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Lu, Yang; Santino, Luciano M.; Acharya, Shinjita; Anandarajah, Hari; D'Arcy, Julio M. – Journal of Chemical Education, 2017
The design and fabrication of functional scientific instrumentation allows students to forge a link between commonly reported numbers and physical material properties. Here, a two-point and four-point probe station for measuring electrical properties of solid materials is fabricated via 3D printing utilizing an inexpensive benchtop…
Descriptors: Energy, Electronics, Energy Education, Power Technology
Russ, Rosemary S.; Odden, Tor Ole B. – Physical Review Physics Education Research, 2017
Our field has long valued the goal of teaching students not just the facts of physics, but also the thinking and reasoning skills of professional physicists. The complexity inherent in scientific reasoning demands that we think carefully about how we conceptualize for ourselves, enact in our classes, and encourage in our students the relationship…
Descriptors: Physics, Evidence, Undergraduate Students, Scientific Concepts
Tsakmaki, Paraskevi; Koumaras, Panagiotis – School Science Review, 2016
Science education research has shown that students use causal reasoning, particularly the model "agent--instrument--object," to explain or predict the outcome of many natural situations. Students' reasoning seems to be based on a small set of few intuitive rules. One of these rules quantitatively correlates the outcome of an experiment…
Descriptors: Science Experiments, Scientific Concepts, Scientific Literacy, Scientific Methodology
Theilmann, Florian – Physics Education, 2014
In a typical high school course, the complex physics of collisions is broken up into the dichotomy of perfectly elastic versus completely inelastic collisions. Real-life collisions, however, generally fall between these two extremes. An accurate treatment is still possible, as demonstrated in an investigation of coin collisions. Simple…
Descriptors: Geometry, Physics, Kinetics, High School Students
Straulino, S.; Cartacci, A. – Physics Education, 2014
The measurement of the force acting between two parallel, current-carrying wires is known as Ampère's experiment. A mechanical balance was historically employed to measure that force. We report a simple experiment based on an electronic precision balance that is useful in clearly showing students the existence of this interaction and how to…
Descriptors: Measurement Techniques, Physics, Motion, Energy
Mayer, V. V.; Varaksina, E. I. – Physics Education, 2014
Students receive a more complete conception of scientific cognition methods if they reproduce fundamentally important historical investigations on their own. Ohm's investigation realized in 1826 is one of these. This paper presents a simple and accessible experimental unit, in which Ohm's ideas are implemented with the help of modern…
Descriptors: Investigations, Science Education History, Science Experiments, Units of Study
Lara, V. O. M.; Amaral, D. F.; Faria, D.; Vieira, L. P. – Physics Education, 2014
We use a tablet to experimentally determine the dependencies of the magnetic field (B) on the electrical current and the axial distance from a coil (z). Our data shows good precision on the inverse cubic dependence of the magnetic field on the axial distance, B?z[superscript -3]. We obtain the value of air permeability µ[subscript air] with good…
Descriptors: Measurement Techniques, Magnets, Electronic Equipment, Physics
Rockwell, Steven C. – Communication Teacher, 2012
The increasing popularity of television shows featuring paranormal investigations has led to a renewed enthusiasm in ghost hunting activities, and belief in the paranormal in general. These shows typically feature a group of investigators who, while claiming to utilize proper scientifically correct methodologies, violate many core scientific…
Descriptors: Investigations, Scientific Methodology, Scientific Principles, Critical Thinking
Kipnis, Nahum – Science & Education, 2011
This paper analyses the real origin and nature of scientific errors against claims of science critics, by examining a number of examples from the history of electricity and optics. This analysis leads to a conclusion that errors are a natural and unavoidable part of scientific process. If made available to students, through their science teachers,…
Descriptors: Optics, Science Teachers, Science Education, Energy
Olson, Joanne K. – Science Scope, 2003
The nature of science is a vital part of students' educational experience. It includes understanding what science is and how it works, in accordance with Content Standard G of the "National Science Education Standards" (NRC 1996). Effective science instruction requires incorporation of science content, science processes, and the nature of science.…
Descriptors: Scientific Principles, Science Instruction, Science Education, National Standards
McGee, David; And Others – 1989
This guide provides an introduction to the major issues and literature of science in society. The book is divided into four parts: (1) "The Nature of Science"; (2) "The Nature of Technology"; (3) "Humans in the Environment"; and (4) "Current Issues in Science." The first part covers a history of science technology are covered in the second. In the…
Descriptors: Artificial Intelligence, Computer Literacy, Computers, Energy

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