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McGough, Julie V.; Nyberg, Lisa M. – NSTA Press, 2017
Children want to explore, dig, build, play, and wonder. To do this they need to touch, feel, see, observe, listen, manipulate, plan, and create. How does a teacher build and maintain a learning environment that will help students investigate meaningful questions? How does a teacher plan and manage ongoing investigations? How does a teacher use…
Descriptors: Discovery Learning, Investigations, Teaching Methods, Educational Environment
Amanda Grenell – ProQuest LLC, 2020
Executive function (EF) predicts children's academic achievement; however, less is known about the relation between EF and the actual learning process. Furthermore, more research is needed to better understand how different aspects of the learning environment interact with EF to influence learning. The current dissertation includes two studies to…
Descriptors: Preschool Children, Preschool Curriculum, Preschool Education, Preschool Teachers
Debs, Luciana; Miller, Kurtis D.; Ashby, Iryna; Exter, Marisa – Research in Science & Technological Education, 2019
Background: A growing number of educators have started exploring student-centered approaches to improve students' learning and satisfaction with courses and programs. While prior research shows a positive impact of such strategies on student learning, further exploration of the perceptions of traditional, lecture-based and other more inquiry-based…
Descriptors: Student Attitudes, Teaching Methods, Educational Innovation, Conventional Instruction
Stephen J. Smith – Journal of Global Education and Research, 2017
This paper investigates and analyses the features of a non-mainstream pedagogy, educational context and learning environment by presenting a counter-model which contrasts with the currently dominant educational project, an emergent global educational movement known as the Slow Education Movement. It demonstrates how the associated principles and…
Descriptors: Community Schools, Educational Environment, Context Effect, Educational Philosophy
Noss, Richard; Poulovassilis, Alexandra; Geraniou, Eirini; Gutierrez-Santos, Sergio; Hoyles, Celia; Kahn, Ken; Magoulas, George D.; Mavrikis, Manolis – Computers & Education, 2012
This paper charts the design and application of a system to support 11-14 year old students' learning of algebraic generalisation, presenting students with the means to develop their understanding of the meaning of generality, see its power for mathematics and develop algebraic ways of thinking. We focus squarely on design, while taking account of…
Descriptors: Discovery Learning, Algebra, Cognitive Processes, Design
Kalyuga, Slava – Technology, Instruction, Cognition and Learning, 2012
Although exploratory (inquiry-based, discovery, problem-based) learning environments have been effective for certain categories of learners and instructional situations, they could also be very cognitively demanding, especially for novice learners. Such forms of instruction may generate a heavy working memory load caused by intensive unguided…
Descriptors: Cognitive Processes, Difficulty Level, Knowledge Level, Instructional Effectiveness
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
Struyven, Katrien; Dochy, Filip; Janssens, Steven – European Journal of Teacher Education, 2010
This study investigates the effects of teaching and learning environments on student teachers' approaches to teaching and compares a lecture-based setting to a student-activating teaching environment, in which self-discovery learning by means of authentic tasks is central. Data collection (N = 852) was obtained by a pre-test/post-test design…
Descriptors: Discovery Learning, Lecture Method, Child Development, Teaching Methods
McLoughlin, M. Padraig M. M. – Online Submission, 2009
The author of this paper posits that inquiry-based learning (IBL) enacted via a modified Moore method (MMM) is a content-driven pedagogy; as such it is content-centred not instructor-centred or student-centred. The MMM is a philosophy of education where student must master material by doing; not simply discussing, reading, or seeing it and that…
Descriptors: Mathematics Education, Inquiry, Active Learning, Educational Change
Ting, Choo-Yee; Phon-Amnuaisuk, Somnuk; Chong, Yen-Kuan – Educational Technology & Society, 2008
This article aims at discussing how Dynamic Decision Network (DDN) can be employed to tackle the challenges in modeling temporally variable scientific inquiry skills and provision of adaptive pedagogical interventions in INQPRO, a scientific inquiry exploratory learning environment for learning O'level Physics. We begin with an overview of INQPRO…
Descriptors: Discovery Learning, Educational Environment, Science Instruction, Inquiry
Veermans, Koen; van Joolingen, Wouter; de Jong, Ton – International Journal of Science Education, 2006
This article describes a study into the role of heuristic support in facilitating discovery learning through simulation-based learning. The study compares the use of two such learning environments in the physics domain of collisions. In one learning environment (implicit heuristics) heuristics are only used to provide the learner with guidance…
Descriptors: Pretests Posttests, Physics, Heuristics, Educational Environment
Rick, Jochen; Lamberty, K. K. – Interactive Learning Environments, 2005
This article introduces "medium-based" design -- an approach to creating "exploratory learning environments" using the method of "extending a medium". First, the characteristics of exploratory learning environments and medium-based design are described and grounded in related work. Particular attention is given to "extending a medium" --…
Descriptors: Discovery Learning, Educational Environment, Teaching Methods, Educational Media
Kuhn, Markus; Hoppe, Ulrich; Lingnau, Andreas; Wichmann, Astrid – Innovations in Education and Teaching International, 2006
Discovery learning in mathematics in the domain of probability based on hands-on experiments is normally limited because of the difficulty in providing sufficient materials and data volume in terms of repetitions of the experiments. Our cooperative, computational modelling and simulation environment engages students and teachers in composing and…
Descriptors: Probability, Discovery Learning, Secondary School Students, Foreign Countries
Estvan, Frank J. – Phi Delta Kappan, 1969
Descriptors: Creative Development, Discovery Learning, Early Childhood Education, Educational Environment
Trotter, Andrew – Executive Educator, 1995
Constructivism, which holds that knowledge is created out of each individual's own experience, is recapturing researchers' attention. To constructivists, teachers are not omniscient oracles, but nutritionists providing an environment for children to grow their own knowledge. Students might learn division by planning a field trip instead of…
Descriptors: Cooperative Learning, Discovery Learning, Division, Educational Environment
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