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Concepts of Chemistry
A textbook for
CH1010-1040
Explorations in Chemistry
The following experiments are intended for a typical 1-year university course in general chemistry. The experiments
are listed in alphabetical order according to the major theme addressed.
- Dynamics: Cell Fractionation
- Dynamics: Infrared Spectroscopy
- Dynamics: NMR
- Equilibrium: Binding of Lewis Bases to the Fe(CN)53- Anion
- Equilibrium: Bronsted-Lowry Acids and Bases
- Equilibrium: Cobalt Complexes
- Equilibrium: Conjugate Acids and Bases
- Equilibrium: Distribution Diagrams
- Equilibrium: Indicators
- Equilibrium: Lewis Adducts of Iodine
- Equilibrium: Solubility
- Equilibrium: Titration of an Amino Acid
- Equilibrium: Vapor Pressure
- Equilibrium and Kinetics: Lewis Base Substitution in an Iron Adduct
- Forces and Bonding: Calorimetry
- Forces and Bonding: Calorimetry 2
- Forces and Bonding: Colligative Properties
- Forces and Bonding: Conductivity
- Forces and Bonding: Gases
- Forces and Bonding: Heat Capacity
- Forces and Bonding: The Intermolecular Forces Project
- Forces and Bonding: The Liquid Project (Incomplete)
- Forces and Bonding: Molar Volume of a Gas
- Forces and Bonding: Phase Distribution
- Forces and Bonding: Solids
- Forces and Bonding: The Temperature Dependence of Vapor Pressure
- Fundamentals: Graphing
- Fundamentals: Temperature
- Kinetics: The Reaction of Benzaldehyde with Acetone
- Kinetics: The Reaction of CrIII with EDTA
- Kinetics: Enzyme Catalysis
- Kinetics: The Fading of Indicators
- Kinetics: The Reaction of Fe(CN)5DMSO3- with N-Methylpyrazinium Cation
- Kinetics: The Reaction of Iodide with Hydrogen Peroxide Using Pseudo-Order Methods (Version
1)
- Kinetics: The Reaction of Iodide with Hydrogen Peroxide (Version 2)
- Kinetics: The Reaction of Iodide with Hydrogen Peroxide Using Initial Rate Methods
- Kinetics: The Reaction of SnII with Methyl Orange
- Molecularity: Atomic Weight of a Metal
- Molecularity: Covalent Molecules
- Molecularity: Fundamental Properties
- Molecularity: The Density Project
- Molecularity: Nuts and Bolts
- Molecularity: Physical and Chemical Separations
- Molecularity: Quanta
- Molecularity: Synthesis of Bis(dithiocarbamato)nickel; Stoichiometry of Reaction
- Molecularity: Who Has the Same Substance?
- Reactivity: The Copper Cycle
- Reactivity: Precipitation
- Reactivity: Precipitation (Version 2)
- Reactivity: Precipitation, Acid-Base, and Redox Reactions
- Reactivity: Synthesis of Kidney Stones
- Reactivity: Synthesis of the Lewis Adduct of CoII with Imidazole; Stoichiometry of
Reaction
- Reactivity: Synthesis of the Lewis Adduct of CuII with Imidazole; Stoichiometry of
Reaction
- Reactivity: Synthesis of the Lewis Adducts of CuII with Amino Acids
- Reactivity: Synthesis of the Lewis Adduct of Ni2+ with Ethylenediamine
- Reactivity: Synthesis of the Lewis Adduct of NiII with Imidazole; Stoichiometry of
Reaction
- Reactivity: Synthesis of the Lewis Adduct of Nickel with Thiosemicarbazide; Stoichiometry of
Reaction
- Reactivity: Synthesis of Potassium Tris(oxalato)ferrate
- Multiple Themes: The Amino Acid Project
- Reactivity: The Metal Project
- Reactivity: The Transition Metal
Project
Laboratory Information
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