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Danielle A. Guarracino; Joseph L. Baker; J. Lynn Gazley – Journal of College Science Teaching, 2025
Having a deeper understanding of molecules in their structural forms allows students to grasp biochemical and general chemical concepts in a more profound manner. Through the use of visualization software, we have shown that students gain confidence and insight into the chemical workings of molecular structure and can then utilize this knowledge…
Descriptors: Science Education, Undergraduate Students, Biochemistry, Molecular Structure
Suzanne Ruder; Courtney Stanford; Nuha Farhat; Leslie Bolda – Journal of College Science Teaching, 2024
Students need a strong understanding of how to represent chemical compounds in order to succeed in organic chemistry. This project set out to gain a better understanding of students' difficulties with symbolic representations, by identifying the specific errors associated with drawing wedge-dash structures. The focus was on how students…
Descriptors: Undergraduate Students, Chemistry, Science Instruction, Organic Chemistry
Bruck, Laura B. – Journal of College Science Teaching, 2016
The intermolecular forces activity presented in this article is designed to foster concept-building through students' use of concrete, manipulative objects, and it was developed to be pedagogically sound. Data analysis via pre- and posttesting and subsequent exam questions indicated that students who had the opportunity to participate in the…
Descriptors: Hands on Science, Science Activities, Mastery Learning, Concept Formation
Forbes-Lorman, Robin; Korb, Michele; Moser, Amy; Franzen, Margaret A.; Harris, Michelle A. – Journal of College Science Teaching, 2022
Physical and life science disciplines emphasize how basic structural units influence function, yet it is challenging for students to understand structure-function relationships, particularly at molecular scales. Undergraduates in our biology capstone course struggled to connect mutations in a gene encoding a key protein in a cell development…
Descriptors: Formative Evaluation, Science Education, Undergraduate Students, Summative Evaluation
Bonney, Kevin M. – Journal of College Science Teaching, 2014
This article describes an interrupted case study that intersperses information about diffusion and osmosis with content review and knowledge application questions, as well as a simple experiment that can be conducted without the use of a laboratory. The case study was developed for use in an introductory undergraduate biology course. The case…
Descriptors: Science Instruction, College Science, Case Studies, Scientific Concepts
Yang, Li-Hsuan – Journal of College Science Teaching, 2012
This article describes engaging students in two simple observations to address the concepts of changes of states, heat, temperature, and molecular potential and kinetic energy. It also discusses how these concepts can enable students to further explore and understand interesting and significant phenomena and research in multiple areas of science.…
Descriptors: Science Instruction, Kinetics, Energy, Science Education
DeSimone, Susan M.; Genereux, Annie Prud'homme – Journal of College Science Teaching, 2011
This column provides original articles on innovations in case study teaching, assessment of the method, as well as case studies with teaching notes. In this month's issue the goal of the case study is for students to expand their understanding of membrane permeability and the proton motive force in mitochondria through the study of…
Descriptors: Case Studies, Drug Therapy, Case Method (Teaching Technique), Science Instruction

Whisnant, David M. – Journal of College Science Teaching, 1983
Three-phased learning cycles (exploration, invention, application) were introduced into general chemistry laboratories at Northland College (Wisconsin). Discusses each phase and its use in a learning cycle on the functional groups of organic compounds. (JN)
Descriptors: Chemistry, College Science, Higher Education, Learning Processes

Journal of College Science Teaching, 2005
Smaller, faster computers, bullet-proof t-shirts, and itty-bitty robots--such are the promises of nanotechnology and the cylinder-shaped collection of carbon molecules known as nanotubes. But for these exciting ideas to become realities, scientists must understand how these miracle molecules perform under all sorts of conditions. This brief…
Descriptors: Scientific Research, Molecular Structure, Structural Analysis (Science)