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Suzanne Ruder; Courtney Stanford; Nuha Farhat; Leslie Bolda – Journal of College Science Teaching, 2024
Students need a strong understanding of how to represent chemical compounds in order to succeed in organic chemistry. This project set out to gain a better understanding of students' difficulties with symbolic representations, by identifying the specific errors associated with drawing wedge-dash structures. The focus was on how students…
Descriptors: Undergraduate Students, Chemistry, Science Instruction, Organic Chemistry
Crandell, Olivia M.; Pazicni, Samuel – Chemistry Education Research and Practice, 2023
This study investigates students' cognitive resources for identifying symmetry elements using survey data collected from 39 inorganic chemistry students from twelve undergraduate inorganic classes at universities across the United States. We propose a framework that leverages students' knowledge of symmetry elements as a manifold of cognitive…
Descriptors: Science Process Skills, Cognitive Processes, Scientific Concepts, Inorganic Chemistry
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
Miller, Kathryn; Kim, Thomas – Biochemistry and Molecular Biology Education, 2017
This study investigates the role of representational competence in student responses to an assessment of hydrogen bonding. The assessment couples the use of a multiple-select item ("Choose all that apply") with an open-ended item to allow for an examination of students' cognitive processes as they relate to the assignment of hydrogen…
Descriptors: Biochemistry, Molecular Biology, Science Education, Competence
Caspari, I.; Kranz, D.; Graulich, N. – Chemistry Education Research and Practice, 2018
Research in organic chemistry education has revealed that students often rely on rote memorization when learning mechanisms. Not much is known about student productive resources for causal reasoning. To investigate incipient stages of student causal reasoning about single mechanistic steps of organic reactions, we developed a theoretical framework…
Descriptors: Organic Chemistry, Science Instruction, Logical Thinking, Scientific Principles
Minkley, Nina; Kärner, Tobias; Jojart, Atila; Nobbe, Lasse; Krell, Moritz – Journal of Research in Science Teaching, 2018
In science education, representations are necessary inter alia for the understanding of relationships between structures and systems. However, several studies have identified difficulties of students when working with representations. In the present study, we investigated students' responses (regarding their preference, test performance, mental…
Descriptors: Cognitive Processes, Difficulty Level, Scientific Concepts, Molecular Structure
Hauck, David Johannes; Melle, Insa – Education Sciences, 2021
Collaboration is regarded as one of the core competences of the 21st century when it comes to complex problem solving. In response to high dropout rates among STEM students, we developed a digital-collaborative intervention on a difficult topic, MO theory, for first-year chemistry students. First, students work independently in a Digital Learning…
Descriptors: College Freshmen, College Science, Science Instruction, Chemistry
Teichert, Melonie A.; Tien, Lydia T.; Dysleski, Lisa; Rickey, Dawn – Journal of Chemical Education, 2017
This study investigated relationships between the thinking processes that 28 undergraduate chemistry students engaged in during guided discovery and their subsequent success at reasoning through a transfer problem during an end-of-semester interview. During a guided-discovery laboratory module, students were prompted to use words, pictures, and…
Descriptors: Science Instruction, College Science, Undergraduate Study, Molecular Structure
Dhindsa, Harkirat S.; Treagust, David F. – Chemistry Education Research and Practice, 2014
As an important subject in the curriculum, many students find chemistry concepts difficult to learn and understand. Chemical bonding especially is important in understanding the compositions of chemical compounds and related concepts and research has shown that students struggle with this concept. In this theoretical paper based on analysis of…
Descriptors: Chemistry, Science Instruction, Scientific Concepts, Concept Formation
Graulich, Nicole – Chemistry Education Research and Practice, 2015
Organic chemistry education is one of the youngest research areas among all chemistry related research efforts, and its published scholarly work has become vibrant and diverse over the last 15 years. Research on problem-solving behavior, students' use of the arrow-pushing formalism, the investigation of students' conceptual knowledge and…
Descriptors: Organic Chemistry, Science Instruction, Scientific Concepts, Problem Solving
Larsson, Caroline; Tibell, Lena A. – Research in Science Education, 2015
A well-ordered biological complex can be formed by the random motion of its components, i.e. self-assemble. This is a concept that incorporates issues that may contradict students' everyday experiences and intuitions. In previous studies, we have shown that a tangible model of virus self-assembly, used in a group exercise, helps students to grasp…
Descriptors: Science Education, Biology, Scientific Concepts, Molecular Structure
Carlisle, Deborah; Tyson, Julian; Nieswandt, Martina – Chemistry Education Research and Practice, 2015
The study of chemistry requires the understanding and use of spatial relationships, which can be challenging for many students. Prior research has shown that there is a need to develop students' spatial reasoning skills. To that end, this study implemented guided activities designed to strengthen students' spatial skills, with the aim of improving…
Descriptors: Chemistry, Science Instruction, Undergraduate Students, College Science
Stamovlasis, Dimitrios; Tsitsipis, Georgios; Papageorgiou, George – Chemistry Education Research and Practice, 2010
This work uses the concepts and tools of complexity theory to examine the effect of logical thinking and two cognitive styles, such as, the degree of field dependence/independence and the convergent/divergent thinking on students' understanding of the structure of matter. Students were categorized according to the model they adopted for the…
Descriptors: Cognitive Style, Logical Thinking, Psychometrics, Scores
Newman, Dina L.; Catavero, Christina M.; Wright, L. Kate – CBE - Life Sciences Education, 2012
Cellular processes that rely on knowledge of molecular behavior are difficult for students to comprehend. For example, thorough understanding of meiosis requires students to integrate several complex concepts related to chromosome structure and function. Using a grounded theory approach, we have unified classroom observations, assessment data, and…
Descriptors: Genetics, Grounded Theory, Data Analysis, Concept Teaching
Bivall, Petter; Ainsworth, Shaaron; Tibell, Lena A. E. – Science Education, 2011
This study explored whether adding a haptic interface (that provides users with somatosensory information about virtual objects by force and tactile feedback) to a three-dimensional (3D) chemical model enhanced students' understanding of complex molecular interactions. Two modes of the model were compared in a between-groups pre- and posttest…
Descriptors: Molecular Structure, Science Instruction, Tactual Perception, Educational Technology
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