Results for ' teaching metacognition'

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  1. Teaching for conceptual change: Using status as a metacognitive tool.Michael E. Beeth - 1998 - Science Education 82 (3):343-356.
  2. Metacognitive aspects of students' reflective discourse: Implications for intentional conceptual change teaching and learning.M. G. Hennessey - 2003 - In Gale M. Sinatra & Paul R. Pintrich (eds.), Intentional Conceptual Change. L. Erlbaum. pp. 103--132.
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  3.  26
    What can metacognition teach us about the evolution of communication?Joëlle Proust - 2023 - Evolutionary Linguistic Theory 5 (1):1-10.
    Procedural metacognition is the set of affect-based mechanisms allowing agents to regulate cognitive actions like perceptual discrimination, memory retrieval or problem solving. This article proposes that procedural metacognition has had a major role in the evolution of communication. A plausible hypothesis is that, under pressure for maximizing signalling efficiency, the metacognitive abilities used by nonhumans to regulate their perception and their memory have been re-used to regulate their communication. On this view, detecting one’s production errors in signalling, or (...)
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  4.  10
    Promoting Metacognition of Reading Strategies in a Higher Education Context in Pakistan.Bushra Khurram - 2022 - Journal of Social Sciences and Humanities 61 (2):35-47.
    _To develop reading skills of students, teachers have been advised to provide metacognitive reading strategy instruction by researchers. However, previous research has provided limited understanding of how teachers could foster metacognition of reading strategies in a ‘real’ classroom setting. Moreover, previous research pre-supposed an a priori list of teaching practices in the lessons and did not take into account the needs of the students and the context during metacognitive reading strategy instruction. Studies facilitating metacognitive reading strategy instruction in (...)
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  5. Philosophy Has Consequences! Developing Metacognition and Active Learning in the Ethics Classroom.Patrick Stokes - 2012 - Teaching Philosophy 35 (2):143-169.
    The importance of enchancing metacognition and encouraging active learning in philosophy teaching has been increasingly recognised in recent years. Yet traditional teaching methods have not always centralised helping students to become reflectively and critically aware of the quality and consistency of their own thinking. This is particularly relevant when teaching moral philosophy, where apparently inconsistent intuitions and responses are common. In this paper I discuss the theoretical basis of the relevance of metacognition and active learning (...)
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  6.  25
    The Teaching Instinct.Cecilia I. Calero, A. P. Goldin & M. Sigman - 2018 - Review of Philosophy and Psychology 9 (4):819-830.
    Teaching allows human culture to exist and to develop. Despite its significance, it has not been studied in depth by the cognitive neurosciences. Here we propose two hypotheses to boost the claim that teaching is a human instinct, and to expand our understanding of how teaching occurs as a dynamic bi-directional relation within the teacher-learner dyad. First, we explore how children naturally use ostensive communication when teaching; allowing them to be set in the emitter side of (...)
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  7.  49
    Teaching for Argumentative Thought.Shelagh Crooks - 2009 - Teaching Philosophy 32 (3):247-261.
    The conception of thought as a kind of argumentative dialogue has been influential in curricula designed to promote the development of thinking skills. Educators have sought to “teach” this kind of thinking by providing their students with opportunities to participate in argumentative exchange. This practice is based on the belief that thinking processes will mirror or mimic the interpersonal exchanges in which the thinker engages. In this article, another approach to teaching argumentative thought is developed. It is argued that (...)
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  8. Rethinking Thinking About Thinking: Against a Pedagogical Imperative to Cultivate Metacognitive Skills.Lauren R. Alpert - 2021 - Dissertation, City College of New York (Cuny)
    In summaries of “best practices” for pedagogy, one typically encounters enthusiastic advocacy for metacognition. Some researchers assert that the body of evidence supplied by decades of education studies indicates a clear pedagogical imperative: that if one wants their students to learn well, one must implement teaching practices that cultivate students’ metacognitive skills. -/- In this dissertation, I counter that education research does not impose such a mandate upon instructors. We lack sufficient and reliable evidence from studies that use (...)
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  9. Reading Philosophy with Background Knowledge and Metacognition.David W. Concepción - 2004 - Teaching Philosophy 27 (4):351-368.
