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Sales, Eric S.; Silveira, Gustavo P. – Journal of Chemical Education, 2015
Lactone-size identification of [subscript D]-ribonolactone derivatives has been debated for four decades due to complex lactone-ring rearrangements and acetal migration. This laboratory experiment for an upper-division undergraduate organic chemistry laboratory course describes a fast and reliable assignment of lactone-size derivatives from…
Descriptors: Science Instruction, Spectroscopy, Science Laboratories, Laboratory Experiments
Hii, King Kuok; Rzepa, Henry S.; Smith, Edward H. – Journal of Chemical Education, 2015
The coupling of a student experiment involving the preparation and use of a catalyst for the asymmetric epoxidation of an alkene with computational simulations of various properties of the resulting epoxide is set out in the form of a software toolbox from which students select appropriate components. At the core of these are the computational…
Descriptors: Organic Chemistry, Laboratory Experiments, Science Experiments, College Science
Clark, Ted M.; Chamberlain, Julia M. – Journal of Chemical Education, 2014
An activity supporting the PhET interactive simulation, Models of the Hydrogen Atom, has been designed and used in the laboratory portion of a general chemistry course. This article describes the framework used to successfully accomplish implementation on a large scale. The activity guides students through a comparison and analysis of the six…
Descriptors: Simulation, Science Laboratories, Science Instruction, Molecular Structure
Euler, Manfred – Physics Education, 2013
A hands-on model of scanning tunnelling microscopy (STM) is presented. It uses near-field imaging with sound and computer assisted visualization to create acoustic mappings of resonator arrangements. Due to the (partial) analogy of matter and sound waves the images closely resemble STM scans of atoms. Moreover, the method can be extended to build…
Descriptors: Science Instruction, Physics, Hands on Science, Laboratory Equipment
Marzzacco, Charles J.; Baum, J. Clayton – Journal of Chemical Education, 2011
A density functional theory computational chemistry exercise on the structure and vibrational spectrum of the carbene hydroxymethylene is presented. The potential energy curve for the decomposition reaction of the carbene to formaldehyde and the geometry of the transition state are explored. The results are in good agreement with recent…
Descriptors: Chemistry, Science Instruction, Scientific Concepts, College Science
Wang, Lihua – Journal of Chemical Education, 2012
A new method is introduced for teaching group theory analysis of the infrared spectra of organometallic compounds using molecular modeling. The main focus of this method is to enhance student understanding of the symmetry properties of vibrational modes and of the group theory analysis of infrared (IR) spectra by using visual aids provided by…
Descriptors: Teaching Methods, Visual Aids, Inorganic Chemistry, Science Instruction
Hirayama, Satoshi; Steer, Ronald P. – Journal of Chemical Education, 2010
The near-UV spectrum of benzene is used to illustrate the effects of variations in instrument spectral bandwidth on absorbance and molar absorptivity measurements and on the independence of values of quantities such as the oscillator strength that are based on integrated absorptivity. Excel-based computer simulations are provided that help develop…
Descriptors: Science Activities, Spectroscopy, Molecular Structure, Measurement Techniques
A Simple and Convenient Method of Multiple Linear Regression to Calculate Iodine Molecular Constants
Cooper, Paul D. – Journal of Chemical Education, 2010
A new procedure using a student-friendly least-squares multiple linear-regression technique utilizing a function within Microsoft Excel is described that enables students to calculate molecular constants from the vibronic spectrum of iodine. This method is advantageous pedagogically as it calculates molecular constants for ground and excited…
Descriptors: Multiple Regression Analysis, Molecular Structure, Science Instruction, Computer Uses in Education
Debska, Barbara; Guzowska-Swider, Barbara – Journal of Chemical Education, 2007
The article presents the way in which freeware Internet programs can be applied to teach [superscript 1]H NMR spectroscopy. The computer programs described in this article are part of the educational curriculum that explores spectroscopy and spectra interpretation. (Contains 6 figures.)
Descriptors: Spectroscopy, Molecular Structure, Internet, Computer Software

Birk, James P., Ed. – Journal of Chemical Education, 1990
Four microcomputer applications are presented including: "Computer Simulated Process of 'Lead Optimization': A Student-Interactive Program,""A PROLOG Program for the Generation of Molecular Formulas,""Determination of Inflection Points from Experimental Data," and "LAOCOON PC: NMR Simulation on a Personal Computer." Software, availability,…
Descriptors: Atomic Structure, Chemical Analysis, Chemistry, College Science

Cheatham, Steve – Journal of Chemical Education, 1989
Discusses the nature of a nuclear magnetic resonance (NMR) experiment, the techniques used, the types of structural and dynamic information obtained, and how one can view and refine structures using computer graphics techniques in combination with NMR data. Provides several spectra and a computer graphics image from B-form DNA. (MVL)
Descriptors: Biochemistry, Chemical Analysis, Chemical Bonding, Chemical Nomenclature

Journal of Chemical Education, 1989
Presented are reviews of two computer software packages for Apple II computers; "Organic Spectroscopy," and "Videodisc Display Program" for use with "The Periodic Table Videodisc." A sample spectrograph from "Organic Spectroscopy" is included. (CW)
Descriptors: Atomic Structure, Chemistry, College Science, Computer Software Reviews

Davis, Larry P.; And Others – Journal of Chemical Education, 1987
Describes a personalized method of instruction being used in junior-level physical chemistry classes which uses computer-aided instruction (CAI) and computer-managed instruction (CMI). Claims this results in more instructor-student interaction, better use of classroom time, and better scores on standardized examinations. (TW)
Descriptors: Academic Achievement, Chemistry, College Science, Computer Assisted Instruction