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Kato, Tsuguhiko; Van Meeteren, Beth Dykstra – Childhood Education, 2008
Teachers at the Freeburg Early Childhood Program know that experimentation with physical science is of great interest to young children, and can begin as early as the age of 3. The constructivist teachers at this experimental school at the University of Northern Iowa worked for six years to develop a center-based approach to physical science with…
Descriptors: Constructivism (Learning), Experimental Schools, Young Children, Physical Sciences
Beamer, Tyler; Van Sickle, Meta; Harrison, Gary; Temple, George – Journal of Elementary Science Education, 2008
This study was conducted to examine the effectiveness of the GK-12: Lowcountry Partners for Inquiry program that included an emphasis on constructivist teaching methods for science teachers and science graduate students. The goal was to monitor middle school teachers' use of constructivist practices in their classrooms two years after their last…
Descriptors: Constructivism (Learning), Graduate Students, Science Teachers, Middle School Teachers
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Rutledge, Zachary; Norton, Anderson – Mathematics Educator, 2008
This article provides detailed analysis, from a radical constructivist perspective, of a sequence of letter-writing exchanges between a preservice secondary mathematics teacher and a high school student. This analysis shows the ways in which the preservice teacher gained understanding of the high school student's mathematics and attempted to pose…
Descriptors: Constructivism (Learning), Secondary School Mathematics, Preservice Teachers, Mathematics Teachers
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Singer, Florence Mihaela; Moscovici, Hedy – Teaching and Teacher Education: An International Journal of Research and Studies, 2008
This study attempts to analyze and synthesize the knowledge collected in the area of conceptual models used in teaching and learning during inquiry-based projects, and to propose a new frame for organizing the classroom interactions within a constructivist approach. The IMSTRA model consists in three general phases: Immersion, Structuring,…
Descriptors: Constructivism (Learning), Curriculum Development, Textbooks, Grade 9
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Bergman, Daniel J. – Science Activities: Classroom Projects and Curriculum Ideas, 2008
The study of insects (entomology) can be used to stimulate students' interest in science and nature. It can develop students' understanding of fundamental science concepts, awareness of interdisciplinary connections, and mastery of science process skills. This teaching module provides opportunities for middle school students (Grades 5-8) to learn…
Descriptors: Constructivism (Learning), Science Interests, Entomology, Learning Modules
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Nash, Robert J. – About Campus, 2008
The major premise of this article is inspired by Viktor Frankl's words: "The truth is that as the struggle for survival has subsided, the question has emerged--survival for what? Ever more people today have the "means" to live, but no "meaning" to live for." Thousands of students who have come through the author's college courses during the last…
Descriptors: Constructivism (Learning), College Students, Self Concept, Self Evaluation (Individuals)
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Soong, Benson – Australasian Journal of Educational Technology, 2008
This paper presents a study that illustrates how the author and an in service secondary school teacher used basic synchronous computer mediated communications (CMC) technology to help them uncover students' physics preconceptions and thought processes (including their misconceptions and misunderstandings) in a real class setting. In this paper, I…
Descriptors: Constructivism (Learning), Student Attitudes, Physics, Problem Solving
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Wu, Dezhi; Bieber, Michael; Hiltz, Starr Roxanne – Journal of Information Systems Education, 2008
The online participatory exam transforms the traditional exam into a constructivist, cooperative and engaging learning experience. Students learn from designing and answering exam questions, from evaluating their peers' performance, and from reading questions, answers and evaluations. This paper, aimed at faculty who teach online and at…
Descriptors: Online Courses, Educational Technology, Learning Experience, Constructivism (Learning)
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Dooly, Melinda – Language Learning Journal, 2008
New technologies are increasingly becoming a component of education, as computers are integrated into both students' lives and as a teacher's tool of management and teaching. At the same time, constructivist learning theories have had extensive effects at the level of learning paradigms and in prescribed education goals. Yet there are worrying…
Descriptors: Constructivism (Learning), Theory Practice Relationship, Internet, Second Language Instruction
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Cobern, William W.; Loving, Cathleen C. – Science & Education, 2008
"What is truth?" Pontius Pilot asked Jesus of Nazareth. For many educators today this question seems quaintly passe. Rejection of "truth" goes hand-in-hand with the rejection of epistemological realism. Educational thought over the last decade has instead been dominated by empiricist, anti-realist, instrumentalist epistemologies of two types:…
Descriptors: Constructivism (Learning), Realism, Cultural Pluralism, Psychology
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Light, Richard; Wallian, Nathalie – Quest, 2008
Interest in constructivism has fueled enthusiasm for the development of games and team-sport pedagogy over the past decade, but individual sports have yet to receive the same attention. In this article we redress this oversight by suggesting that constructivist perspectives on learning can be used to develop student-centered, inquiry-based…
Descriptors: Constructivism (Learning), Physical Education, Aquatic Sports, Physical Environment
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Chambers, Joan M.; Carbonaro, Mike; Murray, Hana – Australasian Journal of Educational Technology, 2008
Science educators advocate hands on experiences and the use of manipulatives as important for children's conceptual development. Consequently, the utilisation of "Lego" robotic technologies in teaching and learning has become more prevalent in school science classrooms. It is important to investigate their value as educational tools, particularly…
Descriptors: Experiential Learning, Constructivism (Learning), Teaching Methods, Technology Uses in Education
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Longfellow, Erica; May, Steve; Burke, Linda; Marks-Maran, Diane – Teaching in Higher Education, 2008
The Department of English Literature at Kingston University piloted an innovative Peer Assisted Learning (PAL) program as part of a two-year pilot project funded by the Higher Education Funding Council for England's (HEFCE) Widening Participation Fund. The project aimed to enable first-year students to develop academic writing skills related to a…
Descriptors: English Literature, Constructivism (Learning), Student Attitudes, Pilot Projects
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Yang, Fang-Ying; Chang, Chun-Yuan; Hsu, Ying-Shou – Educational Studies, 2008
This study investigated the views about constructivist instruction and personal epistemology of the secondary earth science teachers in Taiwan. Participants were assessed through a paper-and-pencil survey and a "Learning environment preference questionnaire" (LEP) designed to explore personal epistemology. On a five-point Likert scale,…
Descriptors: Constructivism (Learning), Earth Science, Likert Scales, Foreign Countries
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Hall, Stacey L.; Forrester, Scott; Borsz, Melissa – Journal of College Student Development, 2008
This constructivist case study examined undergraduate student leadership development. Twenty-one student leaders, 13 females and 8 males, in a campus recreational sports department were interviewed using a semi-structured interview protocol. Seven broad themes: organizing, planning, and delegating; balancing academic, personal and professional…
Descriptors: Constructivism (Learning), Undergraduate Students, Role Models, Communication Skills
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