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Chemistry

 

Products

- Student Laboratory Kits for Classic AP* Chemistry
Flinn Laboratory Kit Bundle for Classic AP* Chemistry
AP7625
The Flinn Classic AP Chemistry Laboratory Kit Series is available as a cost-saving bundle—everything you need to teach the classic AP Chemistry in one place! Comprehensive bundle includes the following 21 traditional laboratory kits. For more details...
 
Combined Classic and Advanced Inquiry Labs for AP* Chemistry 19-Kit Bundle
AP7740
New standards, classic curriculum—here’s the “best-of-the-best” from both! This 19-Kit Bundle is fully aligned with the updated AP Chemistry standards.We have assembled 19 of the top-notch Flinn Classic and new Flinn Advanced Inquiry labs into one co...
 
Determination of the Empirical Formula of Silver Oxide - AP Chemistry Classic Laboratory Kit
AP8813
Classic AP Requirement #1—Determination of the Formula of a Compound Students decompose silver oxide by heating a sample in a crucible. By using analytical techniques, the empirical formula of silver oxide is determined. The Law of Multiple Proport...
 
Analysis of Aluminum Potassium Sulfate - AP Chemistry Classic Laboratory Kit
AP6354
Classic AP Requirement #2—Determination of the Percentage of Water in a Hydrate Students analyze aluminum potassium sulfate (alum) using three techniques to determine its exact composition. The following properties are determined—melting point, the...
 
Determination of Molar Mass of Gases and Volatile Liquids - AP Chemistry Classic Laboratory Kit
AP8814
Classic AP Requirement #3—Determination of the Molar Mass by Vapor Density The molar masses of specific gases are found by comparing masses of equal volumes of gases at the same temperature and pressure. Oxygen gas is selected as a standard and molar...
 
Molar Mass by Freezing Point Depression - AP Chemistry Classic Laboratory Kit
AP6356
Classic AP Requirement #4—Determination of Molar Mass by Freezing Point Depression   Students determine the molar mass of an unknown substance by measuring the freezing point depression of a solution of the unknown substance and the compound ...
 
Determining the Molar Volume of a Gas - AP Chemistry Classic Laboratory Kit
AP6450
Classic AP Requirement #5—Determination of the Molar Volume of a Gas In this experiment, students determine the volume of one mole of hydrogen gas at standard temperature and pressure (STP). Hydrogen is generated by the reaction of a known mass of ma...
 
Acid–Base Titrations - AP Chemistry Classic Laboratory Kit
AP9083
Classic AP Requirement #6—Standardization of a Solution Using a Primary Standard Classic AP Requirement #7—Determination of Concentration by Acid-Base Titration, Including a Weak Acid or a Weak Base In this three-part laboratory, a basic solution i...
 
Oxidation–Reduction Titrations - AP Chemistry Classic Laboratory Kit
AP8815
Classic AP Requirement #8—Determination of Concentration by Oxidation–Reduction Titration Students standardize a solution of potassium permanganate by redox titration with a standard solution of iron(II) ions. They will then take this potassium perma...
 
Determining the Stoichiometry of Chemical Reactions - AP Chemistry Classic Laboratory Kit
AP6451
Classic AP Requirement #9—Determination of Mass and Mole Relationship in a Chemical Reaction Students learn the method of continuous variation to determine the mole ratio of the reactants and predict the chemical formula of the product for specific c...
 
Determination of Ka of Weak Acids - AP Chemistry Classic Laboratory Kit
AP6358
Classic AP Requirement #10—Determination of the Equilibrium Constant for a Chemical Reaction Students measure the Ka value for the ionization of two unknown weak acids. Solutions containing equal molar amounts of the weak acids and their conjugate ba...
 
Selecting Indicators for Acid-Base Titrations - AP Chemistry Classic Laboratory Kit
AP6452
Classic AP Requirement #11—Determination of the Appropriate Indicators for Various Acid-Base TitrationsStudents select the appropriate indicators for two titrations—a weak acid solution titrated with a strong base solution and a weak base solution ti...
 
