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Dewi Ayu Kencana Ungu; Mihye Won; David F. Treagust; Mauro Mocerino; Henry Matovu; Chin-Chung Tsai; Roy Tasker – Journal of Chemical Education, 2023
Magnetic molecular models help students explore molecular structures and interactions. In this study, we investigated how pairs of students used magnetic models to explore hydrogen bonding and the 6-fold symmetry of snowflakes. Fourteen first-year students enrolled in a chemistry unit participated in pairs. Students' interactions with the magnetic…
Descriptors: College Freshmen, Science Instruction, Molecular Structure, Chemistry
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T. Leon Venable – Journal of Chemical Education, 2024
As an introduction to quadrupolar effects in NMR spectroscopy, students use low field ([superscript 1]H, 60 MHz), benchtop [superscript 13]C NMR spectroscopy to contrast the spin-spin coupling behavior of [superscript 13]C to the dipolar [superscript 1]H and quadrupolar [superscript 2]D in familiar solvents C(H/D)Cl[subscript 3], C(H/D)[subscript…
Descriptors: Inorganic Chemistry, Science Laboratories, Scientific Concepts, Spectroscopy
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Ahlburg, Jakob Voldum; Menhinnitt, Zach; Thomas-Hunt, Jack; Saura-Mu´zquiz, Matilde; Christensen, Mogens – Journal of Chemical Education, 2021
In this experiment, students explore the synthesis and physical property characterization of the magnetic material strontium hexaferrite (SrFe[subscript 12]O[subscript 19]). SrFe[subscript 12]O[subscript 19] crystallites are prepared by a simple but fascinating sol-gel autocombustion synthesis. The prepared powder is compacted into pellets and…
Descriptors: Chemistry, Science Instruction, Magnets, Inorganic Chemistry
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Subratti, Afraz; Lalgee, Lorale J.; Jalsa, Nigel K. – Journal of Chemical Education, 2020
A magnetic stirrer is an indispensable instrument in any laboratory setting. Commercially available stirrers are costly and have a defined life-span. The construction of a low-cost magnetic stirrer based on pulse width modulation is described. The design reported uses mainly recycled parts which results in a robust and efficient device at a very…
Descriptors: Chemistry, Laboratory Equipment, Magnets, Electronics
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Ionel Popa; Florin Saitis – Journal of Chemical Education, 2022
Proteins are "magical" workers inside our body, as they accomplish most of the cellular functions. Here we report on a novel approach to teach protein folding and unfolding, using magnets and flexible 3D-printed protein structures. To illustrate this physical process, we used colored circular magnets designed for whiteboards, connected…
Descriptors: Magnets, Printing, Computer Peripherals, Simulation
Annie Regan; John O'Donoghue; Carl Poree; Peter W. Dunne – Journal of Chemical Education, 2023
Materials science research has expanded significantly in recent years; a multidisciplinary field, home to an ever-growing number of chemists. However, our general chemistry degree courses have not changed to reflect the rise in interest in this topic. In this paper, we propose a laboratory experiment for the undergraduate chemistry practical…
Descriptors: Science Instruction, Science Experiments, Magnets, Undergraduate Students
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Sudripet Sharma; Tharique N. Ansari; Karanjeet Kaur; Andrea Gorce; Wilfried M. Braje; Sachin Handa – Journal of Chemical Education, 2023
Chemistry in water is an emerging field that fulfills the fifth principle of green chemistry: replacing toxic organic solvents with their benign counterparts. Although some pharmaceutical industries have developed and adopted chemistry in water, its implementation in teaching laboratories is still limited. Therefore, we have designed an experiment…
Descriptors: Water, Undergraduate Students, Undergraduate Study, College Science
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John C. Pinti; Elizabeth A. Kras; Akanksha Patel; Chloe L. Schrier; Christopher S. Stoj; Janet R. Morrow – Journal of Chemical Education, 2022
