amu = atomic mass units 1 amu = 1.66x10 -24 g Mass of carbon-12 = 12.

Writing an ionic formula

What is the formula of magnesium nitride?