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Showing 76 to 90 of 478 results Save | Export
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Sarju, Julia P. – Journal of Chemical Education, 2020
The social distancing measures introduced to prevent the spread of COVID-19 have led to the rapid redesign of chemistry instruction in higher education from face-to-face to online delivery. The design, implementation, and evaluation of a redeveloped undergraduate level course on catalysis which was delivered to 188 students (including 22 natural…
Descriptors: COVID-19, Pandemics, School Closing, College Science
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Pagano, Justin K.; Jaworski, Leslie; Lopatto, David; Waterman, Rory – Journal of Chemical Education, 2018
A research-based inorganic chemistry laboratory course is described. Using the defined protocol of a course-based undergraduate research experience (CURE), students undertake a self-designed research project to identify new catalysts for the dehydrogenation of ammonia borane. Students select ligands and metals, prepare and characterize catalysts…
Descriptors: Inorganic Chemistry, Science Instruction, Science Laboratories, Undergraduate Study
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Macaluso, Robin; Amaro-Jiménez, Carla; Patterson, Oliver K.; Martinez-Cosio, Maria; Veerabathina, Nilashki; Clark, Kametrice; Luken-Sutton, Jennifer – College Teaching, 2021
Here we share results from a larger study of professional development (PD) provided to faculty at Research I Urban University (RIUU), where STEM faculty modeled active learning strategies and provided ready-to-use STEM materials to teaching staff. Data from 94 STEM faculty, who comprised 27% of the total participants (N = 340), demonstrated a…
Descriptors: Faculty Development, College Faculty, STEM Education, Active Learning
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de Lill, Daniel T.; Carraher, Charles E., Jr. – Journal of Chemical Education, 2017
Inorganic polymers can be introduced in a variety of undergraduate courses to discuss concepts related to polymer chemistry. Inorganic polymers such as silicates and polysiloxanes are simple materials that can be incorporated into an introductory or descriptive inorganic course. Polymers based on inorganic carbon, including diamond and graphite,…
Descriptors: Undergraduate Study, Concept Teaching, Scientific Concepts, Inorganic Chemistry
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Bo¨rgel, Jonas; Campbell, Michael G.; Ritter, Tobias – Journal of Chemical Education, 2016
The presentation of d-orbital splitting diagrams for square planar transition metal complexes in textbooks and educational materials is often inconsistent and therefore confusing for students. Here we provide a concise summary of the key features of orbital splitting diagrams for square planar complexes, which we propose may be used as an updated…
Descriptors: Science Education, Scientific Concepts, Textbooks, Educational Resources
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Young, Karin J.; Lashley, Sarah; Murray, Sarah – Journal of Chemical Education, 2019
Creating instructional activities and assessments that align with expected learning outcomes can improve student learning. Communicating learning expectations to students may lead to better student performance and an increase in student perceptions of the fairness of the assessment tools. One tool for communicating learning outcomes is the…
Descriptors: Inorganic Chemistry, Science Instruction, Student Attitudes, Science Achievement
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Nennig, Hannah T.; Idárraga, Katrina L.; Salzer, Luke D.; Bleske-Rechek, April; Theisen, Roslyn M. – Chemistry Education Research and Practice, 2020
Despite recent interest in online learning, systematic comparisons of online learning environments with traditional classroom environments are limited, particularly in the sciences. Here, we report on a systematic comparison of an online and face-to-face classroom for a sophomore-level, lecture-only introductory inorganic chemistry course that is…
Descriptors: Inorganic Chemistry, Science Instruction, Student Attitudes, Online Courses
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Shekhirev, Mikhail; Goza, John; Teeter, Jacob D.; Lipatov, Alexey; Sinitskii, Alexander – Journal of Chemical Education, 2017
