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Fitzgerald, Angela; Pressick-Kilborn, Kimberley; Mills, Reece – Education 3-13, 2021
Initial teacher education (ITE) providers prepare graduates to be effective classroom practitioners, but there is little contemporary research capturing what this preparation actually looks like for primary (elementary) science education in Australia. Drawing on a broader study, this paper reports on teacher educators' practices and perspectives…
Descriptors: Active Learning, Inquiry, Science Education, Elementary Education
Linlin Li; Momo Hayakawa; Joan Freese; Beth Daniels; Gary Weiser; Kim Luttgen; Mai Chue Lor; Megan Schneider; Chun-Wei Huang; Emily Jensen – Grantee Submission, 2022
School closures because of natural phenomena, such as COVID-19, underscore long-standing gaps in access to science education in the United States of America, particularly for young students. When educators have to pivot to deliver virtual instruction, it is important to identify feasible remote learning strategies for science content across formal…
Descriptors: COVID-19, Pandemics, Science Education, Science Instruction
Anggoro, Subuh; Widodo, Ari; Suhandi, Andi; Treagust, David F. – EURASIA Journal of Mathematics, Science and Technology Education, 2019
Both students and teachers have misconceptions about Force and Motion, often caused by teachers not being well-prepared to teach the accepted scientific theory. Besides, teachers rarely or never use a cognitive conflict strategy in their teaching. The present study is aimed at investigating the use of a discrepant event to facilitate preservice…
Descriptors: Preservice Teachers, Undergraduate Students, Elementary Education, Concept Formation
Singh, Marlene – 1983
A series of charts lists weekly activities for conducting a hands-on science laboratory in grades K-6. Arranged by grade level, the charts complement chapters in the "Gateways to Science" textbook series (McGraw-Hill, 1979). For each week, a concept to be explored is tagged to a 45-minute activity. This document was selected by the…
Descriptors: Elementary Education, Experiential Learning, Hands on Science, Learning Activities
Rushton, Erik; Ryan, Emily; Swift, Charles – 2001
In this activity, students look at different types of fabric and their respective individual properties. Using a magnifying glass and sandpaper, students test the weave and wear quality of sample fabrics. By comparing the qualities of different fabrics, they are able to better understand why there are so many different types of fabric and…
Descriptors: Elementary Education, Engineering, Experiential Learning, Hands on Science

Maxim, George – Science and Children, 1997
Supports the approach for young children that allows them to perform actions on objects and observe the reactions. Describes some techniques to use to encourage an inquiry approach. (DDR)
Descriptors: Concept Formation, Discovery Learning, Elementary Education, Hands on Science

Heuser, Daniel – Educational Leadership, 2000
Like writing workshops, math and science workshops create flexible environments where students actively learn, share, and explore concepts at their own pace. Format consists of a mini-lesson, an activity period, and reflection. Teacher- and student-directed varieties are explained and compared. (Contains 18 references.) (MLH)
Descriptors: Discovery Learning, Elementary Education, Hands on Science, Individualized Instruction
Eames-Sheavly, Marcia – Taproot, 1998
Proposes that it is critical for children to understand and appreciate plants, and that gardening can be integrated into the regular school curriculum. Gives examples of "pizza garden" and flower garden projects related to math, science, language arts, creative arts, nutrition and health, physical education, Earth stewardship, music, social…
Descriptors: Elementary Education, Elementary School Students, Experiential Learning, Gardening
Norby, Rena Faye – 2002
This paper presents a study investigating K-8 preservice teachers' attitudes towards science in a technology-based science content course. The study was conducted in a learning environment in which hands-on science, educational technology, collaboration, and constructivism were promoted. Results suggest that using technology in classroom teaching…
Descriptors: Constructivism (Learning), Cooperative Learning, Educational Technology, Elementary Education
Winn, William; Berninger, Virginia; Richards, Todd; Aylward, Elizabeth; Stock, Pat; Lee, Yen-Ling; Lovitt, Dan – Journal of Educational Computing Research, 2006
Two groups of twelve dyslexic children and twelve good readers attended a two-week class during the summer following their enrollment in grades 4-6. The topic was the marine environment and focused on the adventures of an orca whale that had lost its family and needed the children's help. The children attended class for three hours each day, 45…
Descriptors: Learning Theories, Learning Activities, Class Activities, Marine Biology

Rushton, Erik; Ryan, Emily; Swift, Charles – 2001
In this activity, students experiment and observe the similarities and differences between human-made objects and nature in small groups. Students compare the function and structure of hollow bones with drinking straws, bird beaks and tool pliers, and bat wings and airplane wings. A classroom discussion can be held to discuss similarities and…
Descriptors: Elementary Education, Engineering, Experiential Learning, Group Activities
Bell, Derek – 1999
The principle of education for all is one which few people, if any, would argue against but putting it into practice is one of the biggest challenges facing everyone involved in education. Internationally, nationally and locally attempts are being made to develop and put in place policies and structures which will lead to an inclusivity of…
Descriptors: Constructivism (Learning), Elementary Education, Foreign Countries, Hands on Science
Leyden, Michael – Teaching Pre K-8, 1996
Presents classroom science activities to illustrate concepts of inertia, linear momentum, and friction. Students or teachers conduct races down a slope, using cans containing soups varying in mass, mass distribution, and viscosity. Students predict outcomes, compare speeds, and identify variables affecting the results. (KDFB)
Descriptors: Active Learning, Class Activities, Classroom Techniques, Demonstrations (Science)

Colegate, Carol; Smith, Janice – Science and Children, 1995
Describes an activity that involves exploring a model cave made out of a two-person tent as a way to add science process to a thematic unit on bats and spiders. This multifunctional learning center provides students with a variety of hands-on experiences, helps students focus on observable things from nature, and emphasizes process skills. Lists…
Descriptors: Elementary Education, Elementary School Science, Hands on Science, Learning Activities
Glandon, Shan – 2000
This volume brings award-winning literature to all areas of the science curriculum. The lesson plan format includes the four stages of engagement, elaboration, exploration, and connection. Each story is followed by activities that make connections between literature, science, and the arts. Chapters include: (1) "Frog Went A-Courtin',"…
Descriptors: Art, Childrens Literature, Constructivism (Learning), Elementary Education