
Public learning track
Redox Reactions, Activity Series, and Electrochemistry
10th Grade · Science · Open Global Science
9 lessons
Goal
Analyze redox processes via oxidation states, construct half-equations, evaluate galvanic and electrolytic cells, and predict reaction feasibility using standard electrode potentials.
Featured Diagrams
Oxidation-Reduction Reactions and Electron Transfer
9 lessons
0 of 9 done
- 1Oxidation-Reduction Reactions and Electron TransferUp nextStart
- 2Activity Series of Metals and Single Displacement ReactionsPremiumNot started yet
- 3Structure and Operation of Galvanic and Voltaic CellsNot started yet
- 4Standard Electrode Potentials and Cell Voltage CalculationsNot started yet
- 5Predicting Feasibility of Redox Reactions Using Electrode PotentialsNot started yet
- 6Writing Cathode Reduction Half-Equations for Molten SaltsNot started yet
- 7Writing Anode Oxidation Half-Equations for Molten SaltsNot started yet
- 8Electrolysis of Aqueous Solutions and Selective Discharge RulesNot started yet
- 9Industrial Applications of Electrolysis: Refining and ElectroplatingNot started yet
Standards Covered
- OGS.11.PS.RX.5Open Global Science Standards 2026™ · Science · Level 11 / High School 2 (Age 15) · Grade 10Analyze oxidation-reduction (redox) reactions in terms of electron transfer and oxidation states, examine the activity series of metals, and evaluate electrolysis processes in molten and aqueous solutions, standard electrode potentials, and electrochemical cells.
- OGS.11.PS.RX.1Open Global Science Standards 2026™ · Science · Level 11 / High School 2 (Age 15) · Grade 10Classify, write, and balance full molecular, complete ionic, and net ionic chemical equations for synthesis, decomposition, single displacement, double displacement, precipitation, and combustion reactions, applying conservation of mass.
Curriculum Framework
10th Grade · Science · Open Global Science
1
8 lessons
Chemical Reactions, Equation Balancing, and Net Ionic Equations
Classify diverse reaction types, apply conservation of mass to balance complex molecular equations, and construct complete and net ionic equations for aqueous transformations.
2
9 lessons
Stoichiometry, Mole Calculations, and Chemical Yields
Perform quantitative stoichiometric conversions across masses, moles, and gas volumes to determine limiting reactants, percent yields, atom economy, and chemical formulas.
3
6 lessons
Solutions, Solubility Curves, and Qualitative Chemical Tests
Analyze aqueous concentration, perform serial dilutions, interpret solubility curves, and conduct qualitative chemical tests for gases, cations, and anions.
4
7 lessons
Mixture Separations, Chromatography, and Instrumental Spectroscopy
Evaluate physical separation techniques, calculate chromatographic retention factors, and deduce chemical structures using infrared, NMR, and mass spectrometry.
5
9 lessons
Redox Reactions, Activity Series, and Electrochemistry
Analyze redox processes via oxidation states, construct half-equations, evaluate galvanic and electrolytic cells, and predict reaction feasibility using standard electrode potentials.