Publication Date
In 2025 | 0 |
Since 2024 | 1 |
Since 2021 (last 5 years) | 4 |
Since 2016 (last 10 years) | 6 |
Since 2006 (last 20 years) | 16 |
Descriptor
Inquiry | 29 |
Observational Learning | 29 |
Teaching Methods | 12 |
Foreign Countries | 7 |
Learning Processes | 7 |
Questioning Techniques | 6 |
Active Learning | 5 |
Learning Strategies | 5 |
Discovery Learning | 4 |
Learning Activities | 4 |
Problem Solving | 4 |
More ▼ |
Source
Author
Eysink, Tessa H. S. | 2 |
Michael Foster | 2 |
de Jong, Ton | 2 |
Berthold, Kirsten | 1 |
Burke, M. | 1 |
Callanan, Maureen A. | 1 |
Carritt, Danielle | 1 |
Chang, Hsin-Yi | 1 |
Dealey, Heather | 1 |
Denney, Douglas R. | 1 |
Eick, Charles J. | 1 |
More ▼ |
Publication Type
Education Level
Audience
Teachers | 2 |
Practitioners | 1 |
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
Yunus Emre Avcu; Yavuz Yaman – Journal of Inquiry Based Activities, 2024
A differentiated science activity was created for gifted students. The focus is on Sustainable Development Goal 15 (SDG-15) for life on land, enhancing engagement, self-regulated learning skills, and scientific creativity in gifted students. The activity spanned eight lesson hours, with tasks encouraging observation, inquiry, and creative…
Descriptors: Gifted, Individualized Instruction, Science Instruction, Computer Simulation
Michael Foster – ProQuest LLC, 2023
"Vicarious learning" research is a burgeoning area of inquiry, which examines the learning of students who observe and are engaged with video- or audio-taped presentations of other people engaged in learning (Chi et al., 2008). In such studies, the students or "vicarious learners" (VLs) are positioned as indirect participants…
Descriptors: Video Technology, Problem Solving, Teaching Methods, Thinking Skills
Michael Foster – ProQuest LLC, 2023
"Vicarious learning" research is a burgeoning area of inquiry, which examines the learning of students who observe and are engaged with video- or audio-taped presentations of other people engaged in learning (Chi et al., 2008). In such studies, the students or "vicarious learners" (VLs) are positioned as indirect participants…
Descriptors: Video Technology, Problem Solving, Teaching Methods, Thinking Skills
McNerney, Karen; Carritt, Danielle; Dealey, Heather; Ladbury, Gemma – Early Child Development and Care, 2020
This paper builds on previous research which outlined the development of a framework of scientific enquiry within a play-based curriculum for early childhood. For this paper, in order to help to mediate children's observation and exploration as part of their play, we propose that practitioners need to have well-developed skills to ask open-ended…
Descriptors: Inquiry, Scientific Literacy, Questioning Techniques, Young Children
Mary Anne Peabody; Susan Noyes; Mary Anderson – Journal of Occupational Therapy Education, 2022
Reflective practice is considered a highly valued graduate attribute in the field of occupational therapy. Occupational therapy educators influence and shape how students develop into reflective practitioners. Reflective practice requires a set of complex thinking skills that are typically focused on personal experiences and can be broken down…
Descriptors: Occupational Therapy, Graduate Students, College Faculty, Reflection
Gkouskou, Eirini; Tunnicliffe, Sue Dale – Science Education International, 2017
?he nature of scientific research goes beyond the learning of concepts and basic manipulation to the key factors of engaging students in identifying relevant evidence and reflecting on its interpretation. It is argued that young children have the ability to acquire viable, realistic concepts of the living world when involved in relevant activities…
Descriptors: Observational Learning, Scientific Research, Museums, Pretests Posttests
Hougham, R. Justin; Eitel, Karla C. Bradley; Miller, Brant G. – Journal of Geoscience Education, 2015
In this article we explore how reconceptualizing the role of technology in place-based education (PBE) enhances place responsive pedagogies through technology. Combining the strengths of adventure learning (AL) and PBE, Adventure Learning @ (AL@) advances both place responsive education and online learning in science education. This is needed, as…
Descriptors: STEM Education, Place Based Education, Technology Uses in Education, Science Education
