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Voss, Sarah; Klinker, Hannah; Kruse, Jerrid – Technology and Engineering Teacher, 2020
It is becoming increasingly important for students to go beyond engaging in design by reflecting upon the nature of engineering (NOE) and wrestling with questions such as, "What do engineers do?" and "What is engineering?" This article describes an activity in which middle school students are asked to create a product to help a…
Descriptors: Engineering Education, Middle School Students, Learning Activities, Design
Härtel, Hermann – European Journal of Physics Education, 2018
The classical physics treatment of "Electromagnetic Induction" is based on Faraday's Law and Lorentz Force. This paper presents an alternative approach, based on Wilhelm Weber´s Fundamental Force Law of Electrodynamics. It covers mutual induction, self-induction, parallel and anti-parallel currents, and currents in the same and opposite…
Descriptors: Energy, Scientific Concepts, Scientific Principles, Physics
Pereyra, C. J.; Osorio, M.; Laguarda, A.; Gau, D. L. – Physics Education, 2018
In this work we present a simple and low-cost setup to illustrate the dependence of the behaviour of a standing wave in a guitar string with the initial conditions. To do so, we impose two kinds of initial conditions; in the first instance, the initial shape of the string is varied. Secondly, different nodes are imposed on the string. This…
Descriptors: Acoustics, Audio Equipment, Handheld Devices, Scientific Concepts
Bryant, Wesley; Baker, Blane – Physics Education, 2016
The concept of reactance in AC electrical circuits is often non-intuitive and difficult for students to grasp. In order to address this lack of conceptual understanding, classroom exercises compare the predicted resistance of a power tool, based on electrical specifications, to measured resistance. Once students discover that measured resistance…
Descriptors: Electronic Equipment, Class Activities, Scientific Concepts, Scientific Principles
Lubrica, Joel V. – Physics Education, 2016
This paper presents one way of demonstrating the Principle of Equivalence in the classroom. Teaching the Principle of Equivalence involves someone experiencing acceleration through empty space, juxtaposed with the daily encounter with gravity. This classroom activity is demonstrated with a water-filled bottle containing glass marbles and…
Descriptors: Teaching Methods, Scientific Methodology, Scientific Principles, Demonstrations (Educational)
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
Hansson, Lena; Leden, Lotta – Physics Education, 2016
In the science education research field there is a large body of literature on the "nature of science" (NOS). NOS captures issues about what characterizes the research process as well as the scientific knowledge. Here we, in line with a broad body of literature, use a wide definition of NOS including also e.g. socio-cultural aspects. It…
Descriptors: Physics, Scientific Principles, Classroom Techniques, Class Activities
Smiar, Karen; Mendez, J. D. – Journal of Chemical Education, 2016
Molecular model kits have been used in chemistry classrooms for decades but have seen very little recent innovation. Using 3D printing, three sets of physical models were created for a first semester, introductory chemistry course. Students manipulated these interactive models during class activities as a supplement to existing teaching tools for…
Descriptors: Molecular Structure, Computer Graphics, Printed Materials, Models
Gates, Alexander E.; Kalczynski, Michael J. – Journal of Geoscience Education, 2016
A hands-on game based upon principles of oil accumulation and drilling was highly effective at generating enthusiasm toward the geosciences in urban youth from underrepresented minority groups in Newark, NJ. Participating 9th-grade high school students showed little interest in the geosciences prior to participating in the oil game, even if they…
Descriptors: Urban Youth, Earth Science, Science Interests, Grade 9
Mylott, Elliot; Dunlap, Justin; Lampert, Lester; Widenhorn, Ralf – Physics Teacher, 2014
Educators have found that kinesthetic involvement in an experiment or demonstration can engage students in a powerful way. With that as our goal, we developed three activities that allow students to connect with and quantitatively explore key physics principles from mechanics with three fun physical challenges. By presenting these activities as…
Descriptors: Kinesthetic Methods, Teaching Methods, Physics, Class Activities
Murdock, Margaret; Holman, R. W.; Slade, Tyler; Clark, Shelley L. D.; Rodnick, Kenneth J. – Journal of Chemical Education, 2014
A unique homework assignment has been designed as a review exercise to be implemented near the end of the one-year undergraduate organic chemistry sequence. Within the framework of the exercise, students derive potential mechanisms for glucose ring opening in the aqueous mutarotation process. In this endeavor, 21 general review principles are…
Descriptors: Organic Chemistry, Introductory Courses, Homework, Class Activities
Roman, Harry T. – Tech Directions, 2012
Wind energy is an exciting and clean energy option often described as the fastest-growing energy system on the planet. With some simple materials, teachers can easily demonstrate its key principles in their classroom. (Contains 1 figure and 2 tables.)
Descriptors: Energy, Scientific Principles, Energy Education, Power Technology
Passmore, Cynthia; Coleman, Elizabeth; Horton, Jennifer; Parker, Heather – Science Teacher, 2013
At its core, science is about making sense of the world around us. Therefore, science education should engage students in that sense-making process. Helping students make sense of disciplinary core ideas and crosscutting concepts by engaging in scientific practices is the key innovation of the "Next Generation Science Standards"…
Descriptors: Science Instruction, Models, Scientific Concepts, Scientific Principles
Sanger, Michael J. – Journal of Chemical Education, 2011
In this activity, students (working alone or in groups) measure the mass of several soda cans (diet and regular soda) along with the mass of water that each can displaces. The students are then asked to compare these two mass values for the sinking cans and for the floating cans. The purpose of this activity is for students to determine that the…
Descriptors: Physics, Scientific Concepts, Science Instruction, Scientific Principles
Meyer, Daniel Z.; Avery, Leanne M. – School Science and Mathematics, 2009
While there is near universal agreement within the science education community that a strong understanding of nature of science (NOS)--both as a student goal and a teacher attribute--is critical, we still struggle with how to achieve these aims. Barriers range from pragmatic logistics to fundamental curricular tensions. In this paper, we share a…
Descriptors: Scientific Principles, Science Instruction, Science Activities, Class Activities
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