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Kozliak, Evguenii I. – Journal of Chemical Education, 2014
The molar entropy of mixing yields values that depend only on the number of mixing components rather than on their chemical nature. To explain this phenomenon using the logic of chemistry, this article considers mixing of distinguishable particles, thus complementing the well-known approach developed for nondistinguishable particles, for example,…
Descriptors: Science Instruction, Scientific Concepts, Thermodynamics, Heat
Raff, Lionel M. – Journal of Chemical Education, 2014
The thermodynamic criteria for spontaneity and equilibrium in multireaction systems are developed and discussed. When N reactions are occurring simultaneously, it is shown that G and A will depend upon N independent reaction coordinates, ?a (a = 1,2, ..., N), in addition to T and p for G or T and V for A. The general criteria for spontaneity and…
Descriptors: Science Instruction, Chemistry, Thermodynamics, Scientific Principles
Hofmann, James R. – Science & Education, 2014
Although some creationist objections to evolutionary biology are simplistic and thus are easily refuted, when more technical arguments become widespread it is important for science educators to explain the relevant science in a straightforward manner. An interesting case study is provided by misguided allegations about how cytochrome c data…
Descriptors: Science Instruction, Misconceptions, Molecular Structure, Evolution
Rodrigues, João P. G. L. M.; Melquiond, Adrien S. J.; Bonvin, Alexandre M. J. J. – Biochemistry and Molecular Biology Education, 2016
Molecular modelling and simulations are nowadays an integral part of research in areas ranging from physics to chemistry to structural biology, as well as pharmaceutical drug design. This popularity is due to the development of high-performance hardware and of accurate and efficient molecular mechanics algorithms by the scientific community. These…
Descriptors: Molecular Structure, Hands on Science, Undergraduate Students, Open Source Technology
Hati, Sanchita; Bhattacharyya, Sudeep – Biochemistry and Molecular Biology Education, 2016
A project-based biophysical chemistry laboratory course, which is offered to the biochemistry and molecular biology majors in their senior year, is described. In this course, the classroom study of the structure-function of biomolecules is integrated with the discovery-guided laboratory study of these molecules using computer modeling and…
Descriptors: Chemistry, Active Learning, Student Projects, Laboratory Training
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
Nievas, Fiorela L.; Bogino, Pablo C.; Giordano, Walter – Biochemistry and Molecular Biology Education, 2016
Biochemistry courses in the Department of Molecular Biology at the National University of Río Cuarto, Argentina, are designed for undergraduate students in biology, microbiology, chemistry, agronomy, and veterinary medicine. Microbiology students typically have previous coursework in general, analytical, and organic chemistry. Programmed sequences…
Descriptors: Science Instruction, Biochemistry, College Science, Foreign Countries
Ochterski, Joseph; Lupacchino-Gilson, Lisa – Science Teacher, 2016
This article describes how the authors began a science, technology, engineering, art, and math (STEAM) collaboration and completed three projects of varying complexity in their art and chemistry classrooms. The projects align with the Next Generation Science Standards (NGSS Lead States 2013).
Descriptors: STEM Education, Teamwork, Art Education, Chemistry
Pentecost, Thomas; Weber, Sarah; Herrington, Deborah – Science Teacher, 2016
Research suggests that connecting the visible (macroscopic) world of chemical phenomena to the invisible (particulate) world of atoms and molecules enhances student understanding in chemistry. This approach aligns with the science standards and is fundamental to the redesigned AP Chemistry curriculum. However, chemistry is usually taught at the…
Descriptors: Chemistry, Molecular Structure, Visual Aids, Critical Thinking
Griffith, Kaitlyn M.; de Cataldo, Riccardo; Fogarty, Keir H. – Journal of Chemical Education, 2016
Introductory chemistry students often have difficulty visualizing the 3-dimensional shapes of the hydrogenic electron orbitals without the aid of physical 3D models. Unfortunately, commercially available models can be quite expensive. 3D printing offers a solution for producing models of hydrogenic orbitals. 3D printing technology is widely…
Descriptors: Chemistry, Computer Graphics, Models, Undergraduate Students
Aguilar, Horacio Munguía; Maldonado, Rigoberto Franco – Physics Education, 2015
A simple capacitive cell for dielectric constant measurement in liquids is presented. As an illustrative application, the cell is used for measuring the degradation of overheated edible oil through the evaluation of their dielectric constant.
Descriptors: Physics, Measurement Techniques, Heat, Fuels
Wall, Kathryn P.; Dillon, Rebecca; Knowles, Michelle K. – Biochemistry and Molecular Biology Education, 2015
Fluorescent proteins are commonly used in cell biology to assess where proteins are within a cell as a function of time and provide insight into intracellular protein function. However, the usefulness of a fluorescent protein depends directly on the quantum yield. The quantum yield relates the efficiency at which a fluorescent molecule converts…
Descriptors: Science Instruction, Laboratory Experiments, Biochemistry, Molecular Biology
Silva, Alcino J.; Müller, Klaus-Robert – Learning & Memory, 2015
The sheer volume and complexity of publications in the biological sciences are straining traditional approaches to research planning. Nowhere is this problem more serious than in molecular and cellular cognition, since in this neuroscience field, researchers routinely use approaches and information from a variety of areas in neuroscience and other…
Descriptors: Molecular Biology, Molecular Structure, Neurosciences, Neurology
Davis, Eric J.; Jones, Michael; Thiel, D. Alex; Pauls, Steve – Journal of Chemical Education, 2018
Additive manufacturing (3D printing) is a technology with near-unlimited potential for the chemical educator. However, its adoption into higher education has been limited by the dual requirements of expertise in 3D printing and 3D computer-aided design (CAD). Thus, its reported utilization in the chemistry curriculum has been within the creation…
Descriptors: Chemistry, Science Education, Open Source Technology, Computer Peripherals
Lundquist, Karl; Herndon, Conner; Harty, Tyson H.; Gumbart, James C. – Biochemistry and Molecular Biology Education, 2016
It is often difficult for students to develop an intuition about molecular processes, which occur in a realm far different from day-to-day life. For example, thermal fluctuations take on hurricane-like proportions at the molecular scale. Students need a way to visualize realistic depictions of molecular processes to appreciate them. To this end,…
Descriptors: High School Students, Classroom Techniques, Molecular Structure, Computer Simulation