    This paper argues that explicit reading instruction should be part of lower level undergraduate philosophy courses. Specifically, the paper makes the claim that it is necessary to provide the student with both the relevant background knowledge about a philosophical work and certain metacognitive skills (e.g. their ability to reflect on the learning process) that enrich the reading process and their ability to organize the content of a philosophical text with other aspects of knowledge. A “How to Read Philosophy” handout and (...)
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  10.  21
    Tasks, Texts and Contexts: A study of reading and metacognition in English and Irish primary classrooms.Kathy Hall, Julia Myers & Helen Bowman - 1999 - Educational Studies 25 (3):311-325.
    This paper is an adaptation of a paper presented at the British Educational Research Association Conference in Belfast, Northern Ireland, in August 1998. It reports on a study on reading pedagogy and metacognition in six classrooms in Leeds and six classrooms in Dublin. The evidence is based on 12 teacher interviews, 43 separate lesson observations and school/class, policy/lesson documents. The paper analyses the teachers' thinking and their classroom practices with reference to inter-related themes, tasks, texts and contexts, and it (...)
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  11.  52
    The Perception of Teaching, Learning Styles and Commitment to Learning and Their Influence on the Practice of Physical Activity and Eating Habits Related to the Mediterranean Diet in Physical Education Students.Carmen Fernandez-Ortega, Jeronimo González-Bernal, Sergio Gonzalez-Bernal, Ruben Trigueros, José M. Aguilar-Parra, Luis A. Minguez-Minguez, Ana I. Obregon & Raquel De La Fuente Anuncibay - 2022 - Frontiers in Psychology 13:927667.
    Childhood obesity, linked to a sedentary lifestyle and an unbalanced diet, is one of the main problems in today’s Western societies. In this sense, the aim of the study was to analyze students’ perceived satisfaction in physical education classes with learning strategies and engagement in learning and critical thinking as determinants of healthy lifestyle habits. The study involved 2,439 high school students aged 12–18 years (M= 14.66,SD= 1.78). Structural equation modeling was conducted to analyze the predictive relationships between the study (...)
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  12.  18
    Dental Education and Making A Commitment to The Teaching of Critical Thought.Linda Behar-Horenstein - 2014 - Inquiry: Critical Thinking Across the Disciplines 29 (3):27-38.
    Less than two decades ago, Halpern (1998) presented a convincing approach for teaching critical thought. However, nowhere in her article did she explain how to “get” faculty to teach to thinking skills to transfer across domains of knowledge using: “(a) dispositional or attitudinal component, (b) instruction in and practice with critical thought, (c) structure–training activities, and (d) a metacognitive component used to direct and assess thinking.” (p. 451) It is an open question as to what type of strategies will (...)
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  13. Wolf, Goat, and Cabbage: An Analysis of Students' Roles and Cognitive and Metacognitive Behaviors in Small Group Collaborative Problem-Solving.N. Kennedy - 2009 - Analytic Teaching and Philosophical Praxis 29 (1):39-52.
     
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  14.  8
    Preservice mathematics teachers’ perceptions of mathematical problem solving and its teaching: A case from China.Peijie Jiang, Yong Zhang, Yanyun Jiang & Bin Xiong - 2022 - Frontiers in Psychology 13.
    Preservice mathematics teachers’ accurate understanding of mathematical problem solving and its teaching is key to the performance of their professional quality. This study aims to investigate preservice mathematics teachers’ understanding of problem solving and its teaching and compares it with the understanding of in-service mathematics teachers. After surveying 326 in-service mathematics teachers, this study constructs a reliable and valid tool for the cognition of mathematical problem solving and its teaching and conducts a questionnaire survey on 26 preservice (...)
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    Perspectives on Rehabilitation Using Non-invasive Brain Stimulation Based on Second-Person Neuroscience of Teaching-Learning Interactions.Naoyuki Takeuchi - 2022 - Frontiers in Psychology 12.
