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Showing 61 to 75 of 131 results Save | Export
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Noey, Elizabeth; Curtis, Jeff C.; Tam, Sylvia; Pham, David M.; Jones, Ella F. – Journal of Chemical Education, 2011
In this experiment students are exposed to concepts in inorganic synthesis and various spectroscopies as applied to a tri-tungsten cluster with applications in biomedical imaging. The tungsten-acetate cluster, Na[W[superscript 3](mu-O)[subscript 2](CH[superscript 3]COO)[superscript 9]], 1, was synthesized and characterized by [superscript 1]H-NMR,…
Descriptors: Inorganic Chemistry, Spectroscopy, Biomedicine, Science Laboratories
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Evans, Alexandra L.; Messersmith, Reid E.; Green, David B.; Fritsch, Joseph M. – Journal of Chemical Education, 2011
We present an integrative laboratory investigation incorporating skills from inorganic chemistry, analytical instrumentation, and physical chemistry applied to a laboratory-scale model of the environmental problem of chlorinated ethylenes in groundwater. Perchloroethylene (C[subscript 2]Cl[subscript 4], PCE) a common dry cleaning solvent,…
Descriptors: Inorganic Chemistry, Water Pollution, Chemistry, Laboratory Experiments
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Saini, Vipin K.; Pires, Joao – Journal of Chemical Education, 2012
Nanoporous zeolite foam is an interesting crystalline material with an open-cell microcellular structure, similar to polyurethane foam (PUF). The aluminosilicate structure of this material has a large surface area, extended porosity, and mechanical strength. Owing to these properties, this material is suitable for industrial applications such as…
Descriptors: Inorganic Chemistry, Laboratory Experiments, Science Experiments, Hands on Science
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Campbell, Dean J.; Villarreal, Richard B.; Fitzjarrald, Tamara J. – Journal of Chemical Education, 2012
The purpose of this laboratory experiment is to introduce aspects of materials chemistry, such as polymers and nanoparticle synthesis and properties, to students by their fabrication of a take-home polydimethylsiloxane window cling containing gold or silver nanoparticles. This lab covers small portions of three successive laboratory periods and is…
Descriptors: Structural Elements (Construction), Inorganic Chemistry, Laboratory Experiments, Science Instruction
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Swavey, Shawn – Journal of Chemical Education, 2010
Undergraduate laboratories rarely involve lanthanide coordination chemistry. This is unfortunate in light of the ease with which many of these complexes are made and the interesting and instructive photophysical properties they entail. The forbidden nature of the 4f transitions associated with the lanthanides is overcome by incorporation of…
Descriptors: Inorganic Chemistry, Spectroscopy, Metallurgy, Energy
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Clark, Rose A.; Stock, Anne E.; Zovinka, Edward P. – Journal of Chemical Education, 2012
Training future chemists to be aware of the environmental impact of their work is of fundamental importance to global society. To convince chemists to embrace sustainability, the integration of green chemistry across the entire chemistry curriculum is a necessary step. This experiment expands the reach of green chemistry techniques into the…
Descriptors: Inorganic Chemistry, Science Instruction, College Science, Conservation (Environment)
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de los Santos, Desiree´ M.; Montes, Antonio; Sa´nchez-Coronilla, Antonio; Navas, Javier – Journal of Chemical Education, 2014
A Project Based Learning (PBL) methodology was used in the practical laboratories of the Advanced Physical Chemistry department. The project type proposed simulates "real research" focusing on sol-gel synthesis and the application of the obtained sol as a stone consolidant. Students were divided into small groups (2 to 3 students) to…
Descriptors: Active Learning, Student Projects, Laboratory Experiments, Simulation
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Miecznikowski, John R.; Caradonna, John P.; Foley, Kathleen M.; Kwiecien, Daniel J.; Lisi, George P.; Martinez, Anthony M. – Journal of Chemical Education, 2011