Kinetics of a Reaction - AP Chemistry Classic Laboratory Kit
AP5913
Classic AP requirement #12—Determination of the Rate of a Reaction and Its Order A microscale laboratory consisting of a comprehensive, quantitative kinetics activity. Students study the kinetics of a clock reaction involving the oxidation of iodide ...
 
Kinetics of a Redox Reaction - AP Chemistry Classic Laboratory Kit
AP7511
Classic AP Requirement #12b—Determination of the Rate of a Reaction and Its Order In this technology-based lab, students study the rate of the reaction of FD&C Red Dye #3 with sodium hypochlorite. The color change occurring in this oxidation–redu...
 
Thermodynamics - Enthalpy of Reaction and Hess's Law - AP Chemistry Classic Laboratory Kit
AP8832
Classic AP Requirement #13—Determination of Enthalpy Change Associated with a Reaction In this experiment, students verify Hess's Law. Three acid-base reactions, chosen so that the third reaction equation equals the first reaction minus the second, a...
 
Separation and Qualitative Determination of Cations & Anions - AP Chemistry Classic Laboratory Kit
AP6453
Classic AP Requirement #14—Separation and Qualitative Analysis of Cations and Anions In this semi-microscale laboratory, students analyze two solution sets of four cations and four anions. For each set, a specific qualitative scheme is followed to se...
 
Synthesis and Analysis of a Coordination Compound - AP Chemistry Classic Laboratory Kit
AP6454
Classic AP Requirement #15—Synthesis of a Coordination Compound and Its Chemical Analysis Students synthesize the coordination compound potassium trioxalatoferrate(III) trihydrate, K3[Fe(C2O4)3]•3H2O. Once produced, the product is identified by color...
 
Gravimetric Analysis of a Metal Carbonate - AP Chemistry Classic Laboratory Kit
AP6378
Classic AP Requirement #16—Analytical Gravimetric Determination In this laboratory, students determine the identity of a Group 1 metal carbonate by gravimetric analysis. The unknown is weighed, dissolved in water, and precipitated as calcium carbonat...
 
The Determination of Keq for FeSCN2+ - AP Chemistry Classic Laboratory Kit
AP6352
Classic AP Requirement #17—Colorimetric or Spectrophotometric Analysis In this two-part lab, students will determine the equilibrium constant for the reaction of iron(III) ions with thiocyanate ions (SCN-). In Part 1, a series of reference solutions ...
 
Liquid Chromatography - AP Chemistry Classic Laboratory Kit
AP9093
Classic AP Requirement #18—Separation by Chromatography  Separate different colored dyes found in grape Kool-Aid® using chromatography methods that mimic popular methods used in research and industry. Miniature liquid chromatography columns ...
 
pH Properties of Buffer Solutions - AP Chemistry Classic Laboratory Kit
AP6445
Classic AP Requirement 19—Preparation and Properties of Buffer Solutions In this laboratory, students investigate the properties of buffer solutions. The students make two ideal buffer solutions, one consisting of a weak acid and its conjugate base, ...
 
An Activity Series - AP Chemistry Classic Laboratory Kit
AP5914
Classic AP Requirement #20—Determination of an Electrochemical Series Students study a series of metals and nonmetals to determine their relative reactivity, then rank them according to their reactivity in an activity series. First, the reactivity of...
 
Electrochemical Cells - AP Chemistry Classic Laboratory Kit
AP9092
Classic AP Requirement #21—Measurements Using Electrochemical Cells and Electroplating A microscale series of half-cells is constructed by placing a piece of metal into a solution of the metal's ions. The half-cells are connected by a salt bridge and...
 
Synthesis, Isolation and Purification of an Ester - AP Chemistry Classic Laboratory Kit
AP9094
Classic AP Requirement #22—Synthesis, Purification and Analysis of an Organic Compound Students perform a quantitative esterification reaction to produce ethyl acetate. The lab consists of three parts—in Part 1, the ethyl acetate is prepared, in Part...
 
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