    Recent advances in second-person neuroscience have allowed the underlying neural mechanisms involved in teaching-learning interactions to be better understood. Teaching is not merely a one-way transfer of information from teacher to student; it is a complex interaction that requires metacognitive and mentalizing skills to understand others’ intentions and integrate information regarding oneself and others. Physiotherapy involving therapists instructing patients on how to improve their motor skills is a clinical field in which teaching-learning interactions play a central role. (...)
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  16.  15
    Jumping to conclusions is differently associated with specific subtypes of delusional experiences: An exploratory study in first-episode psychosis.L. Diaz-Cutraro, H. Garcia-Mieres, R. Lopez-Carrilero, M. Ferrer, M. Verdaguer-Rodriguez, M. L. Barrigon, A. Barajas, E. Grasa, E. Pousa, E. Lorente, I. Ruiz-Delgado, F. Gonzalez-Higueras, J. Cid, C. Palma-Sevillano, S. Moritz, Group Spanish Metacognition & S. Ochoa - 2021 - Schizophrenia Research 228:357–359.
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  17. 26. skepticism.What Perception Teaches - 2003 - In Steven Luper (ed.), Essential Knowledge: Readings in Epistemology. Longman.
  18.  8
    capacity for, and exercise of, sound judgment. While I think this represents a big improvement over the other accounts I have discussed, it is not hard to see that it.Teaching Wisdom - forthcoming - Philosophical Studies Series.
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    Reflecting on the Past to Shape the Future.Diane W. Birckbichler, Robert M. Terry, James J. Davis & American Council on the Teaching of Foreign Languages - 2000 - National Textbook Company.
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  20. The elephant in the room: What matters cognitively in cumulative technological culture.François Osiurak & Emanuelle Reynaud - 2020 - Behavioral and Brain Sciences 43:e156.
    Cumulative technological culture (CTC) refers to the increase in the efficiency and complexity of tools and techniques in human populations over generations. A fascinating question is to understand the cognitive origins of this phenomenon. Because CTC is definitely a social phenomenon, most accounts have suggested a series of cognitive mechanisms oriented toward the social dimension (e.g., teaching, imitation, theory of mind, and metacognition), thereby minimizing the technical dimension and the potential influence of non-social, cognitive skills. What if we (...)
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  21. Critical Thinking and Cognitive Bias.Jeffrey Maynes - 2015 - Informal Logic 35 (2):183-203.
    Teaching critical thinking skill is a central pedagogical aim in many courses. These skills, it is hoped, will be both portable and durable. Yet, both of these virtues are challenged by pervasive and potent cognitive biases, such as motivated reasoning, false consensus bias and hindsight bias. In this paper, I argue that a focus on the development of metacognitive skill shows promise as a means to inculcate debiasing habits in students. Such habits will help students become more critical reasoners. (...)
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  22.  19
    Primary students’ scientific reasoning and discourse during cooperative inquiry-based science activities.Robyn M. Gillies, Kim Nichols, Gilbert Burgh & Michele Haynes - 2013 - International Journal of Educational Research 63:127–140.
    Teaching children to ask and answer questions is critically important if they are to learn to talk and reason effectively together, particularly during inquiry-based science where they are required to investigate topics, consider alternative propositions and hypotheses, and problem-solve together to propose answers, explanations, and prediction to problems at hand. This study involved 108 students (53 boys and 55 girls) from seven, Year 7 teachers’ classrooms in five primary schools in Brisbane, Australia. Teachers were randomly allocated by school to (...)
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  23.  91
    Thinking about Critical Thinking.Jeffrey Maynes - 2013 - Teaching Philosophy 36 (4):337-351.
    In this paper I develop a theoretical framework for instruction in Critical Thinking courses which integrates informal logic with both psycho­logical work on error tendencies in human reasoning and the intellectual virtues. I argue that matters of cogency, which concern the content of one’s arguments, should be distinguished from matters of reasoning, which concern the actual inferences people draw. Informal logic and the intellectual virtues supply the normative standards for each of these dimensions of critical think­ing, and the fallacies and (...)
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  24.  42
    Steering into the Skid: On the Norms of Critical Thinking.Jeffrey Maynes - 2017 - Informal Logic 37 (2):114-128.
