
Public learning track
Kinetic Molecular Theory, Gas Laws, and Solution Dynamics
10th Grade · Science · TEKS
7 lessons
Goal
Describe gas behavior using Kinetic Molecular Theory, perform ideal gas law and partial pressure calculations, and analyze solubility curves and dissolution factors.
Featured Diagrams
Postulates of the Kinetic Molecular Theory of Gases
7 lessons
0 of 7 done
- 1Postulates of the Kinetic Molecular Theory of GasesUp nextStart
- 2Boyle's Law: Pressure-Volume Relationships at Constant TemperaturePremiumNot started yet
- 3Charles's and Gay-Lussac's Laws: Temperature, Volume, and Pressure EffectsNot started yet
- 4The Combined Gas Law and Ideal Gas Law EquationNot started yet
- 5Dalton's Law of Partial Pressures and Gas Collection Over WaterNot started yet
- 6Interpreting Solid and Gas Solubility CurvesNot started yet
- 7Investigating Factors Affecting Rates of DissolutionNot started yet
Standards Covered
- 112.43(b)(10)(A)Texas Essential Knowledge and Skills (TEKS) · Science · 10th grade · Grade 10describe the postulates of the kinetic molecular theory;
- 112.43(b)(10)(B)Texas Essential Knowledge and Skills (TEKS) · Science · 10th grade · Grade 10describe and calculate the relationships among volume, pressure, number of moles, and temperature for an ideal gas; and
- 112.43(b)(10)(C)Texas Essential Knowledge and Skills (TEKS) · Science · 10th grade · Grade 10define and apply Dalton's law of partial pressure.
- 112.43(b)(11)(C)Texas Essential Knowledge and Skills (TEKS) · Science · 10th grade · Grade 10investigate how solid and gas solubilities are influenced by temperature using solubility curves and how rates of dissolution are influenced by temperature, agitation, and surface area;
Curriculum Framework
10th Grade · Science · TEKS
1
8 lessons
Scientific Practices and Laboratory Investigations
Master laboratory safety, scientific inquiry practices, equipment usage, and the evaluation of scientific models and theories.
2
7 lessons
Cellular Energetics: Photosynthesis and Cellular Respiration
Explain how matter is conserved and energy is transferred during photosynthesis and cellular respiration using chemical equations and models.
3
8 lessons
Enzymes and Cellular Regulation
Investigate and explain how enzymes lower activation energy and catalyze cellular metabolic reactions under varying conditions.
4
7 lessons
Animal Body Systems and Interactivity
Analyze how animal body systems interact to maintain homeostasis, absorb nutrients, reproduce, and defend against injury or disease.
5
7 lessons
Plant Structure and System Interactions
Explain how plant vascular, reproductive, and response systems interact to carry out essential biological functions.
6
7 lessons
Ecological Relationships and Ecosystem Stability
Investigate and evaluate how ecological relationships influence ecological community structure and overall ecosystem stability.
7
7 lessons
Matter Cycling and Energy Flow in Ecosystems
Analyze how disruptions to matter cycling and energy transfer through trophic levels affect overall ecosystem stability.
8
7 lessons
Biogeochemical Cycles: Carbon and Nitrogen
Explain the significance of carbon and nitrogen cycles to ecosystem stability and analyze the ecological consequences of cycle disruptions.
9
7 lessons
Environmental Change, Biodiversity, and Conservation
Explain how natural and anthropogenic environmental changes affect biodiversity and assess their impacts on ecosystem stability.
10
7 lessons
Foundations of Chemistry: Atomic Structure and Isotopes
Understand atomic theory development, subatomic particle arrangements, isotopic variations, and atomic mass calculations.
11
8 lessons
Electron Configurations and Periodic Trends
Master quantum sublevels, ground-state electron configurations, and predictive trends across the periodic table.
12
9 lessons
Chemical Bonding and Molecular Structure
Form ionic, covalent, and metallic bonds, construct nomenclature, draw Lewis structures, and determine molecular geometries.
13
9 lessons
The Mole Concept and Stoichiometry
Master mole conversions, molar mass calculations, stoichiometry, limiting reactants, and percent yield determinations.
14
7 lessons
Chemical Reactions and Kinetics
Classify chemical reactions, balance chemical equations, graph energy profiles, and evaluate reaction kinetics.
15
7 lessons
Solutions, Gas Laws, and Acid-Base Chemistry
Understand solution molarity, gas behaviors under kinetic molecular theory, and acid-base neutralization reactions.
16
8 lessons
Nuclear Chemistry and Society
Understand radioactive decay, half-life calculations, nuclear fission/fusion, and evaluate nuclear technology applications.
17
3 lessons
STEM Careers and Scientific Inquiry Resources
Explore STEM career pathways, research organizations, and real-world scientific mentorship opportunities.
18
8 lessons
Development of Atomic Theory and Nuclear Models
Trace the historical evolution of atomic theory and model atomic structure, subatomic particles, and isotopic composition.
19
6 lessons
Electromagnetic Spectrum, Quantum Theory, and Electron Architecture
Quantify light energy and wave relationships and represent electron architecture through electron configurations and Lewis structures.
20
7 lessons
The Periodic Table: Historical Development and Periodic Trends
Explain the historical evolution of the periodic table, predict family properties from valence electrons, and analyze trends in atomic properties.
21
8 lessons
Chemical Bonding, IUPAC Nomenclature, and Molecular Geometry
Name and write chemical formulas, model VSEPR geometries, and evaluate intramolecular and intermolecular properties.
22
8 lessons
Moles, Mass Relationships, and Chemical Composition
Apply Avogadro's number, convert between mass, moles, and particles, calculate percent composition, and derive empirical and molecular formulas.
23
10 lessons
Chemical Reactions, Reaction Types, and Stoichiometry
Balance chemical equations across five primary reaction types, classify aqueous reactions, and solve stoichiometry, limiting reactant, and percent yield problems.
24
7 lessons
Kinetic Molecular Theory, Gas Laws, and Solution Dynamics
Describe gas behavior using Kinetic Molecular Theory, perform ideal gas law and partial pressure calculations, and analyze solubility curves and dissolution factors.
25
8 lessons
Solubility Rules, Molarity, and Solution Dilutions
Apply solubility rules to predict precipitate formation in double replacement reactions, calculate solution concentrations in molarity, and solve solution dilution problems using M1V1 = M2V2.
26
8 lessons
Acids, Bases, pH, and Neutralization Reactions
Differentiate strong vs. weak acids and bases, predict products in water-forming acid-base neutralization reactions, define pH, and calculate pH from hydrogen ion concentration.