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Glaab, Sabine; Heyne, Thomas – Applied Environmental Education and Communication, 2020
A total of 268 primary school children (age 8.75 ± 0.65) spent one day at a wildlife park attending environmental education aiming at high cognitive achievement and motivation alongside maintained discipline. To accomplish this at an out-of-school learning setting, we compared our preferred 'guided learning at workstations' (G) combining the…
Descriptors: Wildlife, Outdoor Education, Environmental Education, Elementary School Students
Immordino-Yang, Mary Helen; Darling-Hammond, Linda; Krone, Christina – Aspen Institute, 2018
This research brief explores how emotions and relationships drive learning and are a fundamental part of how our brains develop. The authors explain how emotionally safe and cognitively stimulating environments contribute to brain development; how brain development that supports learning depends on social experiences; and how sensitive periods in…
Descriptors: Brain Hemisphere Functions, Learning Processes, Socialization, Developmental Stages
Hushman, Carolyn J.; Marley, Scott C. – Journal of Educational Research, 2015
The authors investigated whether the amount of instructional guidance affects science learning and self-efficacy. Sixty 9- and 10-year-old children were randomly assigned to one of the following three instructional conditions: (a) guided instruction consisting of examples and student-generated explanations, (b) direct instruction consisting of a…
Descriptors: Elementary School Students, Self Efficacy, Science Education, Science Instruction
Swann, Annette C. – Studies in Art Education: A Journal of Issues and Research in Art Education, 2008
This article examines how children's construction of relationships in exploring materials helps to explain the constructivist foundations of the Reggio Emilia approach. A quasi-naturalistic study of 12 preschool children, ages 3 and 4 years, individually exploring different kinds of collage papers reveals a range of constructivist categories…
Descriptors: Constructivism (Learning), Preschool Children, Reggio Emilia Approach, Art Education
Buell, Robert R. – Audiovisual Instr, 1970
Descriptors: Cognitive Development, Discovery Learning, Instructional Films, Learning Processes

Elkind, David – Educational Horizons, 1983
Stresses the development of complex cognitive processes during adolescence and sees the challenge of the curriculum in the question of greater match between the learner's cognitive level and the material to learned. (JOW)
Descriptors: Adolescents, Cognitive Development, Cognitive Processes, Discovery Learning

Penrose, William O. – Childhood Education, 1980
Contends that the teaching of mathematics permits expansion of the personality and furthers development of intellecutual independence. (Author/DB)
Descriptors: Children, Cognitive Development, Discovery Learning, Elementary Secondary Education

Cox, Maureen; Coulson, Alan – Education 3-13, 1979
The Plowden Report drew heavily on Piaget's theories of cognitive development, especially his concepts of activity and discovery learning and readiness. But Piaget's theory is not a pedagogical one and it has little to say about teaching content and methods. Recently, criticism of his theory has grown. (Author/SJL)
Descriptors: Child Development, Cognitive Development, Developmental Psychology, Developmental Stages

Van Passel, F. J. A. – ITL Review of Applied Linguistics, 1974
Shows the necessity of foreign language education for cognitive and attitudinal purposes as well as for utilitarian reasons. Foreign language learning/teaching can be of great educational value when it follows the thread of the logical and psychological steps in the creative/discovery procedure. A learning algorithm is mapped on page 61. See FL…
Descriptors: Algorithms, Cognitive Development, Discovery Learning, Educational Objectives
Bissell, Joan S. – 1971
This pamphlet summarizes the interim report of the Head Start Planned Variation Study although information from other sources is included. During the pilot phase (1969-1970) eight distinct approaches to preschool education were analyzed with regard to the nature and extent of implementation of early education models and program effects. The first…
Descriptors: Cognitive Development, Data Collection, Discovery Learning, Educational Philosophy
Freudenthal, Hans – 1991
This book represents a compilation of the views and ideas of the late Hans Freudenthal, representing his last major contribution to the field of mathematics education. Rather than a presentation of new views, Freudenthal selected and streamlined old ideas, many gathered from his lectures in China, and formed a review of questions and issues in…
Descriptors: Cognitive Development, Concept Formation, Discovery Learning, Elementary Secondary Education

Garnett, Patrick J.; And Others – Australian Science Teachers Journal, 1995
Reviews the objectives of laboratory work in chemistry education, current laboratory practice, and factors likely to impact on the nature of laboratory work in the future. Proposes that more investigation-style laboratory work be provided in order to foster the development of students' investigation skills. (Author/MKR)
Descriptors: Chemistry, Cognitive Development, College Science, Discovery Learning

Pattison, S. J. – Contemporary Education, 1975
Descriptors: Cognitive Development, Cognitive Processes, Concept Formation, Discovery Learning

Beisenherz, Paul C. – Science and Children, 1991
Discussed is the teaching method called the learning cycle and how it can be incorporated into science activities. Included are examples of how teachers and students can use the learning cycle to produce instructional materials. (KR)
Descriptors: Cognitive Development, Discovery Learning, Elementary Education, Elementary School Science

Hake, Richard R. – Physics Teacher, 1992
Describes Socratic Dialogue Inducing (SDI) laboratory methods and procedures developed to increase conceptual understanding in introductory physics laboratories. Gives an example of a typical beginning SDI lab manual section and a representative Socratic dialogue. Describes several examples of laboratory experiments developed for the SDI method.…
Descriptors: Cognitive Development, Discovery Learning, Discussion (Teaching Technique), Higher Education