    Cognitive bias presents as a pressing challenge to critical thinking education. While many have focused on how to eliminate or mitigate cognitive bias, others have argued that these biases are better understood as result from adaptive reasoning heuristics which are, in the right conditions, rational modes of reasoning about the world. This approach presents a new challenge to critical thinking education: if these heuristics are rational under the right conditions, does teaching critical thinking undermine student abilities to reason effectively (...)
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  25.  35
    Why Take Notes?Julie Loveland Swanstrom - 2020 - Teaching Philosophy 43 (3):281-302.
    For disciplines depending upon precise definitions and distinctions, students’ notes provide an avenue for student engagement with skill and content. Activities enliven the classroom, and those discussed here can also help students develop and exercise critical thinking skills through note-taking. Lecturing and experiential learning happen hand-in-hand when the instructor uses teaching about notes and note-taking as a method for critical engagement with class content. In this paper, I integrate research on the cognitive function of student note-taking with research on (...)
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  26.  46
    Review of The Palgrave Handbook of Critical Thinking in Higher Education Part V “Critical Thinking and the Cognitive Sciences”. [REVIEW]David Wright - 2015 - Inquiry: Critical Thinking Across the Disciplines 30 (2):54-62.
    This review essay discusses three articles from the Palgrave Handbook of Critical Thinking in Higher Education concerned with outlining the connection between cognitive science and critical thinking. All of the authors explain how recent findings in cognitive science, such as research on heuristics and cognitive biases might be incorporated into the critical thinking curriculum. The authors also elaborate on how recent findings in metacognition can reshape critical thinking pedagogy. For instance, the essays articulate how critical thinking instructors would be (...)
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  27.  48
    Critical Thinking in the Literature Classroom, Part I: Making Critical Thinking Visible.Amanda Hiner - 2013 - Inquiry: Critical Thinking Across the Disciplines 28 (1):26-35.
    Literary analysis offers English instructors an ideal vehicle for modeling, practicing, and teaching critical thinking skills. Because literature students must master the skills of analysis, reasoning, evaluation, and argumentation, they would benefit from deliberate and explicit instruction in the concepts and practices of critical thinking in the classroom. Part I of this paper describes strategies to incorporate explicit instruction in the elements of reasoning and the standards of critical thinking described by critical thinking experts Richard Paul, Linda Elder, and (...)
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  28.  37
    Critical Thinking in the Literature Classroom, Part I: Making Critical Thinking Visible.Amanda Hiner - 2013 - Inquiry: Critical Thinking Across the Disciplines 28 (1):26-35.
    Literary analysis offers English instructors an ideal vehicle for modeling, practicing, and teaching critical thinking skills. Because literature students must master the skills of analysis, reasoning, evaluation, and argumentation, they would benefit from deliberate and explicit instruction in the concepts and practices of critical thinking in the classroom. Part I of this paper describes strategies to incorporate explicit instruction in the elements of reasoning and the standards of critical thinking described by critical thinking experts Richard Paul, Linda Elder, and (...)
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  29.  35
    Epistemology for interdisciplinary research – shifting philosophical paradigms of science.Sophie Baalen & Mieke Boon - 2018 - European Journal for Philosophy of Science 9 (1):1-28.
    In science policy, it is generally acknowledged that science-based problem-solving requires interdisciplinary research. For example, policy makers invest in funding programs such as Horizon 2020 that aim to stimulate interdisciplinary research. Yet the epistemological processes that lead to effective interdisciplinary research are poorly understood. This article aims at an epistemology for interdisciplinary research, in particular, IDR for solving ‘real-world’ problems. Focus is on the question why researchers experience cognitive and epistemic difficulties in conducting IDR. Based on a study of educational (...)
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  30.  44
    Internalizing rules.Spencer Paulson - forthcoming - Philosophy and Phenomenological Research.
    The aim of this paper is to give an account of what it is to internalize a rule. I claim that internalization is the process of redistributing the burden of instruction from the teacher to the student. The process is complete when instruction is no longer needed, and the rule has reshaped perceptual classification of the circumstances in which it applies. Teaching a rule is the initiation of this process. We internalize rules by simulating instruction coming from someone else. (...)
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  31. Argumentation in School Science: Breaking the Tradition of Authoritative Exposition Through a Pedagogy that Promotes Discussion and Reasoning. [REVIEW]Shirley Simon & Katherine Richardson - 2009 - Argumentation 23 (4):469-493.
