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Rubio-Fernández, Paula; Grassmann, Susanne – Journal of Psycholinguistic Research, 2016
This study investigates the development of two cognitive abilities that are involved in metaphor comprehension: implicit analogical reasoning and assigning an unconventional label to a familiar entity (as in Romeo's "Juliet is the sun"). We presented 3- and 4-year-old children with literal object-requests in a pretense setting (e.g.,…
Descriptors: Preschool Children, Figurative Language, Cognitive Ability, Comprehension
Rizzo, Michael T.; Elenbaas, Laura; Cooley, Shelby; Killen, Melanie – Developmental Psychology, 2016
The present study investigated age-related changes regarding children's (N = 136) conceptions of fairness and others' welfare in a merit-based resource allocation paradigm. To test whether children at 3- to 5-years-old and 6- to 8-years-old took others' welfare into account when dividing resources, in addition to merit and equality concerns,…
Descriptors: Children, Age Differences, Resource Allocation, Justice
van Urk, Felix; Grant, Sean; Bonell, Chris – Evidence & Policy: A Journal of Research, Debate and Practice, 2016
The use of explicit programme theory to guide evaluation is widely recommended. However, practitioners and other partnering stakeholders often initiate programmes based on implicit theories, leaving researchers to explicate them before commencing evaluation. The current study aimed to apply a systematic method to undertake this process. We…
Descriptors: Stakeholders, Program Evaluation, Theories, Delphi Technique
Holguín, Valeria Aguirre – North American Chapter of the International Group for the Psychology of Mathematics Education, 2016
This paper reports and describes some of the observations and conclusions drawn from a study developed to find information on undergraduate students' spontaneous actions and reactions to mathematical definitions that are new to them. There were 23 participants from a transition-to-proof course. They were interviewed individually on a particular…
Descriptors: Undergraduate Students, Mathematical Logic, Logical Thinking, Mathematical Concepts
Soysal, Y. – Research in Science Education, 2020
This study identified the accumulated distributions of the enacted discursive moves during classroom inquiry to demonstrate how a science teacher reacted to the existence of two mutually exclusive social languages: everyday social languages of the students vs. social languages of school science. The participants were a science teacher and 26…
Descriptors: Classroom Communication, Discourse Analysis, Video Technology, Science Teachers
Alhirtani, Nahla A. K. – International Education Studies, 2020
The study aimed to identify the use of modern teaching methods at the higher education phase for Arabic language professors- a case of a Premier University. The researcher used the analytical descriptive method, based on the survey method and she has prepared a tool that includes 42 responses. The sample was 27 lecturers and the recovery rate was…
Descriptors: Teaching Methods, Native Language Instruction, Semitic Languages, Higher Education
Williams-Pierce, Caroline; Pier, Elizabeth L.; Walkington, Candace; Boncoddo, Rebecca; Clinton, Virginia; Alibali, Martha W.; Nathan, Mitchell J. – Journal for Research in Mathematics Education, 2017
In this Brief Report, we share the main findings from our line of research into embodied cognition and proof activities. First, attending to students' gestures during proving activities can reveal aspects of mathematics thinking not apparent in their speech, and analyzing gestures after proof production can contribute significantly to our…
Descriptors: Mathematical Logic, Validity, Nonverbal Communication, Cognitive Processes
Héraud, Jean-Loup; Lautesse, Philippe; Ferlin, Fabrice; Chabot, Hugues – Science & Education, 2017
Our work extends a previous study of epistemological presuppositions in teaching quantum physics in upper scientific secondary school in France. Here, the problematic reference of quantum theory's concepts is treated at the ontological level (the counterintuitive nature of quantum objects). We consider the approach of using narratives describing…
Descriptors: Foreign Countries, Secondary School Students, Secondary School Science, Science Instruction
Mercier, Hugo; Boudry, Maarten; Paglieri, Fabio; Trouche, Emmanuel – Educational Psychologist, 2017
We summarize the argumentative theory of reasoning, which claims that the main function of reasoning is to argue. In this theory, argumentation is seen as being essentially cooperative (people have to listen to others' arguments and be ready to change their mind) but with an adversarial dimension (their goal as argument producers is to convince).…
Descriptors: Persuasive Discourse, Logical Thinking, Theories, Group Discussion
Resnick, Ilyse; Davatzes, Alexandra; Newcombe, Nora S.; Shipley, Thomas F. – Educational Psychology Review, 2017
Many scientific theories and discoveries involve reasoning about extreme scales, removed from human experience, such as time in geology and size in nanoscience. Thus, understanding scale is central to science, technology, engineering, and mathematics. Unfortunately, novices have trouble understanding and comparing sizes of unfamiliar large and…
Descriptors: Thinking Skills, STEM Education, Teaching Methods, Barriers
He, Kekang – Lecture Notes in Educational Technology, 2017
This book examines research on creative thinking, both current and historical. It explores two dimensions of human thought (time and space) and two modes of thinking (conscious and unconscious) as well as both left and right brain functions and artistic and scientific creative activities. The book proposes a "Double Circulation" model of…
Descriptors: Creative Thinking, Cognitive Processes, Brain Hemisphere Functions, Models
Resnick, Ilyse; Davatzes, Alexandra; Newcombe, Nora S.; Shipley, Thomas F. – Grantee Submission, 2017
Understanding and reasoning about phenomena at scales outside human perception (for example, geologic time) is critical across science, technology, engineering, and mathematics. Thus, devising strong methods to support acquisition of reasoning at such scales is an important goal in science, technology, engineering, and mathematics education. In…
Descriptors: Teaching Methods, STEM Education, Logical Thinking, Time
Dini, Vesal – ProQuest LLC, 2017
Classical mechanics challenges students to use their intuitions and experiences as a basis for understanding, in effect to approach learning as "a refinement of everyday thinking'' (Einstein, 1936). Moving on to quantum mechanics (QM), students, like physicists, need to adjust this approach, in particular with respect to the roles that…
Descriptors: Quantum Mechanics, Science Instruction, Physics, College Students
Rolin-Ianziti, Jeanne Claire; Ord, Carl – Canadian Modern Language Review, 2019
This study expands on previous research in concept-based instruction (CBI) by investigating the use of the grammatical concept of aspect as a tool to mediate decision making during tasks. Specifically, this article reports the findings of a longitudinal case study that examines one student's explanations for his choice of French past tense…
Descriptors: College Students, Advanced Students, Concept Formation, Teaching Methods
Kim, Yoonjeon; Albeiz, Tahany; Aburizaizah, Saeed; Bridges, Margaret; Fuller, Bruce; Qutub, Manal – Comparative Education Review, 2019
Pressures build in Middle Eastern and Arabic-speaking societies to diversify economies and democratize social relations. Educators and scholars, contributing to these shifts, have experimented with classroom reforms that aim to advance higher-order thinking skills and the social agility of students. This article reviews 52 empirical studies of…
Descriptors: Educational Change, Semitic Languages, Thinking Skills, Teaching Methods

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