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Shtulman, Andrew; Young, Andrew G. – Child Development Perspectives, 2023
What do cows drink? The correct answer is water, but many are tempted to say milk. The disposition to override an intuitive response (milk) with a more analytic response (water) is known as "cognitive reflection." Tests of cognitive reflection predict a wide range of skills and abilities in adults. In this article, we discuss the…
Descriptors: Child Development, Cognitive Development, Thinking Skills, Prediction
San Juan, Valerie; Astington, Janet Wilde – British Journal of Developmental Psychology, 2012
Recent advancements in the field of infant false-belief reasoning have brought into question whether performance on implicit and explicit measures of false belief is driven by the same level of representational understanding. The success of infants on implicit measures has also raised doubt over the role that language development plays in the…
Descriptors: Language Acquisition, Beliefs, Theory of Mind, Cognitive Development
Kravtsov, Genady G.; Kravtsova, Elena E. – International Journal of Early Years Education, 2011
The "Golden Key" programme is a preschool education programme that is constructed on the basis of Vygotskij's cultural-historical theory. One of the most important aspects of this theory is not just the unity of intellect and affect, but the fact that the relationship between these two changes during the course of development. In infants, affect…
Descriptors: Preschool Education, Physical Health, Spatial Ability, Logical Thinking
Wavering, Michael James – School Science and Mathematics, 2011
In his last book, "Toward a Logic of Meanings" (Piaget & Garcia, 1991), Jean Piaget describes how thought can be categorized into a form of propositional logic, a logic of meanings. The intent of this article is to offer this analysis by Piaget as a means to understand the language and teaching of science. Using binary propositions, conjunctions,…
Descriptors: Logical Thinking, Classrooms, Pedagogical Content Knowledge, Science Instruction
Brown, Simon – Acta Didactica Napocensia, 2009
Science requires imagination nourished by knowledge, experience and sustained critical thinking. Science teaching has the same requirements, but metacognition is even more important to a teacher than it is to a practitoner of science. Critical thinking is essential to both science and science teaching: in either domain, imagination relies on…
Descriptors: Science Education, Cognitive Development, Critical Thinking, Comprehension
Doumas, Leonidas A. A.; Hummel, John E.; Sandhofer, Catherine M. – Psychological Review, 2008
Relational thinking plays a central role in human cognition. However, it is not known how children and adults acquire relational concepts and come to represent them in a form that is useful for the purposes of relational thinking (i.e., as structures that can be dynamically bound to arguments). The authors present a theory of how a psychologically…
Descriptors: Computer Software, Learning Processes, Computer Simulation, Thinking Skills
Ozaki, Kyoko; Yamamoto, Naoko; Kamii, Constance – Young Children, 2008
Preschool teachers use the domino effect--standing dominos on end in rows and pushing one over--to examine how play contributes to children's acquisition of knowledge. Using diagrams, photos, and vignettes of children between the ages of 3 and 5 years, the authors demonstrate how children at different stages of development use physical knowledge…
Descriptors: Mathematics Education, Preschool Teachers, Developmental Stages, Cognitive Development

Buser, Karen P.; Reimer, Dauri – Teaching Exceptional Children, 1988
A program designed to teach cognitive strategies through logical problem-solving and developed for elementary learning disabled students is presented. For each problem set, the instructional procedure involves a discovery activity, discussion, conclusion, follow-up activities, and integration. Five samples of the program's problem sets (e.g.,…
Descriptors: Cognitive Development, Elementary Education, Learning Disabilities, Learning Strategies

Pea, Roy D. – Journal of Child Language, 1982
Investigates in an experimental setting the claim that young children have some knowledge of the rules of correspondence between language and reality which are central to propositional logic. (EKN)
Descriptors: Child Language, Cognitive Development, Language Acquisition, Language Processing

Wales, Charles E.; Nardi, Anne H. – American Journal of Pharmaceutical Education, 1988
The experience of the West Virginia University School of Pharmacy with a course in non-prescription drugs that emphasizes problem-solving through pattern recognition illustrates that when thinking skills are taught, students value, remember, and can use more of the concepts they study. (MSE)
Descriptors: Classroom Techniques, Cognitive Development, Cognitive Processes, Higher Education

Lipman, Matthew – Educational Leadership, 1984
Argues that the best way to cultivate children's reasoning is to make philosophy an essential part of the elementary school curriculum. Philosophy alone provides the logical criteria for distinguishing better thinking from poorer. The author's "Philosophy for Children" program is described. (TE)
Descriptors: Abstract Reasoning, Cognitive Development, Critical Thinking, Elementary Secondary Education

Melchior, Timothy M.; And Others – Educational Leadership, 1988
Describes the use of Edward de Bono's CoRT (Cognitive Research Trust) program in English classes during the past five years at Memorial Junior High School in Valley Stream, New York. CoRT tools were used to analyze literary characters and plot development and to generate and organize ideas for writing assignments. (TE)
Descriptors: Cognitive Development, Cognitive Processes, Critical Thinking, Educational Strategies

Derrico, Patricia J. – Educational Leadership, 1988
With Matthew Lipman's Philosophy for Children program, middle school students and their teachers in the Bethlehem (Pennsylvania) Area School District use dialectical reasoning strategies as they contemplate perennial questions. (Author/TE)
Descriptors: Cognitive Development, Cognitive Processes, Critical Thinking, Educational Strategies

Barbieri, Edmund L. – Educational Leadership, 1988
At Westover (Connecticut) Elementary Magnet School, a teacher training program called "Talents Unlimited" focuses on critical and creative thinking, invites children to become active learners, and enables teachers to function as facilitators of learning. (TE)
Descriptors: Cognitive Development, Cognitive Processes, Critical Thinking, Educational Strategies

Schlichter, Carol L.; And Others – Educational Leadership, 1988
"Talents Unlimited," a research-based model for teaching thinking at the elementary level, has proven to be an effective model for the secondary level as well at schools in New Mexico, Arkansas, and Alabama. The program emphasizes strategies that help teachers integrate practice in thinking skills with academic content. (TE)
Descriptors: Cognitive Development, Cognitive Processes, Critical Thinking, Educational Strategies