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Jacqueline Goldin; Carolina Suransky – Perspectives in Education, 2024
Over the past few years, we have worked together in a citizen science project called "Diamonds on the Soles of our Feet" (see also Goldin et al. 2021, Goldin et al., 2023). In this project we engaged with 420 young learners in the Limpopo Province of South Africa. We came to see participating schools as collaborative ecosystems where…
Descriptors: Citizen Participation, Citizenship Education, Science Education, Science Projects
Hugerat, Muhamad – Learning Environments Research, 2016
This study involved 458 ninth-grade students from two different Arab middle schools in Israel. Half of the students learned science using project-based learning strategies and the other half learned using traditional methods (non-project-based). The classes were heterogeneous regarding their achievements in the sciences. The adapted questionnaire…
Descriptors: Science Instruction, Active Learning, Student Projects, Learning Strategies
Buelin-Biesecker, Jennifer – Technology and Engineering Teacher, 2014
The average American produces around 1,600 pounds of garbage every year, and it is estimated that 50 percent of that waste is material that could be composted (Clean Air Council, 2012). Instead, most is sent to landfills and incinerators. In technology and engineering education, a great deal of time is spent in talking, teaching, and thinking…
Descriptors: Engineering Education, Technology Education, Engineering Technology, Classroom Environment
Bulunuz, Mizrap – Eurasian Journal of Educational Research, 2015
Problem Statement: Research studies indicate that teachers with negative attitudes toward science tend to use didactic approaches rather than approaches based on students' active participation. However, the reviews of the national academic literature in Turkey located a few research studies on the relationship between playful science experiences…
Descriptors: Preservice Teachers, Scientific Attitudes, Science Teachers, Play
LaBanca, Frank; Ritchie, Krista C. – Science Teacher, 2011
Problem solving is a valuable skill in the science classroom. Students often use a variety of inquiry strategies to identify problems and their implications; develop action plans; locate relevant sources, information, and data; and formulate solutions. Problem solving is a logical, analytical, and sometimes creative process. The less tangible,…
Descriptors: Creativity, Learning Strategies, Problem Solving, Science Fairs
Huffman, Tanner; Burke, Barry – Technology and Engineering Teacher, 2015
Engineering byDesign™ (EbD) provides teachers and students with reflective, formative, and comprehensive summative assessment tools throughout the curriculum. Each lesson, unit, and course is created with a list of essential questions that are meant to guide students to a deeper understanding of national standards across the STEM domains (STL,…
Descriptors: Technological Literacy, Engineering Education, Student Evaluation, Evaluation Methods
Forbes, Cory T.; Biggers, Mandy; Zangori, Laura – School Science and Mathematics, 2013
Within the field of science education, there remains little agreement as to the definition and characteristics of classroom inquiry. The emerging emphasis on scientific practices in science education reform discourse is underpinned by a need to better articulate the constituent elements of inquiry-based science. While a small number of…
Descriptors: Elementary School Science, Inquiry, Scientific Literacy, Protocol Materials

Zohar, Anat; And Others – Journal of Research in Science Teaching, 1994
Describes a study designed to determine whether the Biology Critical Thinking (BCT) project (which incorporates activities for developing specific critical thinking skills into the biology curriculum) enhances critical thinking skills and how it affects students' biological knowledge and classroom learning environment. Results indicate that BCT…
Descriptors: Biology, Classroom Environment, Critical Thinking, Junior High Schools
McSpadden, Moira; Kelley, Todd R. – Technology and Engineering Teacher, 2012
It is well documented that there is a disproportionate number of males pursuing engineering and technology careers when compared to their female counterparts (Milgram, 2011). Some recent articles have proposed methods to recruit more females into technology education (Milgram, 2011; Zywno, Gilbride, Hiscodes, Waalen, and Kennedy, 1999). However,…
Descriptors: Problem Based Learning, Engineering Education, Engineering Technology, Design
Bers, Marina U.; Ponte, Iris; Juelich, Catherine; Viera, Alison; Schenker, Jonathan – Information Technology in Childhood Education Annual, 2002
This article presents a constructionist approach to introducing technology, in particular robotics, in the early childhood classroom. The authors demonstrate how this approach is well suited, since the four basic tenets of constructionism have a long-standing tradition in early childhood education: (a) learning by designing meaningful projects to…
Descriptors: Early Childhood Education, Robotics, Technology Integration, Constructivism (Learning)
Chang, Chun-Yen; Lee, Greg – Turkish Online Journal of Educational Technology - TOJET, 2010
This article summarizes a major e-Learning project recently funded by the National Science Council of Taiwan and envisions some of the future research directions in this area. This project intends to initiate the "Center for excellence in e-Learning Sciences (CeeLS): i[superscript 4] future learning environment" at the National Taiwan…
Descriptors: Electronic Learning, Foreign Countries, Science Course Improvement Projects, Educational Technology
Avard, Margaret – Journal of College Science Teaching, 2006
Science educators are well-positioned to incorporate civic engagement into the classroom by the natural suitability of the subject matter. Civic engagement, or civic education, is a fairly new, multidisciplinary concept that is becoming a requisite for institutions of higher education; it enables students to become actively involved in the…
Descriptors: Citizen Participation, Citizenship Education, Classroom Environment, Classroom Techniques

Bethel, Lowell J.; George, Kenneth D. – Science and Children, 1979
Presents basic guidelines for classroom control and discipline for teachers using new science programs that encourage independent study and hands-on activities. (MA)
Descriptors: Classroom Environment, Classroom Techniques, Elementary Education, Elementary School Science

Sharan, Shlomo; Yaakobi, Duba – European Journal of Science Education, 1981
The Learning Environment Inventory (LEI) was administered to tenth-grade biology classes (N=572) in urban and kibbutz district schools in Israel. Findings indicated that seven out of nine scales of the LEI yield significant differences in scores for urban and kibbutz samples indicating a more positive learning climate in the kibbutz. (Author/DS)
Descriptors: Biology, Classroom Environment, Foreign Countries, Grade 10