    The value of argumentation in science education has become internationally recognised and has been the subject of many research studies in recent years. Successful introduction of argumentation activities in learning contexts involves extending teaching goals beyond the understanding of facts and concepts, to include an emphasis on cognitive and metacognitive processes, epistemic criteria and reasoning. The authors focus on the difficulties inherent in shifting a tradition of teaching from one dominated by authoritative exposition to one that is more (...)
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  32.  73
    Epistemology for interdisciplinary research – shifting philosophical paradigms of science.Mieke Boon & Sophie Van Baalen - 2018 - European Journal for Philosophy of Science 9 (1):16.
    In science policy, it is generally acknowledged that science-based problem-solving requires interdisciplinary research. For example, policy makers invest in funding programs such as Horizon 2020 that aim to stimulate interdisciplinary research. Yet the epistemological processes that lead to effective interdisciplinary research are poorly understood. This article aims at an epistemology for interdisciplinary research, in particular, IDR for solving ‘real-world’ problems. Focus is on the question why researchers experience cognitive and epistemic difficulties in conducting IDR. Based on a study of educational (...)
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  33. A Course in Metaphilosophy for Undergraduates.Renée Smith - 2017 - Teaching Philosophy 40 (1):57-85.
    This paper describes an undergraduate course in metaphilosophy for philosophy majors and argues that there are four potential benefits to students; namely that doing metaphilosophy (1) allows students to draw their own conclusions about what philosophy is, (2) develops students’ metacognitive skills to promote learning, (3) establishes students as members of the philosophical community, and (4) disposes students to live lives that reflect their philosophical education. It describes issues of transparency of course design and the particulars of the course, including (...)
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  34.  7
    A l'école du doute: apprendre à penser juste en découvrant pourquoi l'on pense faux.Marc Romainville - 2023 - Paris: PUF.
    S'appuyant sur l'étude des spécificités du monde numérique et des mécanismes cognitifs, l'auteur propose une méthode originale de formation à l'esprit critique, basée sur la métacognition. Il présente des exemples concrets de pédagogie directement applicables en milieu scolaire.
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  35. Mnemicity - A cognitive gadget?Johannes B. Mahr, Penny van Bergen, John Sutton, Daniel L. Schacter & Cecilia Heyes - 2023 - Perspectives on Psychological Science 1 (1).
    Episodic representations can be entertained either as “remembered” or “imagined”—as outcomes of experience or as simulations of such experience. Here, we argue that this feature is the product of a dedicated cognitive function: the metacognitive capacity to determine the mnemicity of mental event simulations. We argue that mnemicity attribution should be distinguished from other metacognitive operations (such as reality monitoring) and propose that this attribution is a “cognitive gadget”—a distinctively human ability made possible by cultural learning. Cultural learning is a (...)
     
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  36.  24
    Argumentation in School Science: Breaking the Tradition of Authoritative Exposition Through a Pedagogy that Promotes Discussion and Reasoning.Shirley Simon Katherine Richardson - 2009 - Argumentation 23 (4):469-493.
    The value of argumentation in science education has become internationally recognised and has been the subject of many research studies in recent years. Successful introduction of argumentation activities in learning contexts involves extending teaching goals beyond the understanding of facts and concepts, to include an emphasis on cognitive and metacognitive processes, epistemic criteria and reasoning. The authors focus on the difficulties inherent in shifting a tradition of teaching from one dominated by authoritative exposition to one that is more (...)
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  37.  18
    Interpretation of Scientific or Mathematical Concepts: Cognitive Issues and Instructional Implications.Frederick Reif - 1987 - Cognitive Science 11 (4):395-416.
    Scientific and mathematical concepts are significantly different from everyday concepts and are notoriously difficult to learn. It is shown that particular instances of such concepts can be identified or generated by different possible modes of concept interpretation. Some of these modes use formally explicit knowledge and thought processes; others rely on less formal case‐based knowledge and more automatic recognition processes. The various modes differ in attainable precision, likely errors, and ease of use. A combination of such modes can be used (...)
