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Bandeira, Pamela T.; Thomas, Juliana C.; de Oliveira, Alfredo R. M.; Piovan, Leandro – Journal of Chemical Education, 2017
An experimental protocol that provides an excellent way to discuss concepts at the crossroads of organic chemistry and biochemistry employing biocatalysis is presented. By evaluating several reaction parameters (enzyme source, organic solvent, and acyl donor), it was possible to conduct an enzymatic kinetic resolution experiment using…
Descriptors: Science Instruction, Science Experiments, Biochemistry, Organic Chemistry
Roberts, Jason E.; Zeng, Guang; Maron, Marta K.; Mach, Mindy; Dwebi, Iman; Liu, Yong – Journal of Chemical Education, 2016
This paper reports an undergraduate laboratory experiment to measure heterogeneous liquid/gas reaction kinetics (ozone-oleic acid and ozone-phenothrin) using a flow reactor coupled to an attenuated total reflectance-Fourier transform infrared (ATR-FTIR) spectrometer. The experiment is specially designed for an upper-level undergraduate Physical…
Descriptors: Spectroscopy, Chemistry, Laboratory Experiments, Undergraduate Students
Hewitt, Paul G. – Science Teacher, 2016
Examples of equilibrium are evident everywhere and the equilibrium rule provides a reasoned way to view all things, whether in static (balancing rocks, steel beams in building construction) or dynamic (airplanes, bowling balls) equilibrium. Interestingly, the equilibrium rule applies not just to objects at rest but whenever any object or system of…
Descriptors: Physics, Motion, Kinetics, Scientific Concepts
Low, David; Wilson, Kate – Teaching Science, 2017
On entry to university, high-achieving physics students from all across Australia struggle to identify Newton's third law force pairs. In particular, less than one in ten can correctly identify the Newton's third law reaction pair to the weight of (gravitational force acting on) an object. Most students incorrectly identify the normal force on the…
Descriptors: Misconceptions, Scientific Concepts, Scientific Principles, Physics
Turley, Renee; Trotochaud, Alan; Campbell, Todd – Science Teacher, 2016
Sense-making has been described as working on and with ideas--both students' ideas and authoritative ideas in texts--to build coherent storylines, models, and/or explanations. This article describes the process for developing storyline units to support students' making sense of and explaining a rocket launch. The storyline approach, which aligns…
Descriptors: Aviation Technology, Units of Study, Concept Teaching, Story Telling
Concannon, James; Brown, Patrick L. – Science Activities: Classroom Projects and Curriculum Ideas, 2017
The "Next Generation Science Standards" (NGSS) challenges science teachers to think beyond specific content standards when considering how to design and implement curriculum. This lesson, "Windmills by Design," is an insightful lesson in how science teachers can create and implement a cross-cutting lesson to teach the concepts…
Descriptors: Secondary School Science, Science Curriculum, Curriculum Design, High School Students
Peer reviewedSchamp, Homer W., Jr. – Science Teacher, 1990
Discussed is the idea that models should be taught by emphasizing limitations rather than focusing on their generality. Two examples of gas behavior models are included--the kinetic and static models. (KR)
Descriptors: Chemistry, Cognitive Dissonance, Concept Formation, Energy
Shamsipour, Gholamreza – Physics Teacher, 2006
Everyone who teaches physics knows very well that sometimes a simple device or experiment can help to make a concept clear. In this paper, inspired by "The Jumping Pencil" by Martin Gardner, I will discuss a simple demonstration device that can be used to start the study of air pressure.
Descriptors: Science Experiments, Scientific Concepts, Scientific Principles, Physics
Peer reviewedGuzdziol, Edward S. – Science Scope, 1991
Activities involving concave rubber disks are utilized to illustrate the scientific principles of kinetic and potential energy. Provides teacher instructions and questions related to the activity. (MDH)
Descriptors: Energy, Junior High Schools, Kinetics, Middle Schools
Peer reviewedCoffman, Joy; Tanis, David O. – Science Teacher, 1990
Presented is an analogy that can be used to explain the particle theory of matter. The three phases of matter are represented by preschoolers, yuppies, and senior citizens. The value of using analogies is discussed. (KR)
Descriptors: Atomic Theory, Chemistry, Diffusion (Physics), Kinetic Molecular Theory

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