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Showing 1 to 15 of 43 results Save | Export
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Kvittingen, Eivind V.; Kvittingen, Lise; Melø, Thor Bernt; Sjursnes, Birte Johanne; Verley, Richard – Journal of Chemical Education, 2017
This article describes a combined UV-photometer and fluorimeter constructed from 3 LEDs and a few wires, all held in place with Lego bricks. The instrument has a flexible design. In its simplest version, two UV-LEDs (355 nm) are used as light source and to detect absorption, and a third LED, in the visible spectrum (e.g., 525 nm), is used to…
Descriptors: Spectroscopy, Scientific Principles, Scientific Methodology, Light
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Harakas, George N. – Journal of Chemical Education, 2018
This work describes an effective, low cost method to anodize small aluminum objects. The use of a PVC spacer between the anode and cathode significantly reduces the size of the electrochemical cell and electrolyte required for its operation. Students will explore the physical and chemical properties of aluminum and anodized aluminum. They will…
Descriptors: Chemistry, Metallurgy, Cost Effectiveness, Molecular Structure
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Hoben, John P.; Wang, Jianing; Miller, Anne-Frances – Journal of Chemical Education, 2017
A signature of life is that biological molecules occur as a single stereoisomer with respect to each chiral center, and this is echoed in the structures of biological polymers. Thus, circular dichroism (CD) has emerged as a hallmark of biomolecular structures. The tangible and familiar phenomenon of raw egg white's conversion from transparent…
Descriptors: Molecular Biology, Molecular Structure, Science Experiments, Scientific Concepts
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Pollock, David W.; Truong, Giovanna T.; Bonjour, Jessica L.; Frost, John A. – Journal of Chemical Education, 2018
Solubility is frequently introduced at the high school and introductory college levels through the symbolic domain using net ionic equations and solubility product constants. Students may become proficient with spectator ion cancellation and skilled with algorithmic mathematical applications of solubility without obtaining a deeper understanding…
Descriptors: Spectroscopy, Chemistry, Data Collection, Science Experiments
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Malgieri, Massimiliano; Tenni, Antonio; Onorato, Pasquale; De Ambrosis, Anna – Physics Education, 2016
In this paper we present a reasoning line for introducing the Pauli exclusion principle in the context of an introductory course on quantum theory based on the sum over paths approach. We start from the argument originally introduced by Feynman in "QED: The Strange Theory of Light and Matter" and improve it by discussing with students…
Descriptors: Scientific Principles, Introductory Courses, Quantum Mechanics, Science Experiments
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Held, Lubomir – Universal Journal of Educational Research, 2017
Avogadro's conception of the structure of gases was not widely accepted by his contemporaries--probably because the hypothesis was not supported by direct evidence. This problem is rarely addressed in schools. This article discusses the difficulties that accompany the acceptance of new ideas. Such difficulties may be associated with the ways in…
Descriptors: Hypothesis Testing, Scientific Methodology, Science History, Scientific Concepts
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Zavrel, Erik; Sharpsteen, Eric – Physics Teacher, 2016
The importance of understanding and internalizing the scientific method can hardly be exaggerated. Unfortunately, it is all too common for high school--and even university--students to graduate with only a partial or oversimplified understanding of what the scientific method is and how to actually employ it. Help in remedying this situation may…
Descriptors: Science Instruction, Physics, Scientific Methodology, Science Process Skills
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Ng, Pun-hon; Chan, Kin-lok – Physics Education, 2015
In most secondary physics textbooks, waves are first introduced with examples of mechanical waves because they can be illustrated by drawings and photographs. However, these illustrations are static and cannot reflect the dynamic nature of waves. Although many mechanical waves (e.g. water waves and vibrating strings) can be easily shown using…
Descriptors: Scientific Concepts, Physics, Photography, Production Techniques
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Knutson, Theodore R.; Knutson, Cassandra M.; Mozzetti, Abbie R.; Campos, Antonio R.; Haynes, Christy L.; Penn, R. Lee – Journal of Chemical Education, 2015
Chemical kinetic experiments to determine rate laws are common in high school and college chemistry courses. For reactions involving a color change, rate laws can be determined experimentally using spectrophotometric or colorimetric equipment though this equipment can be cost prohibitive. Previous work demonstrated that inexpensive handheld camera…
Descriptors: Handheld Devices, Photography, Kinetics, Chemistry
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Panzarasa, Guido – Journal of Chemical Education, 2015
Thanks to their unique physicochemical properties (e.g., surface plasmon resonance), noble metal nanoparticles are at the cornerstone of nanotechnology. Silver triangular nanoprisms are presented here as an ideal playground to introduce students to nanochemistry concepts such as the formation of shape-controlled nanostructures. Not only a reliable…
Descriptors: Chemistry, Molecular Structure, Scientific Concepts, Scientific Methodology
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Emden, Markus; Sumfleth, Elke – International Journal of Science and Mathematics Education, 2016
In recent science education, experimentation features ever more strongly as a method of inquiry in science classes rather than as a means to illustrate phenomena. Ideas and materials to teach inquiry abound. Yet, tools for assessing students' achievement in their processes of experimentation are lacking. The present study assumes a basal,…
Descriptors: Student Evaluation, Science Process Skills, Inquiry, Science Education
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Orr, Taylor; Flowers, Jim – Technology and Engineering Teacher, 2014
The goal of formal education is student learning. By emphasizing experimentation in the classroom or lab, students learn about the results of a particular inquiry. But more importantly, they learn to refine their approach to learning by creating new knowledge rather than merely remembering what they have been told. An inquiry approach where…
Descriptors: Active Learning, Inquiry, Science Experiments, Scientific Methodology
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Brown, Todd; Brown, Katrina; Barnot, Vickilyn – Science Activities: Classroom Projects and Curriculum Ideas, 2012
Reaction time, the time between a stimulus and a person's reaction to it, is a concept familiar to most teenagers, particularly in the context of driving. We describe a simple inexpensive activity that utilizes students' creativity and invokes the scientific method in order to explore reaction time. The goal of the activity is to give students a…
Descriptors: Reaction Time, Physics, Science Instruction, Science Activities
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Hernandez, M. I.; Couso, D.; Pinto, R. – Physics Education, 2011
Teaching the acoustic properties of materials is a good way to teach physics concepts, extending them into the technological arena related to materials science. This article describes an innovative approach for teaching sound and acoustics in combination with sound insulating materials in secondary school (15-16-year-old students). Concerning the…
Descriptors: Auditory Perception, Acoustics, Auditory Tests, Scientific Methodology
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Cords, Nina; Fischer, Robert; Euler, Manfred; Prasad, Amrita – Physics Education, 2012
In order to increase scientific literacy and the knowledge of science and technology of Europe's citizens, the European Commission suggests a more student-centred implementation of natural sciences in education systems. Inquiry-based learning (IBL) is not only an accepted method to promote students' interest and motivation, it also helps students…
Descriptors: Scientific Methodology, Multimedia Materials, Inquiry, Optics
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