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  38.  4
    Draw me a brain: The use of drawing as a tool to examine children's developing knowledge about the “black box”.Claire Brechet, Nathalie Blanc, Arnaud Mortier & Sandrine Rossi - 2022 - Frontiers in Psychology 13.
    Recent studies in neuroeducation highlight the benefits of teaching children about how the brain works. However, very little is known about children's naive conceptions about the brain. The current study examined these representations, by asking 6–10 year-old children and adults to draw a brain and the inside of a belly as a control drawing. The drawings were scored using a content analysis and a list of graphic indicators was derived. First, all the graphic indicators used in the brain drawings (...)
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  39.  17
    The Semiotics of Learning New Words.Winfried Nöth - 2014 - Journal of Philosophy of Education 48 (3):446-456.
    In several of his papers, Charles S. Peirce illustrates processes of interpreting and understanding signs by examples from second language vocabulary teaching and learning. The insights conveyed by means of these little pedagogical scenarios are not meant as contributions to the psychology of second language learning, but they aim at elucidating fundamental semiotic implications of knowledge acquisition in general. Peirce's semiotic premise that a well-understood sign is one that represents an object and creates an interpretant is essential to the (...)
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  40.  31
    HyLighter and Interactive Annotation.David G. Lebow, Dale W. Liek & Hope J. Hartman - 2003 - Inquiry: Critical Thinking Across the Disciplines 23 (1-2):69-79.
    The ability to gain knowledge from text in widely different subject matter areas is key to academic success and lifelong leaming. The process of attaining critical understanding of ideas in text requires a robust repertoire of leaming or study strategies, metacognitive knowledge for regulating their use, and willingness to apply them. Although much is known about the basic design of leaming environments to develop higher-order thinking skills and motivation to learn, educators have, in general, not changed their practices to reflect (...)
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  41.  10
    Applying the CACAO Change Model to Promote Systemic Transformation in STEM.Anthony Marker, Patricia Pyke, Sarah Ritter, Karen Viskupic, Amy Moll, R. Eric Landrum, Tony Roark & Susan Shadle - unknown
    Since its inception in the Middle Ages, the university classroom can be characterized by students gathered around a sage who imparts his or her knowledge. However, the effective classroom of today looks vastly different: First-year engineering students not only learn basic engineering principles, but are also guided to consider their own inner values and motivations as they design and build adaptive devices for people with disabilities; students in a large chemistry lecture work animatedly together in small groups on inquiry-based activities (...)
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    Effects of factors of self-regulation vs. factors of external regulation of learning in self-regulated study.Mónica Pachón-Basallo, Jesús de la Fuente, María C. González-Torres, José Manuel Martínez-Vicente, Francisco J. Peralta-Sánchez & Manuel M. Vera-Martínez - 2022 - Frontiers in Psychology 13.
    Since the mid-20th century, the study of Self-Regulated Learning has aimed to identify the distinctive characteristics that enable individuals to acquire new knowledge and skills under their control. The theory of Internal Self-Regulation vs. External-Regulation in Learning has postulated that a large number of self-regulatory variables are mediated by regulated/non-regulated or dysregulated features of the context. After signing their informed consent, a total of 616 university students completed validated instruments of SRL vs. ERL, behavioral regulation, regulatory teaching, and metacognitive (...)
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  43.  53
    Philosophical Inquiry and Critical Thinking in Primary and Secondary Science Education.Tim Sprod - 2014 - In Michael R. Matthews (ed.), International Handbook of Research in History, Philosophy and Science Teaching. Springer. pp. 1531-1564.
    If Lipman’s claim that philosophy is the discipline whose central concern is thinking is true, then any attempt to improve students’ scientific critical thinking ought to have a philosophical edge. This chapter explores that position. -/- The first section addresses the extent to which critical thinking is general – applicable to all disciplines – or contextually bound, explores some competing accounts of what critical thinking actually is and considers the extent to which scientific thinking builds on, or is quite different (...)
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  44.  16
    Extensive knowledge integration strategies in pre-service teachers: the role of perceived instrumentality, motivation, and self-regulation.Jumi Lee & Jeannine E. Turner - 2017 - Educational Studies 44 (5):505-520.
