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Andreas Haraldsrud; Tor Ole B. Odden – Journal of Chemical Education, 2023
When learning chemistry, students must learn to extract chemical information from mathematical expressions. However, chemistry students' exposure to mathematics often comes primarily from pure mathematics courses, which can lead to knowledge fragmentation and potentially hinder their ability to use mathematics in chemistry. This study examines how…
Descriptors: Chemistry, Mathematics, Computation, Cognitive Processes
Su, King-Dow – Journal of Baltic Science Education, 2021
This research focuses on students' higher-order cognitive skill (HOCS)-oriented learning to construct effective hierarchical thinking abilities in their chemical particulate nature of matter. For in-depth knowledge and profound understanding, this research deals with students' positive developments towards HOCS with a special guidance to Marzanos'…
Descriptors: Thinking Skills, Chemistry, Science Instruction, Cognitive Processes
Álvarez, Vanessa; Torres, Tarcilo; Gangoso, Zulma; Sanjosé, Vicente – Journal of Baltic Science Education, 2020
In physics and chemistry, the development of problem-solving skills is necessary to become an expert. A simple cognitive model to analyse such development is proposed and tested. An exploratory research was conducted with expert professors and students in initial and advanced years. A think aloud procedure was used to obtain relevant data while…
Descriptors: Physics, Chemistry, Science Instruction, Problem Solving
Betz, Nicole; Leffers, Jessica S.; Thor, Emily E. Dahlgaard; Fux, Michal; de Nesnera, Kristin; Tanner, Kimberly D.; Coley, John D. – CBE - Life Sciences Education, 2019
Researchers have identified patterns of intuitive thinking that are commonly used to understand and reason about the biological world. These "cognitive construals" (anthropic, teleological, and essentialist thinking), while useful in everyday life, have also been associated with misconceptions about biological science. Although…
Descriptors: Science Instruction, College Science, Biology, Undergraduate Study
Scott, Emily E.; Anderson, Charles W.; Mashood, K. K.; Matz, Rebecca L.; Underwood, Sonia M.; Sawtelle, Vashti – CBE - Life Sciences Education, 2018
Real-world processes are complex and require ideas from multiple disciplines to be explained. However, many science courses offer limited opportunities for students to synthesize scientific ideas into coherent explanations. In this study, we investigated how students constructed causal explanations of complex phenomena to better understand the…
Descriptors: Science Instruction, Logical Thinking, Scientific Concepts, Undergraduate Students
Modir, Bahar; Thompson, John D.; Sayre, Eleanor C. – Physical Review Physics Education Research, 2019
Students' difficulties in quantum mechanics may be the result of unproductive framing rather than a fundamental inability to solve the problems or misconceptions about physics content. Using the theoretical lens of epistemological framing, we applied previously developed frames to seek an underlying structure to the long lists of published…
Descriptors: Quantum Mechanics, Mechanics (Physics), Concept Formation, Misconceptions
Gouvea, Julia S.; Simon, Matt R. – CBE - Life Sciences Education, 2018
In biology education research, it has been common to model cognition in terms of relatively stable knowledge structures (e.g., mental models, alternative frameworks, deeply held misconceptions). For example, John D. Coley and Kimberley D. Tanner recently proposed that many student difficulties in biology stem from underlying cognitive frameworks…
Descriptors: Biology, Science Education, Educational Research, Misconceptions
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
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
Weaver, Joanna P. – ProQuest LLC, 2019
This study tested the hypothesis that exploratory learning, with and without analogous problems, would improve students' ability to make connections between conceptually-related topics. In this randomized experiment, undergraduates in introductory physics (N = 171) studied a new topic under three different instructional conditions. Order and type…
Descriptors: Undergraduate Students, Science Instruction, College Science, Physics
Tiettmeyer, Jessica M.; Coleman, Amelia F.; Balok, Ryan S.; Gampp, Tyler W.; Duffy, Patrick L.; Mazzarone, Kristina M.; Grove, Nathaniel P. – Journal of Chemical Education, 2017
Mastering the ability to construct and manipulate Lewis structures is an important first step along the journey to reaching representational competence. Lewis structures serve as a convenient organizational scheme that can help students to scaffold their chemical knowledge and help them to apply it to predict a variety of physical and chemical…
Descriptors: Science Instruction, College Science, Undergraduate Study, Educational Research
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
Wood, Anna K.; Galloway, Ross K.; Hardy, Judy – Physical Review Physics Education Research, 2016
According to dual processing theory there are two types, or modes, of thinking: system 1, which involves intuitive and nonreflective thinking, and system 2, which is more deliberate and requires conscious effort and thought. The Cognitive Reflection Test (CRT) is a widely used and robust three item instrument that measures the tendency to override…
Descriptors: Science Instruction, Physics, Scientific Concepts, Concept Formation
Langbeheim, Elon – Chemistry Education Research and Practice, 2015
The article, "Using Animations in Identifying General Chemistry Students' Misconceptions and Evaluating Their Knowledge Transfer Relating to Particle Position in Physical Changes" (Smith and Villarreal, 2015), reports that a substantial proportion of undergraduate students expressed misconceived ideas regarding the motion of particles in…
Descriptors: Science Instruction, Scientific Concepts, Misconceptions, Chemistry
Michels, Kristin K.; Michels, Zachary D.; Hotchkiss, Sara C. – Natural Sciences Education, 2016
Although spatial reasoning and penetrative thinking skills are essential for many disciplines, these concepts are difficult for students to comprehend. In microscopy, traditional educational materials (i.e., photographs) are static. Conversely, video-based training methods convey dimensionality. We implemented a real-time digital video imaging…
Descriptors: Spatial Ability, Laboratory Equipment, Teaching Methods, Video Technology