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Ünal Çakiroglu; Onurhan Güven; Havva Yaman; Ebru Mazlum Güven – Educational Technology Research and Development, 2025
This paper reports on a study aiming at examining whether online argumentation enhance the teacher candidates' scientific habits of mind (SHOM). The study was carried out as a pre-experimental design including pre and post-test. Scientific Habits of Mind scale, interviews and written arguments were used as data collection tools. Google Classroom,…
Descriptors: Science Education, Science Process Skills, Persuasive Discourse, Computer Mediated Communication
CindyJo Fryer – ProQuest LLC, 2024
This dissertation explores the implementation of classical education in a non-classical charter high school, with a focus on science education using classical methodologies. Employing techniques like copy work, history-based science teaching (HBST), the Socratic method, and the Progymnastmata, astronomy, and chemistry were taught. To identify…
Descriptors: Science Education, Conventional Instruction, Charter Schools, High Schools
Melinda Kirk; Russell Tytler; Peta J. White; Joseph Paul Ferguson; Jo Raphael – Research in Science Education, 2025
With the critical nature of socio-ecological challenges, the need to empower young people to generatively grapple with these science-related issues is crucial for developing their agentic citizenship. This paper reports on a primary science project that adopted a Socratic Seminar pedagogical strategy to enable student voice and collaborative…
Descriptors: Elementary School Science, Science Education, Science Instruction, Teaching Methods
Suritno Fayanto; Dedi Kuswandi; Monamorn Precharattana; La Tahang; Erniwati; Hunaidah – Science Education International, 2023
The purpose of this study was to introduce technology-based EIGEC models and implement these models into the learning process in the classroom. This research was quasi-experimental, using a pre-test-post-test control group design. The research sample consisted of two classes with different treatments. Each course was selected randomly, with the…
Descriptors: Outcomes of Education, Problem Based Learning, Cooperative Learning, Technology Uses in Education
Short, Mary E. – Smithsonian Science Education Center, 2021
Students enter classrooms equipped with a rich foundation of skills and knowledge from their everyday experiences. High-quality science education builds on students' wealth of experience in making sense of the world. In science classrooms, "sensemaking" is a collaborative practice that includes students sharing initial ideas with peers…
Descriptors: Teaching Methods, Science Education, Student Characteristics, Cooperative Learning
Hilton, Courtney B.; Goldwater, Micah B.; Hancock, Dale; Clemson, Matthew; Huang, Alice; Denyer, Gareth – CBE - Life Sciences Education, 2022
A critical goal for science education is to design and implement learning activities that develop a deep conceptual understanding, are engaging for students, and are scalable for large classes or those with few resources. Approaches based on peer learning and online technologies show promise for scalability but often lack a grounding in cognitive…
Descriptors: Science Education, Undergraduate Students, Biochemistry, Correlation
Wagner, Glenn – Physics Education, 2017
Student-generated questions and ideas about our universe are the start of a rich and highly motivating learning environment. Using their curiosity-driven questions and ideas, students form Knowledge Building groups or "communities" where they plan, set goals, design questions for research, and assess the progress of their work, tasks…
Descriptors: Science Education, Physics, Questioning Techniques, Astronomy
Pieczura, Michelle Elaine – Science and Children, 2009
As argumentation is weaved into classroom lessons, students know what to ask, how to analyze the given information before forming a conclusion, and are able to support their reasoning with solid evidence. They will hold firm to their conclusions until proven wrong. Whether it's a discussion about whether air is matter or how speed and friction are…
Descriptors: Cooperative Learning, Inquiry, Questioning Techniques, Persuasive Discourse
Wells, Gordon, Ed. – 2001
This book presents a collection of essays on building collaborative communities in which democratic principles of education may be recognized, focusing on learning and teaching through inquiry. After (1) "The Development of a Community of Inquirers" (Gordon Wells), there are three parts. Part 1, "Inquiries in the Elementary…
Descriptors: Cooperative Learning, Discovery Learning, Discussion (Teaching Technique), Elementary Secondary Education
Luallen, Janet; Leonard, Douglas – 1990
The goal of the Toledo, Ohio, Support Teacher Programs has been to improve the learning of math and science concepts at the junior high school level. This goal involves some basic changes in the way teachers interact with each other and with their students. The greatest changes have been in the movement away from the…
Descriptors: Cognitive Development, Concept Formation, Concept Mapping, Cooperative Learning

Dori, Yehudit J.; Herscovitz, Orit – Journal of Research in Science Teaching, 1999
Presents research on the scientific question-posing capabilities of 10th-grade students (n=127) who were studying air quality in a cooperative way using the jigsaw method. Finds that the difference between students at high and low academic levels to the extent of increase in both number and complexity of posed questions was significant. Contains…
Descriptors: Alternative Assessment, Cooperative Learning, Educational Assessment, Environmental Education
South Carolina State Dept. of Education, Columbia. Office of Research. – 1990
The purpose of this guide is to provide teachers with information that will help them better understand how to teach science. In addition, this resource is intended to be a tool in assisting teachers in developing their science curricula and in planning their instruction. The instructional approach presented reflects the philosophy that students…
Descriptors: Cooperative Learning, Curriculum Development, Discovery Learning, Elementary School Science
Blackmon, Angelicque Tucker – Online Submission, 2005
Conceptual change as a professional development model has moved elementary science teaching beyond lecture and the memorization of facts to science instruction congruent with the National Science Education Standards (National Research Council, 1996). However, research on the effectiveness of conceptual change teaching reveals some of its…
Descriptors: African American Teachers, African American Students, Urban Schools, Elementary School Science
Davidson, Neil, Ed.; Worsham, Toni, Ed. – 1992
This collection of papers provides a theoretical foundation on current practice in cooperative thinking. The papers offer many practical methods that can be applied to a full range of classroom settings. After an introduction, "HOTSICLE: Higher Order Thinking Skills in Cooperative Learning Environments" (Neil Davidson and Toni Worsham),…
Descriptors: Cognitive Development, Concept Formation, Cooperative Learning, Critical Thinking
Chambers, Jack A., Ed. – 1996
This collection of 20 papers is centered on the theme "Teaching, Learning, and Technology--Strategies to Motivate Life Long Learning." Titles include: (1) "Barriers to Effective Teamwork and Recommendations for Solutions" (Lillie Anderton-Lewis and Danny H. Pogue); (2) "Are Group Rewards Necessary for Cooperative Learning?…
Descriptors: Classroom Research, Classroom Techniques, Cognitive Style, College Instruction
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