NotesFAQContact Us
Collection
Advanced
Search Tips
50 Years of ERIC
50 Years of ERIC
The Education Resources Information Center (ERIC) is celebrating its 50th Birthday! First opened on May 15th, 1964 ERIC continues the long tradition of ongoing innovation and enhancement.

Learn more about the history of ERIC here. PDF icon

Showing 1 to 15 of 345 results
Peer reviewed Peer reviewed
Direct linkDirect link
Rodgers, Glen E. – Journal of Chemical Education, 2014
A visually attractive interconnected network of ideas that helps general and second-year inorganic chemistry students make sense of the descriptive inorganic chemistry of the main-group elements is presented. The eight network components include the periodic law, the uniqueness principle, the diagonal effect, the inert-pair effect, the…
Descriptors: Science Instruction, Inorganic Chemistry, Scientific Concepts, Undergraduate Study
Peer reviewed Peer reviewed
Direct linkDirect link
Green, Malcolm L. H.; Parkin, Gerard – Journal of Chemical Education, 2014
The Covalent Bond Classification (CBC) method provides a means to classify covalent molecules according to the number and types of bonds that surround an atom of interest. This approach is based on an elementary molecular orbital analysis of the bonding involving the central atom (M), with the various interactions being classified according to the…
Descriptors: Science Instruction, Inorganic Chemistry, College Science, Energy
Peer reviewed Peer reviewed
Direct linkDirect link
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
Peer reviewed Peer reviewed
Direct linkDirect link
Sattsangi, Prem D. – Journal of Chemical Education, 2014
A laboratory method for teaching inorganic qualitative analysis and chemical equations is described. The experiment has been designed to focus attention on cations and anions that react to form products. This leads to a logical approach to understand and write chemical equations. The procedure uses 3 mL plastic micropipettes to store and deliver…
Descriptors: Science Laboratories, Qualitative Research, Science Instruction, Inorganic Chemistry
Peer reviewed Peer reviewed
Direct linkDirect link
Pedersen, Henrik – Journal of Chemical Education, 2014
Chemical vapor deposition (CVD) is a process commonly used for the synthesis of thin films for several important technological applications, for example, microelectronics, hard coatings, and smart windows. Unfortunately, the complexity and prohibitive cost of CVD equipment makes it seldom available for undergraduate chemistry students. Here, a…
Descriptors: Science Experiments, Inorganic Chemistry, Undergraduate Students, Hands on Science
Peer reviewed Peer reviewed
Direct linkDirect link
Whited, Matthew T.; Hofmeister, Gretchen E. – Journal of Chemical Education, 2014
Experiments are described for the reliable small-scale glovebox preparation of CpMo(CO)[subscript 3](CH[subscript 3]) and acetyl derivatives thereof through phosphine-induced migratory insertion. The robust syntheses introduce students to a variety of organometallic reaction mechanisms and glovebox techniques, and they are easily carried out…
Descriptors: College Science, Science Instruction, Inorganic Chemistry, Organic Chemistry
Peer reviewed Peer reviewed
Direct linkDirect link
Berg, Steffen; Ghosh, Abhik – Journal of Chemical Education, 2013
In a recent article by the authors, the suggestion was made that arrow pushing, a widely used tool in organic chemistry, could also be profitably employed in the teaching of introductory inorganic chemistry. A number of relatively simple reactions were used to illustrate this thesis, raising the question whether the same approach might rationalize…
Descriptors: Science Instruction, College Science, Inorganic Chemistry, Teaching Methods
Peer reviewed Peer reviewed
Direct linkDirect link
Bridgeman, Adam J.; Schmidt, Timothy W.; Young, Nigel A. – Journal of Chemical Education, 2013