This undergraduate laboratory experiment is designed for first-year general chemistry students with the goal of introducing the brilliant colors and magnetic properties of transition metal complexes within a bioinorganic/cell biology context. In the first laboratory period, a coordination complex formed from ferric chloride and maltol is…
Descriptors: Magnets, Metallurgy, Undergraduate Study, Laboratory Experiments
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Alexei Goun; Ksenija D. Glusac – Journal of Chemical Education, 2023
Ultrafast laser spectroscopy is a valuable and increasingly accessible technique for studies of rapid chemical reactions. Critical to ultrafast spectroscopy is the concept of mode locking, a technique that enables a fixed phase relationship between laser modes, resulting in laser pulses with very short duration (in the fs or ps range). Despite the…
Descriptors: Lasers, Spectroscopy, Science Instruction, Chemistry
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Cesin-AbouAtme, Tania; Lopez-Almeida, CelesteG.; Molina-Labastida, Geronimo; Ibanez, Jorge G. – Journal of Chemical Education, 2021
Due to social distancing constraints during the COVID-19 pandemic, several experiments were designed in the Fall 2020 and Spring 2021 semesters in our Electrochemistry and Corrosion elective course to demonstrate electrochemical phenomena and applications at the students' homes with a kit sent by the school. We report here a student-designed…
Descriptors: Light, Energy, Magnets, Science Experiments
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Carroll, Felix A.; Blauch, David N. – Journal of Chemical Education, 2018
Three-dimensional printing was used to prepare a p-bonding model with embedded magnets. The model enables students to have a kinesthetic experience that simulates the energetics of bonding, antibonding, and nonbonding p-orbital interactions.
Descriptors: Science Instruction, Printing, Models, Magnets
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Mann, Patrick Bergstrom; Clark, Samuel; Cahill, Samuel T.; Campbell, Craig D.; Harris, Matthew T.; Hibble, Simon; To, Trang; Worrall, Andrew; Stewart, Malcolm – Journal of Chemical Education, 2019
Earth's field nuclear magnetic resonance (EFNMR) spectroscopy offers students a unique opportunity to consolidate their understanding of NMR spectroscopic theory through hands-on practice with a simple spectrometer. A comprehensive, 6 h experiment is presented for the introduction of low-field NMR techniques, covering spectroscopy, relaxivity, and…
Descriptors: Chemistry, Science Instruction, College Science, Undergraduate Study
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Elliott, Leslie Atkins; Sippola, Elizabeth; Watkins, Jeffrey – Journal of Chemical Education, 2019
In this article, we describe how the Gaussian Gun, a simple configuration of magnets and ball bearings, can be leveraged to connect ideas from physics to representations and ideas that are central to chemistry and challenging for students to learn. In particular, we show how the Gaussian Gun, an arrangement of ball bearings and magnets, models…
Descriptors: Science Instruction, Chemistry, Physics, Magnets
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Natoli, Sean N.; McMillin, David R. – Journal of Chemical Education, 2018
Students collect magnetic susceptibility data to verify that Hund's rule correctly predicts electronic configurations. Systems examined include three commercially available lanthanide(III)-containing complexes of the form M(acac)[subscript 3](H[subscript 2]O)[subscript 2] (where M = La(III), Nd(III), and Gd(III), and acac denotes the [CH[subscript…
Descriptors: Science Instruction, Magnets, College Science, Undergraduate Study
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Dalverny, Anne-Laure; Leyral, Géraldine; Rouessac, Florence; Bernaud, Laurent; Filhol, Jean-Sébastien – Journal of Chemical Education, 2018
Magnetic iron oxide nanoparticles were synthesized and stabilized using ammonium cations or poly(vinyl alcohol) to produce amazing materials such as safer aqueous ferrofluids, ferrogels, ferromagnetic inks, plastics, and nanopowders illustrating how versatile materials can be produced just by simple modifications. The synthesis is fast, reliable,…
Descriptors: Science Instruction, Chemistry, Magnets, College Science
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