Chang, Hsin-Yi; Linn, Marcia C. – Journal of Research in Science Teaching, 2013
Powerful online visualizations can make unobservable scientific phenomena visible and improve student understanding. Instead, they often confuse or mislead students. To clarify the impact of molecular visualizations for middle school students we explored three design variations implemented in a Web-based Inquiry Science Environment (WISE) unit on…
Descriptors: Scaffolding (Teaching Technique), Science Education, Visualization, Middle School Students
Eysink, Tessa H. S.; de Jong, Ton – Journal of the Learning Sciences, 2012
This study compared the affordances of 4 multimedia learning environments for specific learning processes. The environments covered the same domain but used different instructional approaches: (a) hypermedia learning, (b) observational learning, (c) self-explanation-based learning, and (d) inquiry learning. Although they all promote an active…
Descriptors: Multimedia Instruction, Hypermedia, Educational Environment, Inquiry
Vaughn, Meredith Houle; Gatling, Anne – Science and Children, 2013
English language learners (ELLs) bring a wealth of knowledge to science classrooms, yet often that knowledge is untapped by traditional instruction and assessment. As classrooms become increasingly diverse, it is critical to recognize the depth of understandings ELLs bring to classrooms to explain the scientific world around them. English language…
Descriptors: English Language Learners, Inquiry, Language Acquisition, Plants (Botany)
Kurz, Terri L.; Kokic, Ivana Batarelo – Journal of Research in Education, 2011
Family math night can easily be implemented into mathematics methodology courses providing an opportunity for field-based learning. Preservice teachers were asked to develop and implement an inquiry-based activity at a family math night event held at a local school with personnel, elementary children and their parents in attendance. This action…
Descriptors: Preservice Teachers, Observational Learning, Action Research, Field Experience Programs
Jarvela, Sanna; Veermans, Marjaana; Leinonen, Piritta – Social Psychology of Education: An International Journal, 2008
The aim of this article is to describe and analyze how computer supported inquiry learning effects two secondary school students' engagement in a literacy learning project. With comparative analysis of various sources of data we aim to understand what engagement is, how and why it changes over time and how changes in engagement are reflected in…
Descriptors: Content Analysis, Comparative Analysis, Literacy, Secondary School Students
Learner Performance in Multimedia Learning Arrangements: An Analysis across Instructional Approaches
Eysink, Tessa H. S.; de Jong, Ton; Berthold, Kirsten; Kolloffel, Bas; Opfermann, Maria; Wouters, Pieter – American Educational Research Journal, 2009
In this study, the authors compared four multimedia learning arrangements differing in instructional approach on effectiveness and efficiency for learning: (a) hypermedia learning, (b) observational learning, (c) self-explanation-based learning, and (d) inquiry learning. The approaches all advocate learners' active attitude toward the learning…
Descriptors: Instructional Design, Observational Learning, Learning Processes, Teaching Methods
Hug, Barbara – Journal of Curriculum Studies, 2008
Contemporary science standards stress the importance of highlighting inquiry in the science classroom as one way of learning key concepts. One critical question that needs to be addressed for a range of instructional practices is how opportunities to learn are conceptualized so that students can engage and learn the critical ideas and practices…
Descriptors: Laboratory Procedures, Teaching Methods, Science Instruction, Scientific Concepts
Thompson, Stephen – Journal of College Science Teaching, 2007
Research shows that many students hold misconceptions related to plant functions (Hershey 2004). Some of these students will become teachers with little content understanding to identify their students' misconceptions about plants (Amir and Tamir 1994). The literature on teaching about plants doesn't help; it contains frequent errors,…
Descriptors: Sciences, Misconceptions, Science Teachers, Biological Sciences
Previous Page | Next Page ยป
Pages: 1 | 2