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Showing 1 to 15 of 67 results Save | Export
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Ernest Koranteng – Science Education International, 2024
This study aimed to uncover common difficulties and possible areas for improvement by focusing on the approaches and errors made by 3rd-year undergraduate chemistry students in solving organic synthesis problems. The study employed a purposive sampling technique to select 112 undergraduate chemistry major students to participate in this study.…
Descriptors: Foreign Countries, Undergraduate Students, Chemistry, Science Instruction
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Armélinda Agnello; Jean-François Focant – Journal of Chemical Education, 2025
Student engagement in evidence-based argumentation plays a central role in science education. These skills can be developed when identifying organic molecules from the spectroscopic data. Molecular structural analysis fosters deep procedural knowledge, as it involves (i) flexibly applying a set of procedures to extract information from spectra,…
Descriptors: Persuasive Discourse, Science Education, Chemistry, Spectroscopy
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Irina Braun; Scott E. Lewis; Nicole Graulich – Chemistry Education Research and Practice, 2025
The ability to reason with representations is pivotal for successful learning in Organic Chemistry and is closely linked to representational competence. Given the visual nature of this discipline, this comprises competency in extracting and processing relevant visual information. With regard to the resonance concept, proficiency in identifying…
Descriptors: Undergraduate Students, Organic Chemistry, Science Instruction, Pattern Recognition
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David K. Smith – Journal of Chemical Education, 2023
Organic reaction mechanisms lie at the heart of developing an understanding of how the molecular world functions. However, many students simply try to memorize mechanisms, or use their knowledge of the reagent and product to create a mechanism that "works". This is not helped by the content-heavy organic chemistry curriculum which…
Descriptors: Scientific Concepts, Molecular Structure, Organic Chemistry, Science Education
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Matthew D. Hanson; Daniel P. Miller; Cholavardhan Kondeti; Adam Brown; Eva Zurek; Scott Simpson – Journal of Chemical Education, 2023
In this article, we describe a fully computational laboratory exercise that results in an increase of students' understanding of what quantum chemical geometry optimization calculations are doing to find minimum energy structures. This laboratory exercise was conducted several times over multiple years at a small private undergraduate institution,…
Descriptors: Undergraduate Students, Geometry, Chemistry, Science Education
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Nicola A. Kiernan; Andrew Manches; Michael K. Seery – Chemistry Education Research and Practice, 2024
Central to conceptual understanding of STEM disciplines is visuospatial processing. Despite its acknowledged role in assuring learners' success, less is known about the underlying reasoning students must employ when solving 3-D problems and the ways in which gaining an understanding of this can inform formative assessment and learning in STEM…
Descriptors: Logical Thinking, Chemistry, Scientific Concepts, Molecular Structure
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Adrienne M. Pesce; Daniel B. King – Journal of Chemical Education, 2023
Novice chemists often struggle with the highly visual nature of some chemistry topics. To make visually demanding concepts, such as isomerism and stereochemistry, more accessible to students, chemistry instructors have long recommended the use of molecular model kits as visual aids. However, studies pertaining to student model usage have shown…
Descriptors: Student Attitudes, Molecular Structure, Science Teachers, Science Instruction
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VanVeller, Brett – Journal of Chemical Education, 2021
When organic students are asked to design a total synthesis of a molecule, they are often overwhelmed by the multitude of possible transformations. A decision tree is a useful tool to break complex problems up into simpler steps and scaffold the thinking process that many seasoned chemists take for granted. While many comprehensive resources…
Descriptors: Decision Making, Science Instruction, Molecular Structure, Problem Solving
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José Nunes da Silva Júnior; José Mariano de Sousa Oliveira; Jean-Yves Winum; Antonio José Melo Leite Junior; Francisco Serra Oliveira Alexandre; David Macedo do Nascimento; Ulisses Silva de Sousa; Antônia Torres Ávila Pimenta; André Jalles Monteiro – Journal of Chemical Education, 2024
The educational game Interactions 500 was extensively used remotely during the COVID-19 Pandemic as an activity at the Federal University of Ceará (Brazil) to help students review intermolecular forces. In the postpandemic years, the game was also used face-to-face in the classroom. However, Apple Store and Google Play Store removed it from their…
Descriptors: Chemistry, Science Activities, Educational Games, COVID-19
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Charlotte A. Dodson; Stephen E. Flower; Mark Thomas – Journal of Chemical Education, 2023
Industrial drug discovery teams encompass scientists from multiple specialties and require participants to communicate effectively across disciplinary boundaries. In this paper, we present an undergraduate or graduate classroom simulation of this environment. Over a series of five workshops, student teams of mixed scientific backgrounds perform…
Descriptors: Drug Therapy, Pharmacy, Teamwork, Interdisciplinary Approach
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Pablo Serna-Gallén; Maria Fortuño-Morte; Héctor Beltrán-Mir; Eloísa Cordoncillo – Journal of Chemical Education, 2022
This article presents and discusses the results of an educational innovation that seeks to introduce the world of molecular gastronomy in chemistry lessons as a means to review stoichiometry and offer an alternative way to learn. In the literature to date, there is no evidence of haute cuisine having been employed to contextualize stoichiometry…
Descriptors: Chemistry, Science Instruction, Teaching Methods, Game Based Learning
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Karonen, Maarit; Murtonen, Mari; Södervik, Ilona; Manninen, Marianna; Salomäki, Mikko – Education Sciences, 2021
Understanding chemical models can be challenging for many university students studying chemistry. This study analysed students' understanding of molecular structures using the Lewis structure as a model, and examined what hinders their understanding. We conducted pre- and post-tests to analyse students' conceptions and changes in them. The…
Descriptors: Heuristics, Problem Solving, Molecular Structure, College Students
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Sindhu, R. S.; Tanwar, Pramila – School Science Review, 2020
There has been widespread interest in the study of oxoacids of phosphorus owing to their characteristic structures and uses in various areas of daily life. In this article, a new strategy is recommended to determine their structures. This strategy will help to develop problem-solving skills and creativity among students. The strategy is based on…
Descriptors: Chemistry, Molecular Structure, Scientific Concepts, Science Instruction
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Magalhães, Alexandre L. – Journal of Chemical Education, 2020
A bachelor's degree program in chemistry typically starts with basic concepts in mathematics, physics, and chemistry. Those principles are very important because they pave the ground for future advanced studies and, therefore, one needs to present them in a clear but rigorous way. One example is provided by the mathematical notion of an iterative…
Descriptors: Spreadsheets, Chemistry, Science Instruction, Undergraduate Students
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Montes, L. H.; Ferreira, R. A.; Rodríguez, C. – Chemistry Education Research and Practice, 2022
Attitudes towards learning chemistry have been little studied in secondary school students, especially regarding dimensions related to problem solving, the molecular atomic perspective of chemistry, and real-world connection of chemistry. In the present study, we first aimed to design and assess the psychometric properties of the attitude to…
Descriptors: Student Attitudes, Secondary School Students, Science Instruction, Chemistry
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