A three-week laboratory experiment, which introduces students in an advanced inorganic chemistry course to air-sensitive chemistry and catalysis, is described. During the first week, the students synthesize RuCl[subscript 2](PPh[subscript 3])[subscript 3]. During the second and third weeks, the students characterize the formed coordination…
Descriptors: Spectroscopy, Inorganic Chemistry, Laboratory Experiments, Science Instruction
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Sumida, Kenji; Arnold, John – Journal of Chemical Education, 2011
Metal-organic frameworks (MOFs) are crystalline materials that are composed of an infinite array of metal nodes (single ions or clusters) linked to one another by polyfunctional organic compounds. Because of their extraordinary surface areas and high degree of control over the physical and chemical properties, these materials have received much…
Descriptors: Inorganic Chemistry, Organic Chemistry, Metallurgy, Laboratory Experiments
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Bailey, James A. – Journal of Chemical Education, 2011
Although there are numerous inorganic model systems that are readily presented as undergraduate laboratory experiments in bioinorganic chemistry, there are few examples that explore the inorganic chemistry of actual biological molecules. We present a laboratory experiment using the oxygen-binding protein myoglobin that can be easily incorporated…
Descriptors: Inorganic Chemistry, Laboratory Experiments, Undergraduate Study, College Science
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Vohs, Jason K.; Bentz, Amy; Eleamos, Krystal; Poole, John; Fahlman, Bradley D. – Journal of Chemical Education, 2010
Chemical vapor deposition (CVD) is a process routinely used to produce thin films of materials via decomposition of volatile precursor molecules. Unfortunately, the equipment required for a conventional CVD experiment is not practical or affordable for many undergraduate chemistry laboratories, especially at smaller institutions. In an effort to…
Descriptors: Inorganic Chemistry, College Science, Science Instruction, Laboratory Equipment
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Linenberger, Kimberly; Bretz, Stacey Lowery; Crowder, Michael W.; McCarrick, Robert; Lorigan, Gary A.; Tierney, David L. – Journal of Chemical Education, 2011
With an increased focus on integrated upper-level laboratories, we present an experiment integrating concepts from inorganic, biological, and physical chemistry content areas. Students investigate the effects of ligand strength on the spectroscopic properties of the heme center in myoglobin using UV-vis, [superscript 1]H NMR, and EPR…
Descriptors: Inorganic Chemistry, Biology, Physics, Chemistry
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Vaughan, Pamela P.; Cochran, Michael; Haubrich, Nicole – Journal of Chemical Education, 2010
An experiment exploring the photochemical properties of quinones was developed. Their unique photochemistry and highly reactive nature make them an ideal class of compounds for examining structure-activity relationships. For several substituted quinones, photochemical reactivity was related to structure and ultimately to the Gibbs energy for…
Descriptors: Chemistry, Laboratory Experiments, Science Experiments, Inorganic Chemistry
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Kirk, Sarah R.; Silverstein, Todd P.; McFarlane Holman, Karen L. – Journal of Chemical Education, 2008
This laboratory project is one component of a semester-long advanced biochemistry laboratory course that uses several complementary techniques to study tRNA[superscript Phe] conformational changes induced by ligand binding. In this article we describe a set of experiments in which students assay metal-catalyzed hydrolysis of tRNA[superscript Phe]…
Descriptors: Inorganic Chemistry, Biochemistry, Laboratory Experiments
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Hammond, Daniel G.; Bridgham, April; Reichert, Kara; Magers, Martin – Journal of Chemical Education, 2010
Much of our understanding of metabolic pathways has resulted from the use of chemical and isotopic labels. In this experiment, a heavy isotope of carbon, [superscript 13]C, is used to label the product of the well-known RuBisCO enzymatic reaction. This is a key reaction in photosynthesis that converts inorganic carbon to organic carbon; a process…
Descriptors: Botany, Biochemistry, Scientific Concepts, Scientific Methodology
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