Synthesis of quantum dots is a valuable experiment for demonstration and discussion of quantum phenomena in undergraduate chemistry curricula. Recently, a new class of all-inorganic perovskite quantum dots (QDs) with a formula of CsPbX[subscript 3] (X = Cl, Br, I) was presented and attracted tremendous attention. Here we adapt the synthesis of…
Descriptors: Chemistry, College Science, Undergraduate Students, Inorganic Chemistry
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Tyler, Sarah F.; Judkins, Eileen C.; Morozov, Dmitry; Borca, Carlos H.; Slipchenko, Lyudmila V.; McMillin, David R. – Journal of Chemical Education, 2017
Electronic spectra often exhibit vibronic structure when vibrational and electronic transitions occur in concert. Theory reveals (1) that orbital symmetry considerations determine specific roles played by the nuclear degrees of freedom and (2) that the vibrational excitation is often highly regiospecific, that is, attributable to an identifiable…
Descriptors: Science Instruction, College Science, Undergraduate Study, Inorganic Chemistry
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Johnstone, Erik V.; Yates, Mary Anne; Poineau, Frederic; Sattelberger, Alfred P.; Czerwinski, Kenneth R. – Journal of Chemical Education, 2017
The radioactive nature of technetium is discussed using a combination of introductory nuclear physics concepts and empirical trends observed in the chart of the nuclides and the periodic table of the elements. Trends such as the enhanced stability of nucleon pairs, magic numbers, and Mattauch's rule are described. The concepts of nuclear binding…
Descriptors: Physics, Molecular Structure, Introductory Courses, Scientific Concepts
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Sein, Lawrence T., Jr.; Sein, Sarajane E. – Journal of Chemical Education, 2015
A system for the construction of double-sided paper models of the 14 Bravais lattices, and important crystal structures derived from them, is described. The system allows the combination of multiple unit cells, so as to better represent the overall three-dimensional structure. Students and instructors can view the models in use on the popular…
Descriptors: Models, Inorganic Chemistry, Video Technology, College Science
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Srinivasan, Shalini; Reisner, Barbara A.; Smith, Sheila R.; Stewart, Joanne L.; Johnson, Adam R.; Lin, Shirley; Marek, Keith A.; Nataro, Chip; Murphy, Kristen L.; Raker, Jeffrey R. – Journal of Chemical Education, 2018
ACS Examinations provide a lens through which to examine historical changes in topic coverage via analyses of course-specific examinations. This study is an extension of work completed previously by the ACS Exams Research Staff and collaborators in general chemistry, organic chemistry, and physical chemistry to explore content changes in the…
Descriptors: Inorganic Chemistry, Science Instruction, Spatial Ability, College Science
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Ma, Yan-Zi; Jia, Li; Ma, Kai-Guo; Wang, Hai-Hong; Jing, Xi-Ping – Journal of Chemical Education, 2017
An integrated and inquiry-based experiment on solid state chemistry is applied to an inorganic chemistry lab course to provide insight into the characteristics of the solid phase reaction. In this experiment, students have the opportunity to synthesize long-lasting phosphors with formula xSrO·yAl[subscript 2]O[subscript 3]:Eu[superscript 2+],…
Descriptors: Undergraduate Students, Science Instruction, Inorganic Chemistry, Science Experiments
Das, Arijit – Online Submission, 2017
In this chapter text-based learning approaches have been highlighted by innovative and time economic way to enhance the interest of students who belong to the paranoia zone in Electronic Structure of Atoms and Molecules beneath Inorganic Chemistry of chemical science. In this pedagogical survey, I have tried to hub two (02) time economic…
Descriptors: Science Instruction, Molecular Structure, Inorganic Chemistry, Teaching Methods
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Thananatthanachon, Todsapon – Journal of Chemical Education, 2016
In this experiment, the students explore the synthesis of a crystalline solid-state material, barium zirconate (BaZrO3) by two different synthetic methods: (a) the wet chemical method using BaCl[subscript 2]·2H[subscript 2]O and ZrOCl[subscript 2]·8H[subscript 2]O as the precursors, and (b) the solid-state reaction from BaCO[subscript 3] and…
Descriptors: Inorganic Chemistry, Synthesis, Laboratory Experiments, Scientific Methodology
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