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Al-Salmani, Fatema; Johnson, Jordan; Thacker, Beth – Physical Review Physics Education Research, 2023
We present an analysis of students' thinking skills as evidenced by free-response exam problems during the COVID-19 pandemic. We compare two inquiry-based, laboratory-based classical mechanics courses, one taught online and one taught in person during the pandemic, and two inquiry-based, laboratory-based electricity and magnetism courses, one…
Descriptors: Thinking Skills, Evaluation Methods, Comparative Analysis, Inquiry
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Pili, Unofre; Violanda, Renante – Physics Teacher, 2019
In introductory physics laboratories, spring constants are traditionally measured using the static method. The dynamic method, via vertical spring-mass oscillator, that uses a stopwatch in order to measure the period of oscillations is also commonly employed. However, this time-measuring technique is prone to human errors and in this paper we…
Descriptors: Telecommunications, Handheld Devices, Physics, Scientific Concepts
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Sharma, R. K.; Yadav, Subham; Gupta, Radhika; Arora, Gunjan – Journal of Chemical Education, 2019
Systems thinking is highly desirable for re-imagining chemistry education, which will help in the development of an integrated and sustainable approach that takes into account the interdependence of a system under study with other components of the ecosystem rather than practicing a fragmented approach. Thus, to develop a systems' perspective into…
Descriptors: Science Instruction, Science Experiments, Sustainability, Science Laboratories
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Burns, Patrick J.; Tsitovich, Pavel B.; Morrow, Janet R. – Journal of Chemical Education, 2016
Laboratory experiments that demonstrate the effect of paramagnetic complexes on chemical shifts and relaxation times of protons are a useful way to introduce magnetic resonance spectroscopy (MRS) probes or magnetic resonance imaging (MRI) contrast agents. In this undergraduate inorganic chemistry experiment, a paramagnetic Co(II) cage complex is…
Descriptors: Undergraduate Students, Laboratory Experiments, Spectroscopy, Magnets
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Pritchard, Benjamin P.; Simpson, Scott; Zurek, Eva; Autschbach, Jochen – Journal of Chemical Education, 2014
A computational experiment investigating the [superscript 1]H and [superscript 13]C nuclear magnetic resonance (NMR) chemical shifts of molecules with unpaired electrons has been developed and implemented. This experiment is appropriate for an upper-level undergraduate laboratory course in computational, physical, or inorganic chemistry. The…
Descriptors: Science Instruction, College Science, Undergraduate Study, Molecular Structure
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Lumori, M. L. D.; Kim, E. M. – IEEE Transactions on Education, 2010
Two possible topical approaches that have been applied to teaching an upper-division undergraduate electrical engineering applied electromagnetics course are presented. Each approach was applied to one of two offerings of the course, taught in different semesters. In either case, the course includes the study of electromagnetic theory and…
Descriptors: Engineering Education, Laboratory Experiments, Teaching Methods, Writing Assignments
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Kraftmakher, Yaakov – European Journal of Physics, 2009
Employment of a data-acquisition system for data collection and calculations makes experiments with antennas more convenient and less time consuming. The determined directional patterns of the dipole antennas of different lengths are in reasonable agreement with theory. The enhancement of the signal by using a reflector is demonstrated, and a…
Descriptors: Student Projects, Demonstrations (Educational), Science Experiments, Science Instruction
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Malerich, Charles; Ruff, Patricia K.; Bird, Aubrey – Journal of Chemical Education, 2004
An easy-to-see method for demonstrating and measuring the magnetic force between paramagnetic substance and a rare earth magnet is presented. The readily available trapezoid-shaped neodymium magnet and a low cost, easy-to-set-up, portable apparatus are used in the experiments.
Descriptors: Chemistry, Magnets, Demonstrations (Educational), Measurement
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Oliveira, Luiz C.A.; A. Rios, Rachel V.R.; Fabris, Jose D.; Lago, Rachel M.; Sapag, Karim – Journal of Chemical Education, 2004
An exciting laboratory environment is activated by the preparation and novel use of magnetic materials to decontaminate water through adsorption and magnetic removal of metals and organics. This uncomplicated technique is also adaptable to the possible application of adsorbents to numerous other environmental substances.
Descriptors: Laboratory Experiments, Water Quality, Environmental Education, Magnets
Cookman, Ed – Clearing, 1993
Ecological, interdisciplinary, and interconnected laboratory lessons focusing on magneticism: (1) producing electric power; (2) magnetics and magneticism; (3) electomagnetism (2 parts); and turbines (2 parts). Lessons, designed as precursor for students to make choices in electricity production, use a directed inquiry approach. (MCO)
Descriptors: Class Activities, Electricity, Energy Education, Environmental Education
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Jacob, Anthony T.; And Others – Journal of Chemical Education, 1988
Shows that the mutual repulsion that enables a superconductor to levitate a magnet and a magnet to levitate a superconductor can be combined into a single demonstration. Uses an overhead projector, two pellets of "1-2-3" superconductor, Nd-Fe-B magnets, liquid nitrogen, and paraffin. Offers superconductor preparation, hazards, and disposal…
Descriptors: Chemistry, College Science, Electricity, Instructional Materials