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What Works Clearinghouse Rating
Peer reviewedLin, King-Chuen – Journal of Chemical Education, 1988
Discusses the concept of kinetic versus thermodynamic control of reactions. Explains on the undergraduate level (1) the role of kinetic and thermodynamic control in kinetic equations, (2) the influence of concentration and temperature upon the reaction, and (3) the application of factors one and two to synthetic chemistry. (MVL)
Descriptors: Chemical Equilibrium, Chemical Reactions, Chemistry, College Science
Armstrong, Matt; Comitz, Richard L.; Biaglow, Andrew; Lachance, Russ; Sloop, Joseph – Chemical Engineering Education, 2008
A novel approach to the Chemical Engineering curriculum sequence of courses at West Point enabled our students to experience a much more realistic design process, which more closely replicated a real world scenario. Students conduct the synthesis in the organic chemistry lab, then conduct computer modeling of the reaction with ChemCad and…
Descriptors: Organic Chemistry, Chemical Engineering, Science Instruction, Science Laboratories
Desjardins, Steven G. – Journal of Chemical Education, 2008
In this paper we describe an interdisciplinary course on dynamics that is appropriate for nonscience majors. This course introduces ideas about mathematical modeling using examples based on pendulums, chemical kinetics, and population dynamics. The unique emphasis for a nonmajors course is on chemical reactions as dynamical systems that do more…
Descriptors: Majors (Students), Kinetics, Chemistry, Spreadsheets
Peer reviewedRios, Angel; And Others – Journal of Chemical Education, 1986
Describes a method of flow injection analysis intended for calculation of complex-formation and redox reaction stoichiometries based on a closed-loop configuration. The technique is suitable for use in undergraduate laboratories. Information is provided for equipment, materials, procedures, and sample results. (JM)
Descriptors: Chemical Reactions, Chemistry, College Science, Higher Education
Peer reviewedEarl, Boyd L. – Journal of Chemical Education, 1989
Notes that the rigorous kinetic theory, based on the Boltzmann equation, does not yield exact results although some texts claim this to be so. Stresses that they should be presented as approximations with an indication that refinements in the values are possible. (MVL)
Descriptors: Chemistry, College Science, Diffusion (Physics), Inorganic Chemistry
Spencer, Jordan L. – Chemical Engineering Education, 2006
This paper describes a multifaceted agitation and mixing experiment. The relatively inexpensive apparatus includes a variable-speed stirrer motor, two polycarbonate tanks, and an instrumented torque table. Students measure torque as a function of stirrer speed, and use conductive tracer data to estimate two parameters of a flow model. The effect…
Descriptors: Science Experiments, Laboratory Equipment, Heat, Measurement Techniques
Hosler, W. W. – Journal of Physical Education and Recreation, 1977
Various techniques for recording high speed athletic activities on videotape are discussed. (MJB)
Descriptors: Athletics, Equipment Evaluation, Equipment Utilization, Kinetics
Johnson, James; Siegel, Donald – Research Quarterly, 1978
Descriptors: Data Collection, Kinetics, Motion, Physical Activities
Peer reviewedMata-Perez, Fernando; Perez-Benito, Joaquin F. – Journal of Chemical Education, 1987
Presented is a method of obtaining accurate rate constants for autocatalytic reactions. The autocatalytic oxidation of dimethylamine by permanganate ion in aqueous solution is used as an example. (RH)
Descriptors: Chemical Reactions, Chemistry, College Science, Kinetics
Peer reviewedOstry, David J.; And Others – Developmental Psychology, 1984
Pulsed ultrasound was used to study tongue movements in the speech of children from 3 to 11 years of age. Speech data attained were characteristic of systems that can be described by second-order differential equations. Relationships observed in these systems may indicate that speech control involves tonic and phasic muscle inputs. (Author/RH)
Descriptors: Age Differences, Kinetics, Motion, Speech
Peer reviewedFinlayson, Muriel; Lee, Donald G. – Journal of Chemical Education, 1971
Descriptors: Chemistry, College Science, Instructional Materials, Kinetics
Peer reviewedNiaz, Mansoor – Instructional Science, 2000
Describes a study that was designed to develop a framework for examining the way in which chemistry textbooks describe the kinetic theory and related issues. The framework was developed by a rational reconstruction of the kinetic molecular theory of gases based on historians and philosophers of science. (Contains 102 references.)(Author/LRW)
Descriptors: Chemistry, History, Kinetic Molecular Theory, Textbook Research
Peer reviewedMitchell, Richard S. – Journal of Chemical Education, 1996
Describes a combination of solutions that can be used in the study of kinetics using the iodine clock reaction. The combination slows down degradation of the prepared solutions and can be used successfully for several weeks. (JRH)
Descriptors: Chemical Reactions, Chemistry, Higher Education, Kinetics
Gauthier, N. – International Journal of Mathematical Education in Science and Technology, 2005
The equation of motion for a mass that moves under the influence of a central, inverse-square force is formulated and solved as a problem in complex variables. To find the solution, the constancy of angular momentum is first established using complex variables. Next, the complex position coordinate and complex velocity of the particle are assumed…
Descriptors: Motion, Scientific Concepts, Kinetics, Mechanics (Physics)
Peer reviewedWatkins, John J.; Bo Zhang; White, Henry S. – Journal of Chemical Education, 2005
Electrochemical studies using nanometer-scaled electrodes are leading to better insights into electrochemical kinetics, interfacial structure, and chemical analysis. Various methods of preparing electrodes of nanometer dimensions are discussed and a few examples of their behavior and applications in relatively simple electrochemical experiments…
Descriptors: Chemistry, Kinetics, Scientific Methodology, Science Experiments

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