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Aydeniz, M.; Ozdilek, Z. – Science Education International, 2015
The purpose of this study was to assess pre-service science teachers' understanding of science, scientific argumentation and the difference between scientific argumentation and scientific explanation. A total of 40 pre-service science teachers enrolled in a Turkish university completed a five-question questionnaire. The results showed that the…
Descriptors: Preservice Teachers, Preservice Teacher Education, Persuasive Discourse, Scientific Literacy
Rostejnska, Milada; Klimova, Helena – Journal of Chemical Education, 2011
"AZ-Quiz" and "Jeopardy!" are popular television shows and serve as the basis for in-class games designed to support and diversify chemistry instruction at the high school level. Both games were created in Microsoft PowerPoint, which is an easily accessible and controllable instrument that enables the creation of engaging animation. The use of…
Descriptors: Biochemistry, Educational Games, Video Games, Educational Technology
Putti, Alice – Journal of Chemical Education, 2011
In this guided-inquiry activity, students investigate the ionization of strong and weak acids. Bead models are used to study acid ionization on a particulate level. Students analyze seven strong and weak acid models and make generalizations about the relationship between acid strength and dissociation. (Contains 1 table and 2 figures.)
Descriptors: Chemistry, Inquiry, Active Learning, Secondary School Science
Ge, Jun; Schirhagl, Romana; Zare, Richard N. – Journal of Chemical Education, 2011
A glucose-driven enzymatic filter-paper fuel cell is described. A strip of filter paper coated with carbon nanotubes and the glucose oxidase enzyme functions as the anode of the enzyme fuel cell. Another strip of filter paper coated with carbon nanotubes and the laccase enzyme functions as the cathode. Between the anode and the cathode, a third…
Descriptors: Fuels, Energy, Biochemistry, Science Activities
Ibanez, Jorge G.; Finck-Pastrana, Adolfo; Mugica-Barrera, Alejandra; Balderas-Hernandez, Patricia; Ibarguengoitia-Cervantes, Martha E.; Garcia-Pintor, Elizabeth; Hartasanchez-Frenk, Jose Miguel; Bonilla-Jaurez, Cesar E.; Maldonado-Cordero, Casandra; Struck-Garza, Adelwart; Suberbie-Rocha, Felipe – Journal of Chemical Education, 2011
Copper(I) oxide photoresponsive layers are prepared on copper surfaces (e.g., U.S. pre-1982 pennies) by simple thermal, chemical, and electrochemical procedures. An easily measurable photovoltage (up to 100 mV) is obtained in each case under visible light illumination. (Contains 2 figures.)
Descriptors: Chemistry, Electronic Equipment, Science Experiments, Science Activities
Robertson, Bill – Science and Children, 2011
This article explains why spiders don't stick to their webs. Spiders don't get stuck in their own webs (and they aren't immune to their own glue) because they use a combination of sticky and nonsticky threads (different glands for producing those), and the glue is in droplets that the spider can avoid but the prey can't. The spider's nervous…
Descriptors: Science Instruction, Science Activities, Entomology, Anatomy
Scott, Linda; Howarth, Sue – School Science Review, 2011
In this article, the authors present some ideas to help one start (or continue) a successful science/STEM club. Some "tips" are given by Mike Bullock, a teacher from the West Midlands, who set up a STEM club after his NQT (newly qualified teacher) year and whose club members went on to do well in the STEM Challenges. Information is provided about…
Descriptors: Clubs, Sciences, STEM Education, Science Instruction
Nakhoda, Zein; Taylor, Ken – Physics Teacher, 2011
A torsion oscillator is a vibrating system that experiences a restoring torque given by [tau] = -[kappa][theta] when it experiences a rotational displacement [theta] from its equilibrium position. The torsion constant [kappa] (kappa) is analogous to the spring constant "k" for the traditional translational oscillator (for which the restoring force…
Descriptors: Physics, Motion, Scientific Principles, Science Instruction
Putney, Ann – Science Scope, 2011
Create your own speakers for an MP3 player while exploring the science of sound. Review of science notebooks, students' intriguing cabinet designs, and listening to students talk with a musician about the physics of an instrument show that complex concepts are being absorbed and extended with each new iteration. Science that matters to students…
Descriptors: Acoustics, Class Activities, Science Activities, Music Theory
Riddle, Bob – Science Scope, 2011
Learn the astronomy behind the changing of the seasons. Students know that we mark the change of seasons with the position of the Sun over certain parts of the Earth. The specific time and date for the change of seasons is determined by the position of the Sun, not above the horizon necessarily, nor geographically, but rather where the Sun is…
Descriptors: Astronomy, Geophysics, Climate, Class Activities
Gutiérrez, Mélida; Baker, Becky – Journal of Geoscience Education, 2013
A class exercise was designed for a college-level geochemistry class to promote inquiry and student participation. In this exercise, real soil data available online was analyzed to evaluate geochemical associations among different soil orders and as a screening tool for anthropogenic metal contamination. Students were asked to read a peer-reviewed…
Descriptors: College Students, Geology, Chemistry, Soil Science
Mayer, Kristen; Damelin, Daniel; Krajcik, Joseph – Science Teacher, 2013
The "Next Generation Science Standards" ("NGSS") emphasizes content and scientific practices, but what does this actually look like in a classroom? The "NGSS" integrates scientific and engineering practices with core ideas and crosscutting concepts, merging the three dimensions from "A Framework for K-12 Science…
Descriptors: State Standards, Models, Teaching Methods, Science Activities
Windschitl, Mark; Thompson, Jessica J. – Science Teacher, 2013
Modeling is one of the scientific practices featured in the "Next Generation Science Standards" ("NGSS") (Achieve Inc. 2013). This practice is central to the work of science because modeling activities can prompt new questions for investigation, which, in turn, can lead to evidence and information that can be incorporated into…
Descriptors: Learning Modules, Models, Classroom Techniques, Scientific Concepts
Ravanis, Konstantinos; Christidou, Vasilia; Hatzinikita, Vassilia – Research in Science Education, 2013
The aim of this study is to investigate the effect of a sociocognitive teaching strategy on young children's understanding of light. It explores their understanding of the concept of light as an entity that is transmitted independently of the light source and the final receiver. The study was conducted in three phases: pretest, teaching…
Descriptors: Science Instruction, Preschool Children, Teaching Methods, Pretests Posttests
Crompton, Zoe – Education in Science, 2013
By the end of primary school, we might expect children to be able to give a reasonable description of what science is. In their response to the question "What is science?", Eshach and Fried (2005) distinguish between conceptual and procedural knowledge and understanding. They explain that children's conceptual knowledge is developed…
Descriptors: Elementary School Students, Student Attitudes, Sciences, Elementary Schools

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