Publication Date
| In 2026 | 0 |
| Since 2025 | 618 |
| Since 2022 (last 5 years) | 3421 |
| Since 2017 (last 10 years) | 8009 |
| Since 2007 (last 20 years) | 12256 |
Descriptor
Source
Author
Publication Type
Education Level
Audience
| Teachers | 885 |
| Practitioners | 322 |
| Researchers | 75 |
| Students | 72 |
| Administrators | 69 |
| Policymakers | 36 |
| Parents | 23 |
| Media Staff | 17 |
| Support Staff | 5 |
| Community | 4 |
| Counselors | 4 |
| More ▼ | |
Location
| Australia | 371 |
| Indonesia | 361 |
| Turkey | 346 |
| United Kingdom | 243 |
| Canada | 241 |
| China | 223 |
| Spain | 196 |
| California | 147 |
| Taiwan | 144 |
| Thailand | 143 |
| United States | 128 |
| More ▼ | |
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
| Meets WWC Standards without Reservations | 5 |
| Meets WWC Standards with or without Reservations | 13 |
| Does not meet standards | 19 |
Peer reviewedZiems, Dietrich; Neumann, Gaby – Journal of Artificial Intelligence in Education, 1997
Discusses a methods kit for interactive problem-solving exercises in engineering education as well as a methodology for intelligent evaluation of solutions. The quality of a system teaching logistics thinking can be improved using artificial intelligence. Embedding a rule-based diagnosis module that evaluates the student's knowledge actively…
Descriptors: Active Learning, Artificial Intelligence, Cognitive Structures, Computer Assisted Instruction
Peer reviewedHovelynck, Johan – Journal of Experiential Education, 2003
Moving active learning forward calls for a focus on learners' actorship, not program activities, and requires distinguishing between active learning and active teaching. Experiential education offers an alternative to didactic approaches, not a more attractive form of it. Accepting traditional principles and procedures of…
Descriptors: Active Learning, Adventure Education, Educational Strategies, Elementary Secondary Education
Peer reviewedBenhart, John, Jr. – Journal of Geography, 2000
Describes the instructional method, Client-Life Cycle GIS Project Learning, used in a course at Indiana University of Pennsylvania that enables students to learn with and about geographic information system (GIS). Discusses the course technical issues in GIS and an example project using this method. (CMK)
Descriptors: Active Learning, Course Content, Educational Strategies, Geography Instruction
Peer reviewedMeltzer, David E.; Manivannan, Kandiah – American Journal of Physics, 2002
Presents and analyzes a detailed example of classroom dialogues such as peer instruction, and describes the format, procedures, and curricular materials required for creating the desired lecture-room environment. (Contains 94 references.) (Author/YDS)
Descriptors: Active Learning, Educational Environment, Higher Education, Peer Teaching
Peer reviewedPS: Political Science and Politics, 2000
Provides background information about Mark Boyer, the winner of the fourth Rowman and Littlefield Award for Innovative Teaching in Political Science. States that Boyer has focused on developing active learning approaches for international relations and demonstrates his leadership in the use of technology. (CMK)
Descriptors: Active Learning, Awards, Careers, Computer Uses in Education
Peer reviewedCiliotta-Rubery, Andrea; Levy, Dena – PS: Political Science and Politics, 2000
Describes a congressional committee simulation used in an introductory U.S. politics course. Explains the simulation enabled students to discover how Congress operates. Discusses the outcomes of the simulation, student responses, and recommendations for using it in upper-level courses. Includes the personality descriptions for the commerce…
Descriptors: Active Learning, College Freshmen, Course Content, Government (Administrative Body)
Peer reviewedYell, Michael M. – Social Studies Review, 2000
States that in order to gain students' attention, social studies teachers should use more active teaching strategies. Describes six hooking strategies that immediately draw students in: (1) inquiry; (2) media hook; (3) sentence synthesis; (4) what they know, what they want to know, what they learned (K-W-L); (5) roundtable; and (6) concept…
Descriptors: Active Learning, Concept Mapping, Educational Strategies, Elementary Secondary Education
Peer reviewedHetland, Lois – Journal of Aesthetic Education, 2000
Examines whether active instruction in music enhances preschool and elementary school student performance on spatial tasks. Reports that music enhances the spatial-temporal performance of children during and up to two years following the instruction and that the effect is moderate and consistent. Includes references. (CMK)
Descriptors: Active Learning, Brain, Educational Research, Elementary Education
Peer reviewedHarton, Helen C.; Richardson, Deborah S.; Barreras, Ricardo E.; Rockloff, Matthew J.; Latane, Bibb – Teaching of Psychology, 2002
Discusses the use of focused interactive learning (FIL), in which students participate in focused discussions with their peers to learn about psychological concepts. Evaluates the use of FIL at Florida Atlantic University (Boca Raton, Florida). Addresses student benefits resulting from this technique. (CMK)
Descriptors: Active Learning, Discussion (Teaching Technique), Educational Research, Educational Strategies
Peer reviewedHarrold, Marc W. – American Journal of Pharmaceutical Education, 1995
At the Duquesne University (PA) school of pharmacy, five self-paced computer exercises using a molecular modeling program have been implemented to teach stereochemical concepts. The approach, designed for small-group learning, has been well received and found effective in enhancing students' understanding of the concepts. (Author/MSE)
Descriptors: Active Learning, Classroom Techniques, Computer Assisted Instruction, Concept Formation
Peer reviewedRambusch, Nancy McCormick – Montessori Life, 1995
Discusses the elements of Montessori education that distinguish it from traditional education for older children and from much current group experience for young children. Focuses on the respect for each child as a unique individual with unique interests and learning styles and on how Montessori education responds to that individuality to…
Descriptors: Active Learning, Discovery Learning, Early Childhood Education, Individual Differences
Peer reviewedWardle, Francis – Young Children, 1995
Examines the quality of teaching offered at the Hutterian kindergarten school in New Meadow Run, Pennsylvania, as an example of an outdoor school. Suggests that, based on the ideas of Rousseau, Pestallozzi, and Froebel on early play and natural development, outdoor schools can offer an alternative to current structured academic school activities…
Descriptors: Active Learning, Educational Theories, Experiential Learning, Farm Visits
Peer reviewedTudor, Roger M. – Journal of Applied Behavior Analysis, 1995
The use of overt answer construction in computer-based programmed instruction was studied. Four college students completed an instructional program that alternated between presenting frames with blanks requiring overt responses and complete frames without blanks. All students produced more correct answers corresponding to program segments that…
Descriptors: Active Learning, College Students, Computer Assisted Instruction, Higher Education
Peer reviewedBurmeister, Sandra L.; And Others – New Directions for Teaching and Learning, 1994
Six specific instances in which supplemental instruction (SI) leaders guide student inquiry in college algebra and calculus are described. The active learning strategies used in the situations are analyzed, focusing on the role of the leader and the support provided by SI leader training and supervision. (MSE)
Descriptors: Active Learning, Algebra, Calculus, Classroom Communication
Peer reviewedSheppo, Karen Groves; And Others – Educational Leadership, 1995
Using an integrated curriculum anchored in science and multimedia technology, Project LINCOL'N (Living in the New Computer Oriented Learning 'Nvironment) facilitates active learning for all students. The project's vision is to enable all students, including those with disabilities, to engage in authentic learning in a problem-solving environment.…
Descriptors: Active Learning, Disabilities, Elementary Education, Grade 6


