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Nyasulu, Frazier; Barlag, Rebecca; Wise, Lindy; McMills, Lauren – Journal of Chemical Education, 2013
The thermodynamic properties of weak acid ionization reactions are determined. The thermodynamic properties are corresponding values of the absolute temperature (T), the weak acid equilibrium constant (K[subscript a]), the enthalpy of ionization (delta[subscript i]H[degrees]), and the entropy of ionization (delta[subscript i]S[degrees]). The…
Descriptors: Chemistry, Science Instruction, Science Laboratories, College Science
Nyasulu, Frazier; Nething, Daniel; Barlag, Rebecca; Wise, Lindy; Arthasery, Phyllis – Journal of Chemical Education, 2012
In this general chemistry laboratory exercise, the absorbance of [CoCl([superscript i]PrOH)[subscript 3]][superscript +], where [superscript i]PrOH is isopropyl alcohol, is used to determine the equilibrium constants for its reaction with methanol to form [CoCl([superscript i]PrOH)[subscript 2](MeOH)[subscript 3]][superscript +] in the temperature…
Descriptors: College Science, Chemistry, Scientific Concepts, Science Laboratories
Nyasulu, Frazier; McMills, Lauren; Barlag, Rebecca – Journal of Chemical Education, 2013
A laboratory to determine the equilibrium constants of weak acid negative weak base reactions is described. The equilibrium constants of component reactions when multiplied together equal the numerical value of the equilibrium constant of the summative reaction. The component reactions are weak acid ionization reactions, weak base hydrolysis…
Descriptors: Science Laboratories, Science Instruction, Secondary School Science, College Science
Nyasulu, Frazier; Barlag, Rebecca – Journal of Chemical Education, 2011
The well-known colorimetric determination of the equilibrium constant of the iron(III-thiocyanate complex is simplified by preparing solutions in a cuvette. For the calibration plot, 0.10 mL increments of 0.00100 M KSCN are added to 4.00 mL of 0.200 M Fe(NO[subscript 3])[subscript 3], and for the equilibrium solutions, 0.50 mL increments of…
Descriptors: Chemistry, Science Instruction, Scientific Principles, Science Laboratories
Nyasulu, Frazier; Moehring, Michael; Arthasery, Phyllis; Barlag, Rebecca – Journal of Chemical Education, 2011
The acid ionization constant, K[subscript a], of acetic acid and the base ionization constant, K[subscript b], of ammonia are determined easily and rapidly using a datalogger, a pH sensor, and a conductivity sensor. To decrease sample preparation time and to minimize waste, sequential aliquots of a concentrated standard are added to a known volume…
Descriptors: Chemistry, Science Instruction, Science Laboratories, Scientific Principles
Barlag, Rebecca; Nyasulu, Frazier – Journal of Chemical Education, 2011
The empirical formulas of four cupric hydrates are determined by measuring the absorbance in aqueous solution. The Beer-Lambert Law is verified by constructing a calibration curve of absorbance versus known Cu[superscript 2+](aq) concentration. A solution of the unknown hydrate is prepared by using 0.2-0.3 g of hydrate, and water is added such…
Descriptors: Chemistry, Heat, Scientific Concepts, Water
Barlag, Rebecca; Nyasulu, Frazier – Journal of Chemical Education, 2010
A wash bottle water displacement scheme is used to determine the kinetics of the iodide-catalyzed H[subscript 2]O[subscript 2] decomposition reaction. The reagents (total volume 5.00 mL) are added to a test tube that is placed in a wash bottle containing water. The mass of the water displaced in [approximately]60 s is measured. The reaction is…
Descriptors: Science Activities, Kinetics, Science Laboratories, Scientific Concepts