Publication Date
| In 2026 | 2 |
| Since 2025 | 897 |
| Since 2022 (last 5 years) | 4132 |
| Since 2017 (last 10 years) | 9439 |
| Since 2007 (last 20 years) | 15781 |
Descriptor
Source
Author
| Jacobs, George M. | 55 |
| Slavin, Robert E. | 52 |
| Rummel, Nikol | 36 |
| Gillies, Robyn M. | 35 |
| Hwang, Gwo-Jen | 33 |
| Johnson, David W. | 33 |
| Järvelä, Sanna | 31 |
| Johnson, Roger T. | 28 |
| Vaughn, Sharon | 24 |
| Aleven, Vincent | 23 |
| Fischer, Frank | 23 |
| More ▼ | |
Publication Type
Education Level
Audience
| Teachers | 1846 |
| Practitioners | 1355 |
| Students | 197 |
| Researchers | 189 |
| Administrators | 150 |
| Policymakers | 53 |
| Parents | 23 |
| Media Staff | 21 |
| Counselors | 9 |
| Community | 7 |
| Support Staff | 7 |
| More ▼ | |
Location
| Australia | 589 |
| China | 417 |
| Canada | 381 |
| Turkey | 369 |
| United Kingdom | 351 |
| Indonesia | 343 |
| Taiwan | 309 |
| Spain | 292 |
| United States | 264 |
| California | 221 |
| United Kingdom (England) | 211 |
| More ▼ | |
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
| Meets WWC Standards without Reservations | 12 |
| Meets WWC Standards with or without Reservations | 27 |
| Does not meet standards | 21 |
Peer reviewedKuhns, Catherine L. – Teaching Children Mathematics, 1997
Presents activities that were used to celebrate "Half-Time Day", the halfway point of the school year. Includes various hands-on ways for children to experience the fraction 1/2, including learning centers and whole-group activities. (JRH)
Descriptors: Cooperative Learning, Educational Strategies, Elementary Education, Elementary School Mathematics
Peer reviewedFalvo, David – TechTrends, 2003
Discusses the role of the Internet in rural schools, both for use in the classroom and for developing professional relationships. Reports results of a qualitative study of seven elementary school teachers who used the Internet to offset their rural isolation, deal with social justice and equality issues, develop learner-centered instruction, and…
Descriptors: Cooperative Learning, Elementary School Teachers, Elementary Secondary Education, Equal Education
Peer reviewedBedrosian, Jan; Lasker, Joanne; Speidel, Kristina; Politsch, Andrea – Topics in Language Disorders, 2003
This article describes an intervention study designed to enhance the skills needed in the planning and writing of stories by an adolescent with autism who was using augmentative and alternative communication and working with a typical peer. Overall, the student's postintervention story was dramatically improved over his preintervention story.…
Descriptors: Augmentative and Alternative Communication, Autism, Cooperative Learning, Creative Writing
Peer reviewedCruickshank, Brandon J.; Olander, Julie – Journal of College Science Teaching, 2002
Presents an instrumental analysis laboratory section of a problem-based format that includes elements of authentic, investigative, and cooperative learning. Discusses students' attitudes, achievement, and effects of the problem-based instruction on the learning process and higher order thinking in laboratory students. (KHR)
Descriptors: Chemistry, Cooperative Learning, Higher Education, Inquiry
Peer reviewedGuy, Mark D.; Moen, David; Spivey, Meg – Science and Children, 2002
Introduces a four-week environmental education project developed for elementary school students with the cooperation of the college of education and local school districts. Supports student learning in science through inquiry. (YDS)
Descriptors: Cooperative Learning, Elementary Education, Environmental Education, Field Trips
Peer reviewedFournier, Eric J. – Journal of General Education, 2002
Argues that the discipline of geography needs to be transformed from a declarative enterprise based on facts to a problem-based enterprise, particularly in light of the shrinking world community. Describes the ways in which a geography instructor addressed the problem-based learning struggle between process and content. (Contains 23 references.)…
Descriptors: Community Colleges, Cooperative Learning, Critical Thinking, Geography
Peer reviewedBattles, Denise A.; Franks, Melvin E.; Morrison-Shetlar, Alison I.; Orvis, Jessica N.; Rich, Fredrick J.; Deal, Tony J. – Journal of College Science Teaching, 2003
