Chemistry

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Chemistry Flipper®-Topics - CLP-590W
Introduction to Chemistry. Grades 10–College.
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Introduction to Chemistry. Grades 10–College.

Chemistry Flipper®-Topics - CLP-590W

 
  • Basic Terms
  • Basic Terms: Observation
  • Basic Terms: Qualitative
  • Basic Terms: Quantitative
  • Basic Terms: Hypothesis
  • Basic Terms: Inference
  • Basic Terms: Prediction
  • Basic Terms: Variable
  • Basic Terms: Control
  • Basic Terms: Control Setup
  • Basic Terms: Theory
  • Basic Terms: Data
  • Basic Terms: Model
  • Basic Terms: Property
  • Basic Terms: Intensive
  • Basic Terms: Extensive
  • Basic Terms: Heterogeneous
  • Basic Terms: Homogeneous
  • Basic Terms: Macroscopic
  • Basic Terms: Microscopic
  • Matter
  • Matter: Mass
  • Matter: Volume
  • Matter: Density
  • Matter: Derived Quantity
  • Matter: Pure Substance
  • Matter: Element
  • Matter: Atom
  • Matter: Compound
  • Matter: Bonding
  • Matter: Molecule
  • Matter: Mixture
  • Matter: Solution
  • Matter: Solution: Solute
  • Matter: Solution: Solvent
  • Matter: Fluid
  • Matter: Physical States of Matter
  • Matter: Physical States of Matter: Solid
  • Matter: Physical States of Matter: Liquid
  • Matter: Physical States of Matter: Gas
  • Matter: Physical States of Matter: Plasma
  • Laws
  • Laws: Conservation of Mass
  • Laws: Conservation of Energy
  • Laws: Definite Composition
  • Laws: Multiple Proportions
  • Changes in Matter
  • Changes in Matter: Energy
  • Changes in Matter: Energy: Potential Energy
  • Changes in Matter: Energy: Kinetic Energy
  • Changes in Matter: Chemical Change
  • Changes in Matter: Chemical Reaction
  • Changes in Matter: Physical Change
  • Changes in Matter: Phase Change
  • Changes in Matter: Nuclear Change
  • Changes in Matter: Exothermic
  • Changes in Matter: Endothermic
  • Writing Formulas
  • Writing Formulas: Chemical Formula
  • Writing Formulas: Chemical Formula: Subscripts
  • Writing Formulas: Binary Compounds
  • Writing Formulas: Diatomic Elements
  • Writing Formulas: Polyatomic Elements
  • Common Cations
  • Common Cations: Listing
  • Common Anions
  • Common Anions: Listing
  • Naming Binary Compounds
  • Rules for Significant Digits
  • Rules for Significant Digits: Nonzero Numbers
  • Rules for Significant Digits: Leading Zeros
  • Rules for Significant Digits: Capitve Zeros
  • Rules for Significant Digits: Trailing Zeros
  • Rules for Significant Digits: Numbers in Scientific Notation
  • Rules for Significant Digits: Zeroes With a Line Over Them
  • Significant Digits +/-
  • Significant Digits x/÷
  • Writing Numbers in Scientific Notation
  • Writing Numbers in Scientific Notation: Base
  • Writing Numbers in Scientific Notation: Exponent
  • Writing Numbers in Scientific Notation: Significant Digits
  • Writing Numbers in Scientific Notation: Change to Decimal Form
  • Scientific Notation +/-
  • Scientific Notation +/-: Significant Digits
  • Scientific Notation x/÷
  • Scientific Notation x/÷: Significant Digits
  • Accuracy
  • Absolute Error
  • Percent Error
  • Precision
  • Deviation
  • Exact Number
  • Graphing
  • Graphing: Direct Relationship
  • Graphing: Indirect (Inverse) Relationship
  • Lab Reports
  • Lab Reports: Purpose
  • Lab Reports: Materials
  • Lab Reports: Method/Procedure
  • Lab Reports: Observations
  • Lab Reports: Calculations
  • Lab Reports: Results/Discussion
  • Lab Reports: Conclusion
  • Chemical Equations
  • Chemical Equations: Listing
  • Rules for Balancing Equations
  • What a Balanced Equation Shows
  • Sample Equations
  • Sample Equations: Hydrogen and Iodide
  • Sample Equations: Hydrogen Bromide and Oxygen
  • Activity Series of the Elements
  • Activity Series of the Elements: Listing of Metals
  • Activity Series of the Elements: Listing of Halogens
  • Mole
  • Mole: Avogadro's Number
  • Mole: Mole of Particles
  • Mole: Molar Mass
  • Formula Calculations
  • Formula Calculations: Determine the Percent Composition of a Compound 
 