    This study investigated contributions of pre-service teachers’ endogenous and exogenous instrumentalities, their intrinsic and extrinsic motivations, and their use of self-regulation strategies to explain the extent to which they used strategies to purposefully integrate their knowledge across courses. With a total of 254 pre-service teachers’ survey-responses, results of a hierarchical multiple regression analysis indicated that their endogenous instrumentality of their current coursework, their use of metacognitive strategies and their use of deeper cognitive learning strategies contributed to explaining their use of (...)
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    Psychological Influences on Philosophical Questions: Implications for Pedagogy.J. Alden Stout & Chris Weigel - 2015 - American Association of Philosophy Teachers Studies in Pedagogy 1:98-110.
    Discoveries in social psychology pose important questions for philosophical pedagogy. For example, social psychologists have identified several error-producing biases that are commonly impediments to critical thinking. Recent evidence suggests that the most effective way of improving students’ critical thinking is to address these biases explicitly and metacognitively. Biases that produce errors in thinking are not the only psychological features relevant to philosophical pedagogy. Additionally, experimental philosophers have applied the methods of social psychology to uncover various influences on philosophical intuitions. This (...)
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    Značajke učinkovitog stručnog usavršavanja učitelja prirodoslovne grupe predmetaThe characteristics of efficient professional teacher training in natural sciences subjects.Ana Mirosavljević & Branko Bognar - 2020 - Metodicki Ogledi 26 (2):147-177.
    Kako bismo utvrdili značajke učinkovitog stručnog usavršavanja učitelja prirodoslovne grupe predmeta, na temelju sustavnog pregleda literature izabrali smo i proveli analizu devet učinkovitih eksperimentalnih i kvazi eksperimentalnih istraživanja. Utvrdili smo kako bi stručno usavršavanje bilo dobro započeti inicijalnim radionicama koje je potrebno nastaviti kroz susrete zajednica učenja za vrijeme ostvarivanja promjena. Uz to je važno osigurati potporu i vođenje učitelja te nastavne materijale za učitelje i učenike. Stručno usavršavanje može biti učinkovito samo ako doprinese boljim učeničkim rezultatima, a to je (...)
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  47.  6
    Značajke učinkovitog stručnog usavršavanja učitelja prirodoslovne grupe predmeta: Sustavni pregled literature.Ana Mirosavljević & Branko Bognar - 2019 - Metodicki Ogledi 26 (2):147-177.
    In order to affirm the characteristics of efficient professional training of teachers in the natural sciences, on the basis of a systematic overview of the literature, we chose and implemented an analysis of nine efficient experimental and quasi-experimental research designs. We affirmed that professional training should begin with initial workshops, which should continue through meetings of learning cummunities during these changes. Additionally, it is important to ensure support and guidance for teachers, as well as teaching materials for teachers and (...)
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  48.  4
    Key practices for fostering engaged learning: a guide for faculty and staff.Jessie L. Moore - 2023 - Sterling, Virginia: Stylus Publishing, LLC.
    This book focuses on six key practices for engaged learning: acknowledging and building on students' prior knowledge and experiences; facilitating relationships; offering feedback; framing connections to broader contexts; fostering reflection and metacognition; and promoting integration and transfer of knowledge and skills.
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  49.  45
    Critical Thinking and Small Group Activities.Claude Gratton - 2010 - Informal Logic 30 (4).
    I mention the benefits, challenges, and costs of using small group activities to enhance our students’ learning of critical thinking skills in our courses, and then describe ten examples of these groups. Two of these examples are not commonly reported in the literature on small groups, so I describe them in greater detail to facilitate their use in our courses.
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  50. Metacognitive Development and Conceptual Change in Children.Joulia Smortchkova & Nicholas Shea - 2020 - Review of Philosophy and Psychology 11 (4):745-763.
    There has been little investigation to date of the way metacognition is involved in conceptual change. It has been recognised that analytic metacognition is important to the way older children acquire more sophisticated scientific and mathematical concepts at school. But there has been barely any examination of the role of metacognition in earlier stages of concept acquisition, at the ages that have been the major focus of the developmental psychology of concepts. The growing evidence that even young (...)
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