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Hou, Huei-Tse; Fang, Ying-Sang; Tang, Joni Tzuchen – Interactive Learning Environments, 2023
Logical thinking and reasoning of geometric space are among the key abilities of science and technology education. This research developed a framework of an alternate reality-based board game incorporating augmented reality (AR) exploration with multi-dimensional scaffolding, including "cognitive scaffolding," "metacognitive…
Descriptors: Educational Games, Computer Simulation, Scaffolding (Teaching Technique), Spatial Ability
Shelli L. Casler-Failing; Leah C. Swann – Middle Grades Review, 2023
A qualitatively oriented mixed methods case study was conducted to investigate the effects of incorporating LEGO robotics into a 7th-grade mathematics curriculum. Using the lenses of Social Constructivist Theory and the Five Stages of Technology Integration, this research focused on the development of proportional reasoning skills. The data show…
Descriptors: Robotics, Logical Thinking, Elementary School Mathematics, Grade 7
Feride Ercan Yalman – Science Education International, 2023
This research aimed to assess the quality of arguments and informal reasoning abilities of pre-service science teachers concerning various socio-scientific issues (SSI), utilizing dilemma cards. The case study method, a qualitative research approach, was employed, involving 12 pre-service science teachers. Participants completed the dilemma cards…
Descriptors: Persuasive Discourse, Educational Quality, Thinking Skills, Preservice Teachers
Alexandria A. Viegut; Percival G. Matthews – Grantee Submission, 2023
Understanding fraction magnitudes is foundational for later math achievement. To represent a fraction "x/y," children are often taught to use "partitioning": break the whole into "y" parts, and shade in "x" parts. Past research has shown that partitioning on number lines supports children's fraction…
Descriptors: Fractions, Mathematics Skills, Number Concepts, Skill Development
Alexandria A. Viegut; Percival G. Matthews – Developmental Psychology, 2023
Understanding fraction magnitudes is foundational for later math achievement. To represent a fraction x/y, children are often taught to use "partitioning": Break the whole into y parts and shade in x parts. Past research has shown that partitioning on number lines supports children's fraction magnitude knowledge more than partitioning on…
Descriptors: Fractions, Mathematics Skills, Number Concepts, Skill Development
Rodriguez, Jon-Marc G.; Towns, Marcy H. – Journal of Chemical Education, 2019
Analogies are useful tools instructors can use to help make challenging concepts less abstract by drawing connections to familiar contexts. In this paper we provide an overview of the various analogies published in the education literature that are situated in the context of enzyme kinetics, including narrative-based analogies (analogies intended…
Descriptors: Biochemistry, Kinetics, Science Instruction, Teaching Methods
Llinares, Salvador; Clemente, Francisco – Mathematics Education Research Journal, 2019
The study aimed at characterising the shift from configural reasoning to proof construction in geometry. One hundred eighty-two preservice primary teachers solved two geometry problems in which they had to generate a proof from the information provided by a geometrical configuration. Results indicated that proof construction was linked to the way…
Descriptors: Logical Thinking, Geometry, Mathematical Logic, Validity
Lauterman, Tirza; Ackerman, Rakefet – Metacognition and Learning, 2019
Meta-reasoning refers to processes by which people monitor problem-solving activities and regulate effort investment. Solving is hypothesized to begin with an initial Judgment of Solvability (iJOS)--the solver's first impression as to whether the problem is solvable--which guides solving attempts. Meta-reasoning research has largely neglected…
Descriptors: Problem Solving, Cognitive Processes, Metacognition, Self Esteem
Hinterecker, Thomas; Knauff, Markus; Johnson-Laird, P. N. – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2019
Individuals draw conclusions about possibilities from assertions that make no explicit reference to them. The model theory postulates that assertions such as disjunctions refer to possibilities. Hence, a disjunction of the sort, "A or B or both," where "A" and "B" are sensible clauses, yields mental models of an…
Descriptors: Logical Thinking, Abstract Reasoning, Inferences, Probability
Hetzroni, O. E.; Hessler, M.; Shalahevich, K. – Journal of Intellectual Disability Research, 2019
Background: Systematicity principle, used during analogical reasoning, enables building up deeper abstract concepts as part of structure mapping. The purpose of this study was to investigate structure mapping processes that occur during acquisition of new relational categories and to identify the learning patterns and systematicity of children…
Descriptors: Children, Autism, Pervasive Developmental Disorders, Intellectual Disability
Cunha, Miguel Pina e; Clegg, Stewart – Learning Organization, 2019
Purpose: This paper aims to describe the hidden presence of improvisation in organizations. The authors explore this presence through George Perec's notion of the infra-ordinary applied to the study of the learning organization and its paradoxes. Design/methodology/approach: Most studies of paradox and improvisation are qualitative and inductive.…
Descriptors: Creative Activities, Organizations (Groups), Logical Thinking, Philosophy
Exploring the Complex Relationships among Reasoning, Content Understanding, and Intuition in Physics
Gette, Cody Ray – ProQuest LLC, 2019
Physics education research over the past few decades has made significant advances toward improving instructional practices and developing effective instructional materials for physics classrooms. In some contexts, however, after multiple instructional refinements difficulties can remain persistent. Recent findings in PER suggest that many of…
Descriptors: Physics, Logical Thinking, Concept Formation, Science Instruction
Conceptual Dynamics of Student Reasoning during Interviews Involving Discrepant Embodied Experiences
Victor R. Lee – Journal for STEM Education Research, 2019
Clinical interviews are a research instrument for STEM education that elicit a variety of conceptual dynamics. While some efforts have been made to document what conceptual dynamics take place in such interviews, more remains to be done. This article describes conceptual dynamics observed in two cases where high school students were interviewed…
Descriptors: Logical Thinking, High School Students, Human Body, Student Experience
Lu, Chang; Macdonald, Rob; Odell, Bryce; Kokhan, Vasyl; Demmans Epp, Carrie; Cutumisu, Maria – Journal of Computing in Higher Education, 2022
The field of computational thinking (CT) is developing rapidly, reflecting its importance in the global economy. However, most empirical studies have targeted CT in K-12, thus, little attention has been paid to CT in higher education. The present scoping review identifies and summarizes existing empirical studies on CT assessments in…
Descriptors: Computation, Thinking Skills, Higher Education, Educational Trends
Linfield, Rachel; Ireland, Erin – Primary Science, 2022
The "Primary SPACE Project Research Report: Sound" (Watt and Russell, 1990) provides interesting reading relating to primary-aged children's concepts of sound. It reveals a range of children's views on how sound is made, how sounds are heard and how sound travels. While some children are shown to have knowledge that sounds travel and are…
Descriptors: Physics, Acoustics, Teaching Methods, Science Instruction

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