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Emery, Patrick; Yezierski, Ellen J.; Page, Richard C. – Biochemistry and Molecular Biology Education, 2019
Visualizations are useful tools for helping students to understand chemistry concepts at the particulate level. A classroom activity was developed based on learning theory and evidence-based practices, combining protein visualization with thermodynamic parameters from differential scanning fluorimetry (DSF) data analysis. Coding of student…
Descriptors: Visualization, Chemistry, Scientific Concepts, Concept Formation
Visualizing, Rather than Deriving, Russell-Saunders Terms: A Classroom Activity with Quantum Numbers
Coppo, Paolo – Journal of Chemical Education, 2016
A 1 h classroom activity is presented, aimed at consolidating the concepts of microstates and Russell-Saunders energy terms in transition metal atoms and coordination complexes. The unconventional approach, based on logic and intuition rather than rigorous mathematics, is designed to stimulate discussion and enhance familiarity with quantum…
Descriptors: Quantum Mechanics, Numbers, Class Activities, Concept Teaching
Eliyawati; Sunarya, Yayan; Mudzakir, Ahmad – Journal of Science Learning, 2017
This study aims to investigate solar cell as learning multimedia to improve students' scientific literacy on science and nanotechnology. Specifically, it describes learning design, the characteristic of developed learning multimedia and the description of learning activities using solar cell as learning multimedia to improve students' scientific…
Descriptors: Multimedia Materials, Multimedia Instruction, Science Instruction, Scientific Literacy
Bowen, Alec S.; Reid, Daniel R.; Koretsky, Milo D. – Chemical Engineering Education, 2015
In this project, we explore the use of threshold concept theory as a design basis for development of Interactive Virtual Laboratories in thermodynamics. Thermodynamics is a difficult subject for chemical and biological engineering students to master. One reason for the difficulty is the diverse and challenging set of threshold concepts that they…
Descriptors: Thermodynamics, Science Laboratories, Computer Simulation, Science Process Skills
Chang, Hsin-Yi; Linn, Marcia C. – Journal of Research in Science Teaching, 2013
Powerful online visualizations can make unobservable scientific phenomena visible and improve student understanding. Instead, they often confuse or mislead students. To clarify the impact of molecular visualizations for middle school students we explored three design variations implemented in a Web-based Inquiry Science Environment (WISE) unit on…
Descriptors: Scaffolding (Teaching Technique), Science Education, Visualization, Middle School Students
Davis, James; Leslie, Ray; Billington, Susan; Slater, Peter R. – Chemistry Education Research and Practice, 2010
The use of "Origami" is presented as an accessible and transferable modeling system through which to convey the intricacies of molecular shape and highlight structure-function relationships. The implementation of origami has been found to be a versatile alternative to conventional ball-and-stick models, possessing the key advantages of being both…
Descriptors: Chemistry, Visualization, Molecular Structure, Science Instruction
Smithenry, Dennis W. – Science Teacher, 2009
Classifying a particle requires an understanding of the type of bonding that exists within and among the particles, which requires an understanding of atomic structure and electron configurations, which requires an understanding of the elements of periodic properties, and so on. Rather than getting tangled up in all of these concepts at the start…
Descriptors: Nuclear Physics, Chemistry, Science Instruction, Teaching Methods
Peer reviewedVerkade, John G. – Journal of Chemical Education, 1987
Describes a procedure for teaching the "generator orbital" (GO) approach of molecular orbital bonding in polyatomic molecules. Explains how the GO can be utilized with students in generating the vibrational, rotational, and translational modes of molecules in a completely pictorial manner. (ML)
Descriptors: Chemical Bonding, Chemistry, Learning Strategies, Molecular Structure

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