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Showing 1 to 15 of 39 results Save | Export
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Isaiah Nelsen; Ayesha Farheen; Scott E. Lewis – Chemistry Education Research and Practice, 2024
Representations in chemistry are the tools by which students, instructors, and chemists reason with chemical concepts that are abstract. Although representations are regularly used within the chemistry classroom, there is more to uncover regarding the ways students interact with representations when given chemistry tasks. This study aimed to…
Descriptors: Teaching Methods, Chemistry, Science Instruction, Undergraduate Students
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KatieMarie Q. Magnone; Ellen J. Yezierski – Journal of Chemical Education, 2024
Most chemistry instruction and assessment lie in the symbolic domain of Johnstone's representational levels, despite years of chemistry education researchers calling for increased emphasis to be placed on the molecular or particulate level of chemistry. Without a deep understanding of the particulate nature of matter and molecular-level…
Descriptors: Chemistry, Secondary School Science, Science Instruction, High School Teachers
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Hootan Roshandel; Matthew Shammami; Shiyun Lin; Yin-Pok Wong; Paula L. Diaconescu – Journal of Chemical Education, 2023
The rise of virtual and online education in recent years has led to the development and popularization of many online tools, notably three-dimensional (3D) models and augmented reality (AR), for visualizing various structures in chemical sciences. The majority of the developed tools focus on either small molecules or biological systems, as…
Descriptors: Plastics, Science Instruction, Chemistry, Computer Software
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Kassem Hallal; Sami Tlais – Journal of Chemical Education, 2023
Different molecular representations are usually used to depict the three-dimensional (3D) structure of organic compounds. Mastering the skill of interconverting one form into another is essential for students to ensure success in organic chemistry. The traditional and recently developed methods for completing such interconversions that rely on 3D…
Descriptors: Undergraduate Students, Chemistry, Science Instruction, Organic Chemistry
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Weiss, Charles J. – Biochemistry and Molecular Biology Education, 2022
This article reports a workshop from the 2021 IUBMB/ASBMB Teaching Science with Big Data conference held virtually in June 2021 where participants learned to explore and visualize large quantities of protein PBD data using Jupyter notebooks and the Python programming language. This activity instructs participants using Jupyter notebooks, Python…
Descriptors: Visual Aids, Programming Languages, Data Analysis, Science Instruction
Ayesha Farheen – ProQuest LLC, 2023
Molecular representations that show chemical bonding are ubiquitous in general and organic chemistry. These help in communicating chemistry concepts that are fundamental to understanding "how" and "why" molecules interact. The goal of this dissertation work is to offer an evidence-based report on the affordances and limitations…
Descriptors: Organic Chemistry, Science Instruction, Molecular Structure, Visual Aids
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Patron, Emelie; Linder, Cedric; Wikman, Susanne – Science Education, 2021
Since visual representations play a particularly important role in the teaching and learning of chemistry, the exploration described in this article focuses on them. This is an explorative study of the qualitatively different ways that visual representations can be unpacked by Swedish upper secondary school chemistry teachers dealing with…
Descriptors: Science Instruction, Secondary School Science, Visual Aids, Molecular Structure
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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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Abukari, Moses Abdullai; Marifa, Huaru Alhassan; Samari, Jonathan Ayelsoma; Dorsah, Philip; Abudu, Fatao – Problems of Education in the 21st Century, 2022
The concept of hybridisation is one of the most difficult concepts for chemistry students to grasp at all levels of learning. Research showed the students conceptual difficulty ranged from their lack of the prerequisite knowledge for grasping the topic hybridisation to chemical bond formation and orientations of atomic orbitals. This study…
Descriptors: High School Students, Difficulty Level, Student Attitudes, Science Achievement
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Rahmawati, Yuli; Dianhar, Hanhan; Arifin, Fadhillah – Education Sciences, 2021
Students often have difficulty understanding abstract concepts in chemistry and a low spatial ability, especially in visualizing intermolecular interactions at the submicroscopic level. Therefore, this study aims to analyze the spatial ability of students by using a 3D virtual representation as they study the curriculum topic of molecular…
Descriptors: Spatial Ability, Chemistry, Science Instruction, Secondary School Students
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Florjanczyk, Ursula; Ng, Derek P.; Andreopoulos, Stavroula; Jenkinson, Jodie – Biochemistry and Molecular Biology Education, 2018
The mathematical models that describe enzyme kinetics are invaluable predictive tools in numerous scientific fields. However, the daunting mathematical language used to describe kinetic behavior can be confusing for life science students; they often struggle to conceptualize and relate the mathematical representations to the molecular phenomena…
Descriptors: Undergraduate Students, Science Instruction, College Science, Animation
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Eriksen, Kristina; Nielsen, Bjarne E.; Pittelkow, Michael – Journal of Chemical Education, 2020
We present a simple procedure to make an augmented reality app to visualize any chemical 3D model. The molecular structure may be based on crystallographic data or from computational modeling. This guide is made in such a way that no programming skills are needed, and the procedure uses free software and provides a way to visualize 3D structures…
Descriptors: Chemistry, Molecular Structure, Science Instruction, Teaching Methods
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Fatemah, Amal; Rasool, Shahzad; Habib, Uzma – Journal of Chemical Education, 2020
Students undertaking courses in the field of chemistry need to integrate their spatial skills and conceptual knowledge. However, model perception along with the understanding of spatial processes and spatial structures of molecules has been a cause of difficulty for students as conventional teaching methods cannot fully aid student comprehension.…
Descriptors: Chemistry, Telecommunications, Handheld Devices, Spatial Ability
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Seibert, Johann; Kay, Christopher W. M.; Huwer, Johannes – Journal of Chemical Education, 2019
Given that students are constantly communicating and documenting special experiences in their social and private lives with digital devices, we suggest that this behavior could be used to record and deepen learning experiences-such as visualizing reactions at the molecular level-in a chemistry class. An example would be the creation of stop-motion…
Descriptors: Science Instruction, Chemistry, Science Experiments, Educational Technology
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Lamichhane, Roshan; Reck, Cathrine; Maltese, Adam V. – Chemistry Education Research and Practice, 2018
Misconceptions are the "the old, the bad, and the ugly" prior knowledge, ideas or conceptions that the learners have that hinder their further learning in science. Several types of misconceptions that undergraduate students hold about reaction coordinate diagrams (from here on we use the term "reaction coordinate diagrams" and…
Descriptors: Chemistry, Multiple Choice Tests, Interviews, Undergraduate Students
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