Describes a course developed for undergraduate students that includes an environmental science lecture and laboratory section. Focuses on the laboratory section as the critical component with activities that are real-world related, hands-on, problem solving-based, and use cooperative learning approaches. (Contains 12 references.) (Author/YDS)
Descriptors: Cooperative Learning, Environmental Education, Ethnicity, Hands on Science
Peer reviewedYerrick, Randy K.; Doster, Elizabeth; Nugent, Jeffrey S.; Parke, Helen M.; Crawley, Frank E. – Journal of Research in Science Teaching, 2003
Presents an existence proof of how preservice science teachers used analogies embedded in their course materials, Physics by Inquiry. Reports three distinct roles of analogies: a) cognitive process skills; b) scientific conceptual understanding; and c) social contexts for problem solving. Agrees on the importance of collaborative problem solving…
Descriptors: Cognitive Development, Cooperative Learning, Higher Education, Inquiry
Peer reviewedLunsford, Suzanne – Science Teacher, 2002
Introduces a professional development workshop designed for in-service secondary school science teachers that provides experiences for teachers in inquiry-based physical science. Features three components: (1) a three week summer institute; (2) two one-day, follow-up workshops; and (3) classroom visitation. Promotes the inquiry approach in science…
Descriptors: Cooperative Learning, Elementary Secondary Education, Inquiry, Physical Sciences
Peer reviewedKaufman, Peter – Teaching Sociology, 2001
Uses Project Censored to open a dialog about important issues that have not received media attention, to reflect on the sociological reasons why we are not learning about these stories, and to develop strategies to address these issues. Students met these objectives by writing a report and giving an oral presentation. (DAJ)
Descriptors: Cooperative Learning, Educational Strategies, Higher Education, Internet
Dunlap, Joanna C.; Grabinger, Scott – Performance Improvement Quarterly, 2003
Several instructional features facilitate the development of metacognitive and self-directed learning skills, and disposition to lifelong learning: student autonomy, responsibility, and intentionality; intrinsically motivating activities; enculturation; discourse and collaboration among learners; and reflection. Describes and presents examples of…
Descriptors: Cognitive Processes, Cooperative Learning, Instructional Design, Intentional Learning
Peer reviewedEeds, Maryann; Peterson, Ralph – New Advocate, 1997
Reviews the growth of literature study as an open-ended enterprise for student growth and discussion. Critiques new directions in literature study among children. Explains basic ideas behind the authors' recommendation for literature study. (TB)
Descriptors: Cooperative Learning, Educational History, Elementary Education, Group Discussion
Baris-Sanders, Marcia – Phi Delta Kappan, 1997
By using group activities for learning, cooperative student effort for school events, and peer pressure for classroom discipline, Japanese teachers involve and empower their students. While American students feel that classrooms are teachers' sacred ground, Japanese students appropriate them as their rightful community. Instead of stressing…
Descriptors: Ability, Comparative Education, Cooperative Learning, Discipline
Peer reviewedSchleper, David R. – Perspectives in Education and Deafness, 1996
A teacher of middle school deaf students describes the use of literature study circles to encourage reading. The study circles encourage self-selection of reading materials, build a sense of community, help students to learn open-ended group discussion techniques, and foster thinking skills. (DB)
Descriptors: Childrens Literature, Cooperative Learning, Deafness, Group Discussion
Peer reviewedLiao, Thomas T. – Journal of College Science Teaching, 1997
Discusses strategies that enable students to learn ideas and concepts in the context of how modern communication technology is designed and operates. Describes a course that integrates the study of math, science, and technology into topics that are engaging to students. Presents an activity that introduces students to digital coding and compares…
Descriptors: Cooperative Learning, DNA, Educational Strategies, Genetics