The stretching modes of ML[subscript "x"] complexes have the same symmetry as the atomic orbitals on M that are used to form its s bonds. In the exercise suggested here, the atomic orbitals are used to derive the form of the stretching modes without the need for formal group theory. The analogy allows students to help understand many…
Descriptors: College Science, Science Instruction, Undergraduate Study, Inorganic Chemistry
Peer reviewed Peer reviewed
Direct linkDirect link
Thalos, Mariam – Science & Education, 2013
Chemistry possesses a distinctive theoretical lens--a distinctive set of theoretical concerns regarding the dynamics and transformations of a perplexing variety of organic and nonorganic substances--to which it must be faithful. Even if it is true that chemical facts bear a special (reductive) relationship to physical facts, nonetheless it will…
Descriptors: Science Instruction, Chemistry, Teaching Methods, Theories
Peer reviewed Peer reviewed
Direct linkDirect link
Johnson, Adam R. – Journal of Chemical Education, 2013
A molecular orbital (MO) diagram, especially its frontier orbitals, explains the bonding and reactivity for a chemical compound. It is therefore important for students to learn how to construct one. The traditional methods used to derive these diagrams rely on linear algebra techniques to combine ligand orbitals into symmetry-adapted linear…
Descriptors: Inorganic Chemistry, Molecular Structure, Visual Aids, College Science
Peer reviewed Peer reviewed
Direct linkDirect link
Mattson, Bruce; Foster, Wendy; Greimann, Jaclyn; Hoette, Trisha; Le, Nhu; Mirich, Anne; Wankum, Shanna; Cabri, Ann; Reichenbacher, Claire; Schwanke, Erika – Journal of Chemical Education, 2013
The hydrogenation of alkenes by heterogeneous catalysts has been studied for 80 years. The foundational mechanism was proposed by Horiuti and Polanyi in 1934 and consists of three steps: (i) alkene adsorption on the surface of the hydrogenated metal catalyst, (ii) hydrogen migration to the beta-carbon of the alkene with formation of a delta-bond…
Descriptors: Science Instruction, College Science, Inorganic Chemistry, Undergraduate Study
Peer reviewed Peer reviewed
Direct linkDirect link
Horikoshi, Ryo; Kobayashi, Yoji; Kageyama, Hiroshi – Journal of Chemical Education, 2013
Catalysis with transition-metal complexes is a part of the inorganic chemistry curriculum and a challenging topic for upper-level undergraduate and graduate students. A hands-on teaching aid has been developed for use during conventional lectures to help students understand these catalytic reactions. A unique method of illustrating the…
Descriptors: Science Instruction, Inorganic Chemistry, Hands on Science, Scientific Concepts
Peer reviewed Peer reviewed
Direct linkDirect link
Rodriguez-Fernandez, Emilio – Journal of Chemical Education, 2013
By using cardboard models that resemble propellers, the students of inorganic courses can easily visualizing the distinct rotation of optical isomers. These propellers rotate clockwise or counterclockwise when they are dropped from a certain height or in the presence of wind. (Contains 1 figure.)
Descriptors: Science Instruction, Inorganic Chemistry, Scientific Concepts, College Science
Peer reviewed Peer reviewed
Direct linkDirect link
Sirovetz, Brian J.; Walters, Nicole E.; Bender, Collin N.; Lenivy, Christopher M.; Troup, Anna S.; Predecki, Daniel P.; Richardson, John N.; Zaleski, Curtis M. – Journal of Chemical Education, 2013
Metallacrowns are a versatile class of inorganic compounds with uses in several areas of chemistry. Students engage in a multiweek, upper-division inorganic laboratory that explores four different metallacrown compounds: Fe[superscript III](O[subscript 2]CCH[subscript 3])[subscript 3][9-MC[subscript Fe][superscript III][subscript…
Descriptors: Science Instruction, Inorganic Chemistry, College Science, Undergraduate Study
Peer reviewed Peer reviewed
Direct linkDirect link
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
Previous Page | Next Page »
Pages: 1  |  2  |  3  |  4  |  5  |  6  |  7  |  8  |  9  |  10  |  11  |  ...  |  23