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Bender, Lisa; Renkl, Alexander; Eitel, Alexander – Applied Cognitive Psychology, 2021
We investigated the processes that make seductive details (i.e., interesting but irrelevant pictures and text passages in learning materials) harmful for learning scientific concepts and principles. In our experiment, students (N = 113) learned without seductive details (control condition) or with seductive details, and afterwards worked on a…
Descriptors: Relevance (Education), Scientific Concepts, Learning, Scientific Principles
Khishfe, Rola – Science & Education, 2023
The goal of all reform documents in science education is to target scientific literacy. Toward that end, having students understand the nature of science (NOS) is a critical component. As it turns out, the development of NOS conceptions is a cognitive learning outcome. Therefore, an explicit approach needs to be promoted and emphasized in the…
Descriptors: Educational Improvement, Scientific Principles, Scientific Concepts, Literature Reviews
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
Weber, Anke Maria; Leuchter, Miriam – British Journal of Educational Psychology, 2020
Background: Preschoolers' knowledge of the principle of static equilibrium is an important research focus for understanding children's science content knowledge. Hitherto studies have mainly used behavioural observation with small samples. Thus, extending these studies with a validated test instrument is desirable. Aims: The aim was to validate an…
Descriptors: Preschool Children, Knowledge Level, Scientific Concepts, Scientific Principles
Balta, Nuri; Japashov, Nursultan; Abdulbakioglu, Mustafa; Oliveira, Alandeom W. – Physics Education, 2020
Student cognition in response to intuitive and counterintuitive stimuli in the school science curriculum is not well understood. To address this issue, this study examines high school students' cognitive responses to three counterintuitive physics problems. Our analysis reveals that student success in arriving at counter-intuitive physical…
Descriptors: High School Students, Science Instruction, Secondary School Science, Physics
Cuzzolino, Megan Powell – Electronic Journal for Research in Science & Mathematics Education, 2021
There is an increasingly rich body of developmental research on children's understanding of science and religion as ways of knowing. In this manuscript, I put this scholarship in conversation with applied research on science education and consider the potential implications for exposing children to instruction that addresses the relationship…
Descriptors: Scientific Principles, Religion, Science Education, Cultural Influences
Mi, Shuaishuai; Lu, Shanshan; Bi, Hualin – Journal of Baltic Science Education, 2020
This study aims to reveal the trends and foundations in research on students' conceptual understanding in science education. The literature was selected from three recognized journals in science education. The Structural Topic Model (STM) method was used to categorize articles into ten topics considering information about the semantic cohesion and…
Descriptors: Science Education, Scientific Concepts, Concept Formation, Persuasive Discourse
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
Leniz, Ane; Zuza, Kristina; Guiasola, Jenaro – Physical Review Physics Education Research, 2017
This study examines the causal reasoning that university students use to explain how dc circuits work. We analyze how students use the concepts of electric field and potential difference in their explanatory models of dc circuits, and what kinds of reasoning they use at the macroscopic and microscopic levels in their explanations. This knowledge…
Descriptors: Questionnaires, Thinking Skills, Skill Analysis, Student Surveys
Østergaard, Edvin – Cultural Studies of Science Education, 2015
The question of how to foster rooting in science education points towards a double challenge; efforts to "prevent" (further) uprooting and efforts to "promote" rooting/re-rooting. Wolff-Michael Roth's paper discusses the uprooting/rooting pair of concepts, students' feeling of alienation and loss of fundamental sense of the…
Descriptors: Science Education, Phenomenology, Scientific Concepts, Models
De Sá Teixeira, Nuno Alexandre; Oliveira, Armando Mónica; Silva, Ana Duarte – Psicologica: International Journal of Methodology and Experimental Psychology, 2014
Newton's cradle, a device consisting of a chain of steel balls suspended in alignment, has been used extensively in physics teaching to demonstrate the principles of conservation of momentum and kinetic energy in elastic collisions. The apparent simplicity of the device allows one to test commonly hold views regarding the intuitive understanding…
Descriptors: Science Instruction, Physics, Scientific Principles, Motion
Mantyla, Terhi – Science & Education, 2013
In teaching physics, the history of physics offers fruitful starting points for designing instruction. I introduce here an approach that uses historical cognitive processes to enhance the conceptual development of pre-service physics teachers' knowledge. It applies a method called cognitive-historical approach, introduced to the cognitive sciences…
Descriptors: Physics, Logical Thinking, Teaching Methods, Cognitive Processes
Lin, Shih-Yin; Singh, Chandralekha – Physical Review Special Topics - Physics Education Research, 2013
In this study, we examine introductory physics students' ability to perform analogical reasoning between two isomorphic problems which employ the same underlying physics principles but have different surface features. 382 students from a calculus-based and an algebra-based introductory physics course were administered a quiz in the recitation…
Descriptors: Physics, Science Instruction, Problem Solving, Scaffolding (Teaching Technique)
Sternberg, Robert J. – Gifted and Talented International, 2010
In his essay on the role of creativity in science and of science in society, Hisham B. Ghassib (2010) points out that science is much more a series of common attitudes and practices rather than a clearly delineated set of methods. The author agrees. The author also agrees that scientific knowledge is playing a key role in the forward development…
Descriptors: Creativity, Epistemology, Research Needs, Scientific Enterprise
Chiou, Guo-Li; Anderson, O. Roger – International Journal of Science Education, 2010
This study proposes a multi-dimensional approach to investigate, represent, and categorize students' in-depth understanding of complex physics concepts. Clinical interviews were conducted with 30 undergraduate physics students to probe their understanding of heat conduction. Based on the data analysis, six aspects of the participants' responses…
Descriptors: Physics, Undergraduate Students, College Science, Scientific Principles

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