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Showing 1 to 15 of 39 results Save | Export
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Stephanie L. Mitchell; Jill S. McCourt; Diane J. Nesset-Tollefson; Gabrielle L. Kimball; Jasmine N. Mikesell; Emily J. Tollefson; Erin E. Carlson – Journal of Chemical Education, 2023
Common over-the-counter medicines can be an exciting entry point for introducing students to the interesting chemistries that they encounter in their daily lives. In this inquiry-based activity, students are tasked with using a list of given supplies and information about four medications (Aspirin, Tums, Pepto-Bismol, and Tylenol) to design three…
Descriptors: Medicine, Chemistry, Science Education, Active Learning
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Christianson, Anna M.; Waters, Carolyn A. – Journal of Chemical Education, 2022
We describe a guided-inquiry laboratory experiment for instrumental analysis in which our students test an improved protocol for the recycling of silver chloride to produce nontoxic waste. Students are provided with samples of silver chloride that they created as waste products in a previous lab experiment and tasked with performing a stepwise…
Descriptors: Inquiry, Active Learning, Science Experiments, Laboratory Experiments
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Emden, Markus; Gerwig, Mario – Science & Education, 2020
Michael Faraday is considered one of the greatest science lecturers in history. He popularized the Christmas Lectures as a format of science communication that has survived until today in the Royal Institution of Great Britain. Especially, his "Chemical History of a Candle" has become a classic of science communication that has inspired…
Descriptors: Science History, Science Instruction, Science Experiments, Scientific Research
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Vroom Redden, Alexis M.; Barton, Callie M.; William, Kyle R. – Journal of Chemical Education, 2020
Guided inquiry is the practice of allowing students to come to their own conclusions about a set of data instead of verifying a known result using a given experimental procedure. Open inquiry takes this idea one step further by allowing students to develop their own experiment and then analyze the data to arrive at a conclusion. To expose upper…
Descriptors: Inquiry, Student Projects, Biochemistry, Science Experiments
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Kousloglou, Manolis; Molohidis, Anastasios; Nikolopoulou, Kleopatra; Hatzikraniotis, Euripides – Teaching Science, 2022
The natural sciences, by their very nature, are based on the exploration of the physical world, and digital mobile devices are considered appropriate to support this exploration (Suárez et al., 2018) since they offer the tools that make this investigation more accessible but also ubiquitous (Crompton et al., 2017). Inquiry-based learning is a…
Descriptors: Science Instruction, Inquiry, Telecommunications, Handheld Devices
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Leblond, Louis; Hicks, Melissa – Physics Teacher, 2021
Scientific laboratories are among the most challenging course components to integrate into online instruction. Available technology restricts the design and nature of experiments, and it can be hard to replicate the collaborative lab environment where frequent and immediate instructor feedback is the norm. Here we report on technological and…
Descriptors: Science Laboratories, Online Courses, Educational Technology, Technology Uses in Education
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Kardaras, Ioannis; Kallery, Maria – Physics Education, 2020
Teaching blackbody radiation within the framework of astrophysics can motivate students to learn and obtain a more profound and qualitative understanding of the subject. In this paper we present a teaching module that intertwines teaching blackbody radiation via the continuous spectrum of hot objects, especially the stars. The module's approach…
Descriptors: Learning Modules, Radiation, Physics, Student Motivation
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Ghanem, Eman; Long, S. Reid; Rodenbusch, Stacia E.; Shear, Ruth I.; Beckham, Josh T.; Procko, Kristen; DePue, Lauren; Stevenson, Keith J.; Robertus, Jon D.; Martin, Stephen; Holliday, Bradley; Jones, Richard A.; Anslyn, Eric V.; Simmons, Sarah L. – Journal of Chemical Education, 2018
Innovative models of teaching through research have broken the long-held paradigm that core chemistry competencies must be taught with predictable, scripted experiments. We describe here five fundamentally different, course-based undergraduate research experiences that integrate faculty research projects, accomplish ACS accreditation objectives,…
Descriptors: Chemistry, Science Instruction, College Science, Undergraduate Study
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Mutanen, Arto – Science & Education, 2014
The paper is a philosophical analysis of experimentation. The philosophical framework of the analysis is the interrogative model of inquiry developed by Hintikka. The basis of the model is explicit and well-formed logic of questions and answers. The framework allows us to formulate a flexible logic of experimentation. In particular, the formulated…
Descriptors: Science Instruction, Science Experiments, Inquiry, Models
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Raubenheimer, Helgard G.; Schmidbaur, Hubert – Journal of Chemical Education, 2014
Probably owing to the prejudice that gold is a metal too noble to be used much in chemistry, the chemistry of this element has developed much later than that of its congeners and neighbors in the periodic table. In fact, before and after the time of alchemists, and up to the 20th century, all chemistry of gold was mainly performed in attempts to…
Descriptors: Chemistry, Investigations, Scientific Concepts, Scientific Methodology
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Campbell, Todd; Oh, Phil Seok; Maughn, Milo; Kiriazis, Nick; Zuwallack, Rebecca – EURASIA Journal of Mathematics, Science & Technology Education, 2015
The current review examined modeling literature in top science education journals to better understand the pedagogical functions of modeling instruction reported over the last decade. Additionally, the review sought to understand the extent to which different modeling pedagogies were employed, the discursive acts that were identified as important,…
Descriptors: Science Education, Periodicals, Teaching Methods, Models
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Cizdziel, James V. – Journal of Chemical Education, 2011
In this laboratory experiment, students quantitatively determine the concentration of an element (mercury) in an environmental or biological sample while comparing and contrasting the fundamental techniques of atomic absorption spectrometry (AAS) and atomic fluorescence spectrometry (AFS). A mercury analyzer based on sample combustion,…
Descriptors: Science Laboratories, Science Experiments, Spectroscopy, Chemistry
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Cacciatore, Kristen L.; Sevian, Hannah – Journal of Chemical Education, 2009
Many institutions are responding to current research about how students learn science by transforming their general chemistry laboratory curricula to be inquiry-oriented. We present a comparison study of student performance after completing either a traditional or an inquiry stoichiometry experiment. This single laboratory experience was the only…
Descriptors: Stoichiometry, Prior Learning, Chemistry, Instructional Effectiveness
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Mohrig, Jerry R.; Hammond, Christina Noring; Colby, David A. – Journal of Chemical Education, 2007
The mix of guided-inquiry and design based experiments is feasible to do in introductory organic chemistry lab courses. It can provide students with experience in two parts of experimental chemistry such as the significance and careful analysis of experimental data and the design of experiments.
Descriptors: Organic Chemistry, Inquiry, Science Experiments, Laboratory Experiments
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Zamora, L. Lahuerta; Anton-Fos, G. M.; Aleman Lopez, P. A.; Martin Algarra, R. V. – Journal of Chemical Education, 2008
Skepticism is one of the cornerstones of scientific learning. Some pseudosciences in domains such as astronomy or pharmacy use a host of issues in everyday life as pretexts for work in the classroom (e.g., astrology) or laboratory (e.g., homeopathy). Chemistry also offers opportunities to promote skeptical thinking in students. Commercial devices…
Descriptors: Magnets, Water, Science Instruction, Science Experiments
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