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Kiley-Rendon, Patrick A. – ProQuest LLC, 2019
Recent years have seen efforts to increase STEM education in schools that the United States has not witnessed since the Cold War (Dean, 2005). One way in which schools have attempted to meet this goal is the inclusion of makerspaces (sometimes referred to as STEM labs, STEAM labs, innovation centers). Their goal is to shirk "traditional"…
Descriptors: Shared Resources and Services, Middle School Students, STEM Education, Educational Benefits
Michelle Honeyford; Jennifer Watt; Sarah Roche; Noah Cain; Katya Ferguson – Pedagogies: An International Journal, 2025
In the complexities of current realities, we are a writing collective of educators interested in placing hope in the present, particularly in composing practices and pedagogies. Drawing on a post-qualitative methodology, we weave together examples of practices of dance/movement, digital movie-making, and soil artivism with specific concepts of…
Descriptors: Elementary Secondary Education, Elementary School Teachers, Secondary School Teachers, Teacher Educators
Levy, Sharona T.; Peleg, Ran; Ofeck, Eyal; Tabor, Naamit; Dubovi, Ilana; Bluestein, Shiri; Ben-Zur, Hadar – Instructional Science: An International Journal of the Learning Sciences, 2018
We propose and evaluate a framework supporting collaborative discovery learning of complex systems. The framework blends five design principles: (1) individual action: amidst (2) social interactions; challenged with (3) multiple tasks; set in (4) a constrained interactive learning environment that draws attention to (5) highlighted target…
Descriptors: Traffic Safety, Discovery Learning, Simulation, Simulated Environment
Trninic, Dragan – Instructional Science: An International Journal of the Learning Sciences, 2018
This conceptual paper considers what it would mean to take seriously Freudenthal's suggestion that mathematics should be taught like swimming. The general claim being made is that "direct instruction" and "discovery" are not opposite but complementary, linked by repetitive yet explorative practice. This claim is elaborated…
Descriptors: Mathematics Education, Mathematics Instruction, Direct Instruction, Discovery Learning
Rutter, Amanda; Andrews, Nicole Locher – AERA Online Paper Repository, 2018
Producing high quality early childhood education environments has been of concern in recent years. Although research supports the positive effects of high quality early childhood education, there is minimal consensus on the best method of measuring the construct of quality (Cassidy, Hestenes, Hedge, & Mims, 2005). Several rating scales exist…
Descriptors: Pilot Projects, Discovery Learning, Educational Environment, Preschool Teachers
Perdana, Ryzal; Rudibyani, Ratu Betta; Budiyono; Sajidan; Sukarmin – International Journal of Instruction, 2020
This research aimed to determine the effectiveness of the Inquiry Social Complexity (ISC) learning model to improve critical and creative thinking skills of senior high school students in Indonesia. The research method used was experimental with pre-test-post-test group design. The research sample were 32 students using the ISC model and 30…
Descriptors: Instructional Effectiveness, Active Learning, Inquiry, Critical Thinking
Mitchell, April; Lott, Kimberly – Science and Children, 2020
By bringing everyday phenomena into the classroom, teachers can more readily engage students in authentic scientific inquiry. When working with young children, the best phenomena are those that students can directly experience and investigate. Meaningful phenomena can be identified by watching children at play, listening to the conversations they…
Descriptors: Science Instruction, Elementary School Science, Grade 2, Scientific Concepts
Gunawan; Kosim; Lestari, P. Ayu Suci – International Journal of Instruction, 2020
The purpose of this study is to develop an instructional materials using discovery learning with cognitive conflict approach to improve vocational students understanding of heat concept. This instructional material was developed using the Four D model, namely define, design, develop, and disseminate. Furthermore, data were obtained from the…
Descriptors: Instructional Materials, Discovery Learning, Heat, Scientific Concepts
Quinn, Therese – Teachers College Press, 2020
Museums are public resources that can offer rich extensions to classroom educational experiences, from tours through botanical gardens to searching for family records in the archives of a local historical society. With clarity and a touch of humor, Quinn presents ideas and examples of ways that teachers can use museums to support student…
Descriptors: Museums, Discovery Learning, Social Justice, Inclusion
Julie Fox; Solomon Garner – Journal of Human Sciences & Extension, 2022
Extension is well-positioned to engage strategically with urban communities now and in the future. A century of collaboration and proven impact provides Extension with a valuable foundation focused on relevant service accessible to all people; applied science and co-discovery; respectful and inclusive engagement; and commitment to community…
Descriptors: Extension Education, Urban Extension, Access to Education, Futures (of Society)
Lubis, Akhmad Badrul; Miaz, Yalvema; Putri, Indah Eka – Elementary School Forum (Mimbar Sekolah Dasar), 2019
Difficulties of primary school students in solving mathematical problems that require problem solving or reasoning abilities indicate the existence of problems in the process of learning mathematics, because one of the purposes of learning mathematics in primary school is to develop the students' mathematical problem-solving skills. As a solution…
Descriptors: Discovery Learning, Elementary School Students, Mathematics Skills, Problem Solving
Brigas, Carlos Jorge – Research in Social Sciences and Technology, 2019
In science education, there is a need to evaluate the behavior of dynamic systems. Representing and explaining processes through educational models or simulations enables students to perform activities where it is easier to understand these processes and discover the essential properties of a system. Performing modeling or simulation activities…
Descriptors: Science Education, Models, Simulation, Teaching Methods
Hayati Dina, Zinatun; Ikhsan, M.; Hajidin – Journal of Research and Advances in Mathematics Education, 2019
The purpose of this study was to determine the improvement of students' mathematical communication and disposition abilities taught with discovery learning models. This study us quantitative approach with the type of experimental research and the research design us pretest and posttest design type experiments. The sample was chosen randomly from…
Descriptors: Communication Skills, Mathematics Skills, Skill Development, Discovery Learning
Markant, Douglas B. – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2019
Psychologists and educators have long pointed to myriad benefits of self-directed learning. Yet evidence of its efficacy in real-world domains is mixed and it remains unclear how it is constrained by basic perceptual and cognitive processes. Previous work suggests that, in particular, self-directed learning is affected by the way that people…
Descriptors: Bias, Hypothesis Testing, Concept Formation, Active Learning
Landstrom, Evan B.; Nichol, Meghan; Lipshutz, Bruce H.; Gainer, Morgan J. – Journal of Chemical Education, 2019
Micellar catalysis has become an important aspect of the chemical industry's effort to "go green". However, this chemistry has yet to be fully explored in educational settings such as second-year organic chemistry laboratories. Reported herein is a discovery-based nucleophilic aromatic substitution experiment that introduces chemistry…
Descriptors: Discovery Learning, Science Experiments, Water, Organic Chemistry

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