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Jessica A. Callus – ProQuest LLC, 2022
Over the years it has become more common for practitioners to use the NGSS scientific practices to inform curricula at the undergraduate level. One of these practices is argumentation, the process of engaging in argument from evidence. Argumentation is an important part of the scientific process because scientists must make claims about their…
Descriptors: Chemistry, Nonmajors, Persuasive Discourse, Undergraduate Students
Martin Rozman; Mojca Alif; Urban Bren; Miha Luksic – Journal of Chemical Education, 2022
Electrochromism encompasses reversible changes of material's optical properties (color, opacity) under the influence of an external electric current or applied voltage. The effect has been known for decades, but its importance continues to grow due to the rapid development of smart systems and the accompanying demand to build devices that consume…
Descriptors: Chemistry, Science Instruction, Electronics, Color
JonathanP. Antle; Jerry T. Godbout; Scott Simpson – Journal of Chemical Education, 2022
Students in an upper-level physical chemistry course utilized an open-sourced statistical software package to construct models fitted to experimental pressure-volume data. In the first part of the experiment, students familiarize themselves with model fitting. In the second part of the experiment, students determine which truncated version of the…
Descriptors: Chemistry, Science Instruction, Models, Goodness of Fit
Ricardo J. Ferna´ndez-Tera´n; Estefani´a Sucre-Rosales; Lorenzo Echevarria; Florencio E. Hernández – Journal of Chemical Education, 2022
We present a detailed yet easy-to-follow discussion of the mathematical treatment of time-resolved spectroscopic data in a model-based approach. This is accompanied and complemented by an example of a colorful and pedagogically rich chemical reaction: the permanganate oxidation of sugars in basic aqueous media (often known as the chameleon…
Descriptors: Spectroscopy, Chemistry, Science Instruction, Mathematics
Rachel D. Davidson; Thomas E. O'Loughlin; Theodore E. G. Alivio; Soon-Mi Lim; Sarbajit Banerjee – Journal of Chemical Education, 2022
In this laboratory experiment, students modify a series of surfaces and explore the effects of varying surface chemistry and texture on wettability by different probe liquids. Students begin by building a simple contact angle goniometer utilizing their mobile phone cameras. Next, they contrast the wettability of planar glass substrates…
Descriptors: Science Instruction, Science Experiments, Laboratory Experiments, Telecommunications
Valdinei S. Silva; Edimar P. Nunes; Luzia A. Moura; Ci´ntia L. S. Gomes de Sa´; Vera L. S. Augusto Filha; Anderson R. Albuquerque – Journal of Chemical Education, 2022
The basic knowledge of chemical formula writing is fundamental for chemistry students, yet many still struggle to learn it. To provide a more interactive and engaging approach that facilitates and reinforces student understanding of chemical formulas and stoichiometry of chemical reactions, we have designed a chemical jigsaw puzzle. Only eight…
Descriptors: Chemistry, Science Instruction, Puzzles, Stoichiometry
Kevin H. Hunter; Jon-Marc G. Rodriguez; Nicole M. Becker – Journal of Chemical Education, 2022
We review the literature, from 2006 to 2020, focused on the teaching and learning of chemical bonding. The studies included in our review (48 studies set in 19 different countries overall) involved secondary and postsecondary students as well as K-12 teachers and university faculty. We synthesize these studies' findings to provide implications for…
Descriptors: Science Instruction, Teaching Methods, Chemistry, Scientific Concepts
Matthew Nel; Kariska Potgieter; Oyekunle Azeez Alimi; Andre L. Nel; Reinout Meijboom – Journal of Chemical Education, 2022
Recent advances in laboratory automation and digitization require a teaching strategy for undergraduate students that is inclusive of skills in these areas so that students can be prepared to work within the modern laboratory. Future scientists will need training in coding, microcontrollers, on-demand manufacturing, and robotics. With this in…
Descriptors: Science Education, Organic Chemistry, Undergraduate Students, Laboratory Equipment
Miguel Reina; Herve´ This; Antonio Reina – Journal of Chemical Education, 2022
A language is a system of communication, consisting of a set of sounds or written symbols that enable people to communicate. In chemistry, a particular language is required in order to represent the phenomenological world by means of symbols. Choosing the right words and knowing the precise definitions for chemical concepts is needed for avoiding…
Descriptors: Chemistry, Language Usage, Misconceptions, Scientific Concepts
Robert P. MacDonald; Anna N. Pattison; Sarah E. Cornell; Ashley K. Elgersma; Sarah N. Greidanus; Sydney N. Visser; Melanie Hoffman; Peter G. Mahaffy – Journal of Chemical Education, 2022
Sustainability has a molecular basis that suggests a central role for chemistry in addressing today's challenges to Earth and societal systems, and this role requires educators to see chemical reactions and processes as integral parts of dynamic and interconnected systems. Despite this prospect, few accessible resources are available for students…
Descriptors: Sustainability, Chemistry, Science Instruction, Educational Technology
Daniel Matheus da Silva; Lorena Oliveira de Sousa; Ana Claudia Kasseboehmer – International Journal of Science Education, 2025
This work reports the development and application of an analytical tool for the analysis of the formation of the scientific mind of students who took part in inquiry activities, based on the philosophy of Gaston Bachelard, in a Chemistry Club. For the construction of the analytical instrument, an extracurricular course was offered to first-year…
Descriptors: Scientific Literacy, Science Process Skills, Scientific Attitudes, Student Attitudes
Kevin H. Hunter; Lauren A. Groenenboom; Ayesha Farheen; Nicole M. Becker – Chemistry Education Research and Practice, 2025
The current study aims to contribute to the literature on how organic chemistry students weigh various factors when predicting products of substitution and elimination reactions. This study focuses specifically on these mechanism types, as they are often the first instances where students must consider the "how" and the "why"…
Descriptors: Student Experience, Scientific Concepts, Science Education, Student Attitudes
Catalin Koro Arvidsson – Chemistry Education Research and Practice, 2025
This study investigates if a force-based teaching approach, based on quantum mechanical principles and developed in a lesson study, would enhance the understanding of chemical bonding among upper secondary school students. The teaching approach was based on research on the teaching and learning of chemical bonding. The study included first-year…
Descriptors: Chemistry, Secondary School Students, Science Instruction, Teaching Methods
Grace C. Tetschner; Sachin Nedungadi – Chemistry Education Research and Practice, 2025
Many undergraduate chemistry students hold alternate conceptions related to resonance--an important and fundamental topic of organic chemistry. To help address these alternate conceptions, an organic chemistry instructor could administer the resonance concept inventory (RCI), which is a multiple-choice assessment that was designed to identify…
Descriptors: Scientific Concepts, Concept Formation, Item Response Theory, Scores
Timothy M. Sonbuchner; Eugenia Villa-Cuesta; Michael R. Dores; Richard W. Denton; Jillian C. Nissen; Renu Balyan; Mary Ross – Journal of College Science Teaching, 2025
Despite the intrinsic interdisciplinary nature of STEM, teaching interdisciplinarity in the classroom is difficult and students struggle to find the applicability of concepts and skills in different scientific disciplines. In this work we propose a micro-credential "badge" system called Demonstrated Understanding of Core Knowledge (DUCK)…
Descriptors: Biology, Chemistry, Introductory Courses, Microcredentials

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