뒤로Study Guide: Matter, Measurement, Atoms, and Covalent Bonding
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Matter, Measurement, and Atoms
Pure Substances vs. Mixtures
Understanding the distinction between pure substances and mixtures is fundamental in chemistry.
Pure Substances: Materials with a fixed composition; can be elements (e.g., O2) or compounds (e.g., H2O).
Mixtures: Combinations of two or more substances that retain their individual properties; can be homogeneous (solutions) or heterogeneous (e.g., sand and water).
Example: Salt water is a mixture; table salt (NaCl) is a pure substance.
Periodic Table Regions and Group Names
The periodic table is organized into regions and groups with distinct properties.
Regions: Metals, nonmetals, metalloids.
Group Names: Alkali metals (Group 1), alkaline earth metals (Group 2), halogens (Group 17), noble gases (Group 18).
Example: Group 1 elements are highly reactive metals.
Scientific Notation
Scientific notation expresses numbers as a product of a coefficient and a power of ten.
Format:
Example: 0.00045 =
Significant Figures
Significant figures reflect the precision of a measured quantity.
Rules: All nonzero digits are significant; zeros between nonzero digits are significant; leading zeros are not significant; trailing zeros in a decimal are significant.
Example: 0.00450 has three significant figures.
Mathematical Operations with Significant Figures
When performing calculations, report answers with the correct number of significant figures.
Addition/Subtraction: Result has the same decimal places as the least precise measurement.
Multiplication/Division: Result has the same number of significant figures as the measurement with the fewest significant figures.
Metric Prefixes and Multiples
Metric prefixes indicate multiples or fractions of units.
Kilo (k):
Deci (d):
Centi (c):
Milli (m):
Micro (\mu):
Unit Conversion
Unit conversion uses conversion factors to change from one unit to another.
Set-up: Use dimensional analysis.
Example: Convert 5.0 cm to mm:
Temperature Scales
Three common temperature scales are Fahrenheit (°F), Celsius (°C), and Kelvin (K).
Conversion Equations:
Example: 25°C = K
Subatomic Particles of the Atom
Atoms are composed of protons, neutrons, and electrons.
Protons: Positive charge, located in nucleus.
Neutrons: Neutral, located in nucleus.
Electrons: Negative charge, orbit nucleus.
Atomic Number and Mass Number
Atomic number and mass number describe the composition of an atom.
Atomic Number (Z): Number of protons.
Mass Number (A): Number of protons plus neutrons.
Example: Carbon-12: Z = 6, A = 12.
Isotopes
Isotopes are atoms of the same element with different numbers of neutrons.
Representation: (where X is the element symbol, A is mass number, Z is atomic number).
Example: is an isotope of carbon.
Calculating Protons, Neutrons, and Electrons
To determine the number of subatomic particles in an isotope:
Protons: Equal to atomic number (Z).
Neutrons:
Electrons: Equal to protons in a neutral atom.
Example: : 11 protons, 12 neutrons, 11 electrons.
Valence Electrons
Valence electrons are the outermost electrons involved in chemical bonding.
Main-group elements: Number of valence electrons equals group number (for Groups 1-2 and 13-18).
Example: Oxygen (Group 16) has 6 valence electrons.
Covalent Bonding and Molecules
Covalent Bonds
A covalent bond is a chemical bond formed by the sharing of electron pairs between atoms.
Occurs: Typically between nonmetals.
Example: In H2O, oxygen shares electrons with two hydrogen atoms.
Binary Covalent Compounds: Names and Formulas
Binary covalent compounds consist of two nonmetal elements.
Naming: Use prefixes to indicate the number of atoms (mono-, di-, tri-, tetra-, penta-, etc.).
Example: CO2 is carbon dioxide; N2O is dinitrogen monoxide.
Lewis Dot Symbols
Lewis dot symbols represent valence electrons around an element's symbol.
Example: For oxygen: O with six dots around it.
Drawing Lewis Structures
Lewis structures show how atoms share electrons in a molecule.
Steps:
Count total valence electrons.
Arrange atoms and connect with single bonds.
Distribute remaining electrons to satisfy octet rule.
Example: Water (H2O): Oxygen in center, two hydrogens attached, four lone electrons on oxygen.
Prefix | Number |
|---|---|
Mono- | 1 |
Di- | 2 |
Tri- | 3 |
Tetra- | 4 |
Penta- | 5 |
Hexa- | 6 |
Hepta- | 7 |
Octa- | 8 |
Nona- | 9 |
Deca- | 10 |
Additional info: Academic context and examples were added to expand brief points into full explanations and to make the notes self-contained for study purposes.