  • Formula Calculations: Determine an Empirical Formula
  • Formula Calculations: Determine a Molecular Formula
  • Working Mole Problems
  • Working Mole Problems: Divide in, Multiply Out
  • Stoichiometry Rules
  • Stoichiometry Rules: How to Work Problems
  • Mole/Mass Problems
  • Mass/Mass Problems
  • Gases
  • Gases: Pressure
  • Gases: Temperature
  • Gases: Dalton's Law of Partial Pressures
  • Gases: Avogadro's Principle
  • Gas Laws
  • Gas Laws: Charles's Law
  • Gas Laws: Boyle's Law
  • Gas Laws: Law of Combining Volumes
  • Ideal Gas Law
  • Assumptions of the Kinetic Molecular Theory
  • Atom
  • Atom: Atomic Number
  • Atom: Mass Number
  • Atom: Atomic Mass
  • Atom: Nucleus
  • Atom: Nucleus: Proton
  • Atom: Nucleus: Neutron
  • Atom: Electron
  • Atom: Electron Configuration
  • Atom: Isotopes
  • Atom: Ion
  • Atom: Ion: Cation
  • Atom: Ion: Anion
  • Periodic Chart
  • Periodic Chart: Group/Family
  • Periodic Chart: Period
  • Periodic Chart: Metals
  • Periodic Chart: Nonmetals
  • Periodic Chart: Metalloids
  • Periodic Chart: Halogens
  • Periodic Chart: Noble Gases
  • Periodic Law
  • Periodic Law
  • Periodic Trends: Atomic Radius
  • Periodic Trends: Ionic Radii
  • Periodic Trends: First Ionization Energy 
  • Bonding
  • Bonding: Chemical Bonds
  • Bonding: Ionic Bond
  • Bonding: Covalent Bond
  • Bonding: Nonpolar Covalent
  • Bonding: Polar Covalent Bond
  • Bonding: Electronegativity
  • Representing Electrons and Bonding
  • Representing Electrons and Bonding: Octet Rule
  • Representing Electrons and Bonding: Electron Dot Symbols
  • Representing Electrons and Bonding: Structural Formulas
  • Condensed States of Matter
  • Condensed States of Matter: Intermolecular Forces
  • Condensed States of Matter: Intermolecular Forces: Dispersion Forces
  • Condensed States of Matter: Intermolecular Forces: Dispersion Forces: Molecules
  • Condensed States of Matter: Intermolecular Forces: Dipole-Dipole Forces
  • Condensed States of Matter: Intermolecular Forces: Hydrogen Bonding
  • Condensed States of Matter: Liquids
  • Condensed States of Matter: Liquids: Surface Tension
  • Condensed States of Matter: Liquids: Water
  • Condensed States of Matter: Solids
  • Phase Change - Heating
  • Phase Change - Cooling
  • Solutions 
  • Solutions: Solute
  • Solutions: Solvent
  • Solutions: Solvation
  • Solutions: Hydration
  • Solutions: Dissociation
  • Solutions: Precipitation
  • Solutions: Miscibility
  • Solutions: Solubility
  • Solutions: Solubility: Saturated
  • Solutions: Solubility: Unsaturated
  • Solutions: Solubility: Supersaturated
  • Solutions: Factors Affecting Solubility
  • Molarity
  • Solubility Chart
  • Solubility Chart: Soluble
  • Solubility Chart: Insoluble
  • Ionic Equations
  • Ionic Equations: Spectator Ions
  • Ionic Equations: Net Ionic Equation
  • Ionic Equations: Write an Ionic Equation
  • Molality
  • Colligative Properties
  • Colligative Properties: Boiling Point Elevation
  • Colligative Properties: Freezing Point Depression
  • Heat Changes
  • Heat Changes: Molar Heat
  • Heat Changes: Molar Heat: Exothermic Reaction
  • Heat Changes: Molar Heat: Endothermic Reaction
  • Heat Changes: Specific Heat
  • Heat of Vaporization
  • Heat of Fusion
  • Acids and Bases
  • Acids and Bases: Arrhenius Definitions
  • Acids and Bases: Bronsted Definitions
  • Acids and Bases: Properties
  • Acids and Bases: Properties: Taste
  • Acids and Bases: Properties: Feel
  • Acids and Bases: Properties: Reaction With Metals
  • Acids and Bases: Properties: Electrical Conductivity
  • Acids and Bases: Properties: Indicators
  • Acids and Bases: Properties: Indicators: Litmus
  • Acids and Bases: Properties: Indicators: Phenolphthalein
  • Acids and Bases: Conjugate Acid-Base Pair
  • Acids and Bases: Neutralization
  • Acids and Bases: pH
  • Oxidation/Reduction
  • Oxidation/Reduction: Oxidizing Agents
  • Oxidation/Reduction: Reducing Agents
  • Oxidation/Reduction: "Redox" Reactions
  • Oxidation/Reduction: Oxidation Number
  • Oxidation/Reduction: Rules for Assigning Oxidation Numbers