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Ambridge, Ben – First Language, 2020
In this response to commentators, I agree with those who suggested that the distinction between exemplar- and abstraction-based accounts is something of a false dichotomy and therefore move to an abstractions-made-of-exemplars account under which (a) we store all the exemplars that we hear (subject to attention, decay, interference, etc.) but (b)…
Descriptors: Language Acquisition, Syntax, Computational Linguistics, Language Research
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Messenger, Katherine; Hardy, Sophie M.; Coumel, Marion – First Language, 2020
The authors argue that Ambridge's radical exemplar account of language cannot clearly explain all syntactic priming evidence, such as inverse preference effects ("greater" priming for less frequent structures), and the contrast between short-lived lexical boost and long-lived abstract priming. Moreover, without recourse to a level of…
Descriptors: Language Acquisition, Syntax, Priming, Criticism
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Gifford, Julian D.; Finkelstein, Noah D. – Physical Review Physics Education Research, 2020
We present a framework designed to help categorize various sense making moves, allowing for greater specificity in describing and understanding student reasoning and also in the development of curriculum to support this reasoning. The framework disaggregates between the mechanisms of student reasoning (the cognitive "tool" that they are…
Descriptors: Mathematics Skills, Problem Solving, Physics, Thinking Skills
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Giselsson, Kristi – International Journal for the Scholarship of Teaching and Learning, 2020
Critical thinking is a core skill within tertiary education, traditionally relying on such principles as logic and truth. Relativistic pedagogical frameworks, such as critical literacy, however, have become increasingly widespread within all levels of education and call into question such principles. In order to ascertain whether critical thinking…
Descriptors: Critical Thinking, Critical Literacy, Student Evaluation, College Students
Guerrero, Tricia A.; Wiley, Jennifer – Grantee Submission, 2018
Learning from expository science texts is challenging. These studies explore whether difficulties can be attributed to poor memory or poor reasoning. To eliminate the need for memory during testing, some students took the tests with the texts available. To test for the effects of reasoning on performance, some students were prompted to engage in…
Descriptors: Reading Comprehension, Abstract Reasoning, Inferences, Undergraduate Students
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Fyfe, Emily R.; Nathan, Mitchell J. – Educational Review, 2019
To promote learning and transfer of abstract ideas, contemporary theories advocate that teachers and learners make explicit connections between concrete representations and the abstract ideas they are intended to represent. "Concreteness fading" is a theory of instruction that offers a solution for making these connections. As originally…
Descriptors: Transfer of Training, Learning Processes, Abstract Reasoning, Cognitive Development
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Zohar, Asnat R.; Levy, Sharona T. – Journal of Research in Science Teaching, 2019
This article concerns a lacuna in chemistry students' reasoning about chemical bonding. Although chemistry students are familiar with the charges that make up the atom--both positive and negative--they refer only to the attraction between unlike charges. Specifically, they ignore the repulsion between the positive nuclei. We named this disregard…
Descriptors: Chemistry, Science Instruction, Thinking Skills, Scientific Concepts
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AL-salahat, Mohammad Mousa Salem – International Journal of Education in Mathematics, Science and Technology, 2022
Geometry is one of the basic areas of school mathematics education, and it is important for elementary students. However, students with mathematics learning disabilities (MLD) struggle with geometry learning. Research has demonstrated that concrete-representational-abstract (CRA) teaching is an effective practice for students with learning…
Descriptors: Geometry, Mathematics Instruction, Students with Disabilities, Learning Disabilities
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Ait bentaleb, Khalid; Dachraoui, Saddik; Hassouni, Taoufik; Alibrahmi, El mehdi; Chakir, Elmahjoub; Belboukhari, Aimad – European Journal of Educational Research, 2022
We developed a Quantum Mechanics Conceptual Understanding Survey (QMCUS) in this study. The survey was conducted using a quantitative methodology. A multiple-choice survey of 35 questions was administered to 338 undergraduate students. Three experienced quantum mechanics instructors examined the validity of the survey. The reliability of our…
Descriptors: Scientific Concepts, Concept Formation, Physics, Undergraduate Students
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Thurn, Christian; Nussbaumer, Daniela; Schumacher, Ralph; Stern, Elsbeth – Journal of Intelligence, 2022
We explored the mediating role of prior knowledge on the relation between intelligence and learning proportional reasoning. What students gain from formal instruction may depend on their intelligence, as well as on prior encounters with proportional concepts. We investigated whether a basic curriculum unit on the concept of density promoted…
Descriptors: Prior Learning, Intelligence, Training, Logical Thinking
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Al-Ajmi, Batoul; Ambusaidi, Abdullah – Science Education International, 2022
This study aimed at identifying the level of scientific argumentation skills in chemistry subject among Omani Grade 11th students and the effects of their logical thinking skills and gender on this level. The study sample consisted of (400) male and female students selected purposely from one educational region in Oman. The study's instruments…
Descriptors: Science Instruction, Chemistry, Grade 11, High School Students
R. Tanner Oertli – ProQuest LLC, 2022
Socioscientific issues (SSI) such as COVID-19 and climate change often highlight the inequalities that structural racism creates. If we ever wish to equitably solve these issues, we require a population that has the scientific literacy and the sociopolitical consciousness to do so. Yet, the push for culturally relevant education has had little…
Descriptors: Preservice Teachers, Social Problems, Political Issues, Knowledge Level
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Julia Eckhard; Marc Rodemer; Sascha Bernholt; Nicole Graulich – Journal of Chemical Education, 2022
Supporting students in building well-grounded explanations plays a crucial role in scientific practice. Research in organic chemistry education on students' mechanistic explanations, however, has revealed various challenges. When solving mechanistic tasks, students experience difficulties when (I) deriving implicit properties from structural…
Descriptors: College Students, College Science, Technology Uses in Education, Video Technology
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Sbaraglia, Marco; Lodi, Michael; Martini, Simone – Informatics in Education, 2021
Introductory programming courses (CS1) are difficult for novices. Inspired by "Problem solving followed by instruction" and "Productive Failure" approaches, we define an original "necessity-driven" learning design. Students are put in an apparently well-known situation, but this time they miss an essential ingredient…
Descriptors: Programming, Introductory Courses, Computer Science Education, Programming Languages
Seah, Rebecca; Horne, Marj – Mathematics Education Research Group of Australasia, 2021
As a multifaceted concept, the learning of angle concepts takes years to achieve and is beset with challenges. This paper explores how the processes of constructing and validating a learning progression in geometric reasoning can be used to generate targeted teaching advice to support the learning of angle concept. Data from 1090 Year 4 to Year 10…
Descriptors: Geometry, Geometric Concepts, Learning Processes, Mathematics Instruction
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