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Showing 1 to 15 of 19 results Save | Export
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Ragno, Rino; Esposito, Valeria; Di Mario, Martina; Masiello, Stefano; Viscovo, Marco; Cramer, Richard D. – Journal of Chemical Education, 2020
The increasing use of information technology in the discovery of new molecular entities encourages the use of modern molecular-modeling tools to help teach important concepts of drug design to chemistry and pharmacy undergraduate students. In particular, statistical models such as quantitative structure--activity relationships (QSAR)--often as its…
Descriptors: Chemistry, Computer Uses in Education, Pharmaceutical Education, Graduate Students
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Rossi, Sergio; Benaglia, Maurizio; Brenna, Davide; Porta, Riccardo; Orlandi, Manuel – Journal of Chemical Education, 2015
A simple procedure to convert protein data bank files (.pdb) into a stereolithography file (.stl) using VMD software (Virtual Molecular Dynamic) is reported. This tutorial allows generating, with a very simple protocol, three-dimensional customized structures that can be printed by a low-cost 3D-printer, and used for teaching chemical education…
Descriptors: Visual Aids, Models, Printing, Chemistry
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Martin, Christopher B.; Vandehoef, Crissie; Cook, Allison – Journal of Chemical Education, 2015
A hands-on activity appropriate for first-semester general chemistry students is presented that combines traditional VSEPR methods of predicting molecular geometries with introductory use of molecular modeling. Students analyze a series of previously calculated output files consisting of several molecules each in various geometries. Each structure…
Descriptors: Chemistry, Hands on Science, Science Activities, Molecular Structure
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Terrell, Cassidy R.; Listenberger, Laura L. – Biochemistry and Molecular Biology Education, 2017
Recognizing that undergraduate students can benefit from analysis of 3D protein structure and function, we have developed a multiweek, inquiry-based molecular visualization project for Biochemistry I students. This project uses a virtual model of cyclooxygenase-1 (COX-1) to guide students through multiple levels of protein structure analysis. The…
Descriptors: Undergraduate Students, College Science, Biochemistry, Science Instruction
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Robertson, Michael J.; Jorgensen, William L. – Journal of Chemical Education, 2015
Orbital theory provides a powerful tool for rationalizing and understanding many phenomena in chemistry. In most introductory chemistry courses, students are introduced to atomic and molecular orbitals in the form of two-dimensional drawings. In this work, we describe a general method for producing 3D printing files of orbital models that can be…
Descriptors: Organic Chemistry, Visual Aids, Theories, Molecular Structure
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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
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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
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Al-Balushi, Sulaiman M.; Al-Hajri, Sheikha H. – Chemistry Education Research and Practice, 2014
The purpose of the current study is to explore the impact of associating animations with concrete models on eleventh-grade students' comprehension of different visual representations in organic chemistry. The study used a post-test control group quasi-experimental design. The experimental group (N = 28) used concrete models, submicroscopic…
Descriptors: Organic Chemistry, Animation, Models, Visual Aids
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Springer, Michael T. – Journal of Chemical Education, 2014
Several articles suggest how to incorporate computer models into the organic chemistry laboratory, but relatively few papers discuss how to incorporate these models broadly into the organic chemistry lecture. Previous research has suggested that "manipulating" physical or computer models enhances student understanding; this study…
Descriptors: Science Instruction, Undergraduate Study, College Science, Organic Chemistry
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Cody, Jeremy A.; Craig, Paul A.; Loudermilk, Adam D.; Yacci, Paul M.; Frisco, Sarah L.; Milillo, Jennifer R. – Journal of Chemical Education, 2012
A novel stereochemistry lesson was prepared that incorporated both handheld molecular models and embedded virtual three-dimensional (3D) images. The images are fully interactive and eye-catching for the students; methods for preparing 3D molecular images in Adobe Acrobat are included. The lesson was designed and implemented to showcase the 3D…
Descriptors: Chemistry, Organic Chemistry, Science Instruction, College Science
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Kottonau, Johannes – Journal of Chemical Education, 2011
Effectively teaching the concepts of osmosis to college-level students is a major obstacle in biological education. Therefore, a novel computer model is presented that allows students to observe the random nature of particle motion simultaneously with the seemingly directed net flow of water across a semipermeable membrane during osmotic…
Descriptors: Models, Probability, Internet, Misconceptions
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Bivall, Petter; Ainsworth, Shaaron; Tibell, Lena A. E. – Science Education, 2011
This study explored whether adding a haptic interface (that provides users with somatosensory information about virtual objects by force and tactile feedback) to a three-dimensional (3D) chemical model enhanced students' understanding of complex molecular interactions. Two modes of the model were compared in a between-groups pre- and posttest…
Descriptors: Molecular Structure, Science Instruction, Tactual Perception, Educational Technology
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Harris, Michelle A.; Peck, Ronald F.; Colton, Shannon; Morris, Jennifer; Neto, Elias Chaibub; Kallio, Julie – CBE - Life Sciences Education, 2009
We conducted a controlled investigation to examine whether a combination of computer imagery and tactile tools helps introductory cell biology laboratory undergraduate students better learn about protein structure/function relationships as compared with computer imagery alone. In all five laboratory sections, students used the molecular imaging…
Descriptors: Experimental Groups, Control Groups, Research Papers (Students), Undergraduate Students
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Copolo, Cynthia F.; Hounshell, Paul B. – Journal of Science Education and Technology, 1995
Compares the effects of using two- and three-dimensional model representations of molecular structures on student learning of organic chemical structures. Reports that students using both three-dimensional computer models and ball-and-stick models scored higher on the three-dimensional retention test of isomeric identification but lower on a…
Descriptors: Computer Uses in Education, Educational Technology, Models, Molecular Structure
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Millar, Neil – School Science Review, 1996
Describes a three-dimensional computer modeling system for biological molecules which is suitable for sixth-form teaching. Consists of the modeling program "RasMol" together with structure files of proteins, DNA, and small biological molecules. Describes how the whole system can be downloaded from various sites on the Internet.…
Descriptors: Biology, Computer Uses in Education, DNA, Foreign Countries
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