measurement, dimensional analysis, moles, and stoichiometry
Stoichiometry, electron structure, bonding, gases, solutions, and energy
Chemistry Quantitative Lab
Count the particles. Defend the model.
The Quantitative Lab has reactions without reliable measurements. Super Gio must restore mole ratios, particle models, energy diagrams, and fair tests.
YOUR EXPEDITION MAP
Eight worlds to master
Finish each Challenge mission to earn a WORLD MASTERED star.
electron arrangement, periodic trends, and chemical behavior
Electron Configuration and Periodicity
Use electron configurations and periodic structure to explain trends in size, attraction, ion formation, and reactivity.ionic and covalent bonding, polarity, geometry, and properties
Chemical Bonding and Molecular Geometry
Model bonding, Lewis structures, molecular shape, polarity, and how intermolecular attractions affect properties.reaction types, limiting reactants, theoretical yield, and conservation
Reaction Stoichiometry Lab
Predict products, balance reactions, identify limiting reactants, and compare theoretical with actual yield.pressure, volume, temperature, amount, and gas-particle models
Gas Laws and Kinetic Theory
Relate macroscopic gas behavior to particle motion and solve proportional gas-law relationships.concentration, solubility, pH, acids, bases, and neutralization
Solutions, Acids, and Bases
Prepare and analyze solutions, interpret pH, and model acid-base behavior and neutralization.energy transfer, enthalpy, collision theory, and reaction rate
Thermochemistry and Reaction Rates
Interpret energy diagrams and investigate how concentration, temperature, surface area, and catalysts affect rates.reversible reactions, equilibrium, systems, and quantitative investigation