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Steven M. Singleton; Craig M. Teague; Carl Salter – Journal of Chemical Education, 2022
The principles of process-oriented guided inquiry learning (POGIL) are applied to the analysis of the emission spectrum of atomic hydrogen. Over the course of three learning cycles, students construct the hydrogen atom's energy level diagram and assign quantum numbers using their measurements of the Balmer series plus additional information on the…
Descriptors: Chemistry, Science Instruction, Nuclear Energy, Quantum Mechanics
Hal Van Ryswyk; Hanna Z. Porter; Connor K. M. Seto; Ixchel Lopez; Emma Dy – Journal of Chemical Education, 2023
Pulsed field gradient nuclear magnetic resonance (NMR) is used to estimate the size of quantum dots (QDs) produced in a simple, fast, small-scale synthesis. This upper-division laboratory experiment teaches the basics of QD synthesis and pulsed field gradient NMR, a powerful technique for measuring diffusion coefficients in solution. The diffusion…
Descriptors: Chemistry, Science Instruction, Scientific Concepts, Nuclear Energy
Kirsten E. Martin; Angus J. Koller; Eszter Boros – Journal of Chemical Education, 2023
Radioactive isotopes are an essential part of everyday life and an expanding area of research in the fields of medicine, catalysis, and energy. Here, we describe an educational activity that introduces the concept of radioactive decay and the corresponding benefits, risks, and safe handling strategies. Specifically, we have developed an…
Descriptors: Educational Games, Game Based Learning, Scientific Concepts, Safety
Ibukunolu Adebiyi Ademola; Adekunle Ibrahim Oladejo; Olasunkanmi Adio Gbeleyi; Franklin Ufoma Onowugbeda; Olatunde Lawal Owolabi; Peter Akinsola Okebukola; Deborah Oluwatosin Agbanimu; Stella Ihuoma Uhuegbu – Journal of Chemical Education, 2023
Poor performance of students in chemistry shows that they are having difficulties in learning, mastering the content, and applying what they have learned in examinations. The purpose of this study was to find out the difference in (a) retention of information by students taught nuclear chemistry using the culturo-techno-contextual approach (CTCA)…
Descriptors: Retention (Psychology), Chemistry, Nuclear Energy, Science Education
Dominik Diermann; Jenna Koenen – Journal of Chemical Education, 2024
Most chemistry students struggle with interpreting and understanding NMR (nuclear magnetic resonance) spectra and the general concepts of NMR spectroscopy. NMR spectroscopy seems to be difficult to both teach and learn. Therefore, the corresponding courses should be investigated in more detail. We conducted a survey with N = 39 German university…
Descriptors: Chemistry, Science Instruction, Spectroscopy, Nuclear Energy
Lemma, Abayneh; Belachew, Woldie – Chemistry Education Research and Practice, 2022
This study aimed to uncover the ontological orientations of educators' sense of the atom of Kotebe Metropolitan University (KMU), Ethiopia. Thus, an interpretative case study design was employed, with the analytic approach of grounded theory, due to the importance of atomic ontology as a case and the need for an in-depth analysis of their thinking…
Descriptors: Chemistry, Science Instruction, Universities, College Faculty
Keenan E. Dungey; Eric J. Voss; Susan D. Wiediger – Journal of Chemical Education, 2022
Nanotechnology has been recognized as an important driver of the future economy, and so nanoscience is increasingly being incorporated into the undergraduate chemistry curriculum. This experiment includes the chemical synthesis, optical and chemical testing, and microscopic imaging of gold nanoparticles. Since nanoparticles are too small to…
Descriptors: Molecular Structure, College Science, Science Instruction, Chemistry
Sevgül Çalis – Chemistry Education Research and Practice, 2024
This study focuses on examining the mental models of 11th and 12th-grade students attending a science high school in Turkey regarding the concept of the electron cloud. The study involved 72 students and employed the case study method. The precondition for selecting the sample was that the students had covered the unit on modern atomic theory in…
Descriptors: High School Students, Secondary School Science, Grade 11, Grade 12
Giuseppe Prete; Federica Chiappetta; Piefrancesco Riccardi; Rosanna Tucci; Antonio Bruzzese; Claudio Meringolo – International Society for Technology, Education, and Science, 2023
Recent research emphasizes the need for a more sustained interaction of schools with universities and research institutions. For example, informal after-school programs integrated into the school curriculum can provide opportunities for meaningful interaction with researchers in active learning settings. At the physics department of University of…
Descriptors: Foreign Countries, College School Cooperation, Active Learning, Physics
Wang, Yuan-Hao; Zhang, Guo-Hao; Xiang, Yu-Qin; Yuan, Wen-Li; Fu, Jie; Wang, Shuang-Long; Xiong, Ze-Xuan; Zhang, Ming-Dong; He, Ling; Tao, Guo-Hong – Journal of Chemical Education, 2022
Nuclear chemistry and radiochemistry is a branch of chemistry that has high experimental risks, has high research costs, and is subject to certain prejudices. However, it has an extremely important influence on the development of human life. It is particularly important to emphasize the general education of nuclear chemistry and radiochemistry…
Descriptors: Chemistry, Science Instruction, Nuclear Energy, Radiation
Talbot, Christopher – School Science Review, 2018
This article aims to introduce the actinides and some aspects of nuclear chemistry to teachers and their students. The actinides are a group of f-block elements with atomic numbers from 90 to 103. (The term 'actinoids' encompasses both the actinides and actinium itself). All of the actinides are radioactive but they also have a rich inorganic…
Descriptors: Science Instruction, Chemistry, Nuclear Energy, Metallurgy
Hipple, Britton – Technology and Engineering Teacher, 2020
Clean energy is a topic of increasing political and cultural significance in the age of climate change, and as such can be an interesting topic with which to engage students. One avenue to produce large quantities of power is through harnessing nuclear reactions; however, the social stigma and fear of expanding nuclear power have placed several…
Descriptors: Power Technology, Nuclear Energy, Chemistry, Secondary School Science
Konkankit, Chilaluck C.; Marker, Sierra C.; Bigham, Nicholas P.; Dale, Darren S.; Zax, David B.; Lorey, Daniel R., II; Wilson, Justin J. – Journal of Chemical Education, 2021
There currently exists a significant deficiency in the nuclear chemistry workforce within the United States, despite its importance in areas of medicine, national security, and energy. Poor coverage of this topic across many chemistry departments at the undergraduate level likely contributes to this shortage. Increasing interest and hands-on…
Descriptors: Science Experiments, Science Instruction, Chemistry, Nuclear Energy
Vlaardingerbroek, Barend – School Science Review, 2020
The logos of many atomic energy regulatory bodies present a paradox in that the depictions of atomic structure that they portray tend to be 'wrong' in relation to the rules that govern pictorial representations of atomic structure that we teach. These logos present chemistry educators with excellent classroom resources to enhance critical thinking…
Descriptors: Nuclear Energy, Models, Science Instruction, Critical Thinking
Minter, Christopher Joel – ProQuest LLC, 2019
The research presented in this dissertation looks at how students in general chemistry reason about atomic emission spectroscopy. Situated within the context of a transformed general chemistry curriculum called "Chemistry, Life, the Universe, and Everything" (CLUE), the goal of this study was to (1) characterize the various ways in which…
Descriptors: Logical Thinking, Chemistry, Spectroscopy, College Science