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Brunt, Marjorie; Brunt, Geoff – Physics Education, 2013
The teaching of the principle of conservation of linear momentum is considered (ages 15 + ). From the principle, the momenta of two masses in an isolated system are considered. Sketch graphs of the momenta make Newton's laws appear obvious. Examples using different collision conditions are considered. Conservation of momentum is considered…
Descriptors: Physics, Scientific Principles, Secondary School Science, Teaching Methods
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Mayo, Ana V.; Loegel, Thomas N.; Bretz, Stacey Lowery; Danielson, Neil D. – Journal of Chemical Education, 2013
The large class sizes of first-year chemistry labs makes it challenging to provide students with hands-on access to instrumentation because the number of students typically far exceeds the number of research-grade instruments available to collect data. Multifunctional chemical analysis (MCA) systems provide a viable alternative for large-scale…
Descriptors: Science Instruction, College Science, Chemistry, Science Laboratories
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Mohazzabi, Pirooz; James, Mark C. – Physics Teacher, 2012
Over 2200 years ago, in order to determine the purity of a golden crown of the king of Syracuse, Archimedes submerged the crown in water and determined its volume by measuring the volume of the displaced water. This simple experiment became the foundation of what eventually became known as Archimedes' principle: An object fully or partially…
Descriptors: Physics, Science Instruction, Scientific Principles, Teaching Methods
Lewis, Amy D. – ProQuest LLC, 2017
The development of scientifically literate citizens begins in the elementary school. Yet elementary school teachers are ill prepared to teach science (Trygstad, Smith, Banilower, Nelson, & Horizon Research, Inc., 2013). The research base on teacher preparation finds that programs designed to prepare elementary teachers are inadequate in…
Descriptors: Preservice Teacher Education, Elementary School Teachers, Pedagogical Content Knowledge, Mixed Methods Research
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Bain, Ryan M.; Pulliam, Christopher J.; Yan, Xin; Moore, Kassandra F.; Mu¨ller, Thomas; Cooks, R. Graham – Journal of Chemical Education, 2014
Undergraduate laboratories generally teach an understanding of chemical reactivity using bulk or semimicroscale experiments with product isolation and subsequent chemical and spectroscopic analysis. In this study students were exposed to mass spectrometry as a means of chemical synthesis as well as analysis. The ionization method used, paper…
Descriptors: Science Instruction, Spectroscopy, College Science, Undergraduate Study
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Gates, Joshua – Physics Teacher, 2014
Newton's second law is one of the cornerstones of the introductory physics curriculum, but it can still trouble a large number of students well after its introduction, hobbling their ability to apply the concept to problem solving and to related concepts, such as momentum, circular motion, and orbits. While there are several possibilities for…
Descriptors: Science Experiments, Scientific Principles, Scientific Concepts, Science Education
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Lane, W. Brian – Physics Teacher, 2014
The traditional introductory-level meterstick-balancing lab assumes that students already know what torque is and that they readily identify it as a physical quantity of interest. We propose a modified version of this activity in which students qualitatively and quantitatively measure the amount of force required to keep the meterstick level. The…
Descriptors: Introductory Courses, Science Education, Educational Practices, Teaching Methods
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Baar, Marsha R.; Gammerdinger, William; Leap, Jennifer; Morales, Erin; Shikora, Jonathan; Weber, Michael H. – Journal of Chemical Education, 2014
Five reactions were rate-accelerated relative to the standard reflux workup in both multi-mode and mono-mode microwave ovens, and the results were compared to determine whether the sequential processing of a mono-mode unit could provide for better lab logistics and pedagogy. Conditions were optimized so that yields matched in both types of…
Descriptors: Science Instruction, Science Experiments, Laboratory Equipment, Undergraduate Study
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Del Bianco, Cristina; Torino, Domenica; Mansy, Sheref S. – Journal of Chemical Education, 2014
A laboratory exercise is described that helps students learn about lipid self-assembly by making vesicles under different solution conditions. Concepts covering the chemical properties of different lipids, the dynamics of lipids, and vesicle stability are explored. Further, the described protocol is easy and cheap to implement. One to two…
Descriptors: Science Instruction, Science Laboratories, Biochemistry, Undergraduate Study
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Nowak, Mariusz Karol – Physics Education, 2014
It is hard to observe relativistic effects in everyday life. However, table experiments using a mechanical transmission line for solitons may be an efficient and simple way to show effects such as Lorentz contraction in a classroom. A kink soliton is a deformation of a lattice of several dozen or more pendulums placed on a wire and connected by a…
Descriptors: Laboratory Equipment, Scientific Concepts, Mechanics (Physics), Motion
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Helseth, Lars Egil – Physics Education, 2014
I describe a simple and fascinating experiment wherein helium leaks out of a rubber balloon, thereby causing it to descend. An estimate of the volumetric leakage rate is made by measuring its rate of descent.
Descriptors: Science Instruction, Science Experiments, Scientific Principles, Physics
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Klokocovnik, Vesna; Šorgo, Andrej; Devetak, Dušan – Journal of Biological Education, 2016
One of the innovations in the Slovenian school system has been the introduction of elective subjects in the curricula of primary and secondary schools, thus there is a lack of teaching manuals for practical exercises and hands-on classroom experience. This situation is reflected in the Ethology classroom and for that purpose we prepared…
Descriptors: Foreign Countries, Elective Courses, Ethology, Science Experiments
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Silseth, K.; Arnseth, H. C. – Learning, Media and Technology, 2016
In this article, we examine the relationship between how students are positioned in social encounters and how this influences learning in a technology-supported science project. We pursue this topic by focusing on the participation trajectory of one particular learner. The analysis shows that the student cannot be interpreted as one type of…
Descriptors: Technology Uses in Education, Educational Technology, Science Instruction, Student Participation
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Li, Xuesong; Van Wie, Bernard J. – Journal of STEM Education: Innovations and Research, 2016
The difficulty in covering chemical engineering concepts using traditional lectures and whiteboard teaching approaches means today's students' learning demands are unfulfilled, so alternate methods are needed. Desktop learning modules (DLMs) are designed to show industrial fluid flow and heat transfer concepts in a standard classroom so students…
Descriptors: Heat, Mechanics (Physics), Chemical Engineering, Experimental Groups
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Prytz, Kjell – Physics Education, 2015
Creative learning is discussed with respect to a specific physics topic. A teaching example, based on an apparatus that demonstrates the standard dynamo model of geomagnetism, is presented. It features many of the basic physics concepts within the syllabus of electromagnetism at high-school and university. To stimulate conceptual learning and to…
Descriptors: Physics, Teaching Methods, Units of Study, Electromechanical Technology
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