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Buchholz, Beth; Pyles, Damiana; Hash, Peaches; Hagaman, Kris – Science and Children, 2021
"Science and Children" routinely addresses the challenges teachers face in integrating the "Common Core State Standards" ("CCSS") alongside the "Next Generation Science Standards" ("NGSS") (e.g., Forsythe, Jackson, and Contreras 2018; Sweetman and Sabella 2018). This article aims to extend this…
Descriptors: Science Instruction, Interdisciplinary Approach, Kindergarten, Video Technology
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Vardell, Sylvia M.; Wong, Janet S. – Science and Children, 2014
Like science, poetry often involves a high level of abstraction in language and ideas, requiring specific critical-thinking skills and promoting interaction. Casteel and Isom (1994) acknowledge, "The literacy processes are the means by which science content is learned because content information is rooted in written and oral language"…
Descriptors: Science Curriculum, Curriculum Enrichment, Poetry, Interdisciplinary Approach
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Lachapelle, Cathy P.; Sargianis, Kristin; Cunningham, Christine M. – Science and Children, 2013
Engineering is prominently included in the "Next Generation Science Standards" (Achieve Inc. 2013), as it was in "A Framework for K-12 Science Education" (NRC 2012). The National Research Council, authors of the "Framework," write, "Engineering and technology are featured alongside the natural sciences (physical…
Descriptors: Science Instruction, Engineering Education, STEM Education, Elementary School Curriculum
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Bohach, Barbara M.; Meade, Birgitta – Science and Children, 2014
The authors collaborated on hosting a "Spring Inspire Day." planned and delivered by preservice elementary teachers as a social studies/science methods project. Projects that have authentic application opportunities can make learning meaningful for prospective teachers as well as elementary students. With the impetus for an integrated…
Descriptors: Social Studies, Scientific Methodology, Science Activities, Preservice Teachers
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Hansen, Alexandria Killian; Iveland, Ashley; Harlow, Danielle Boyd; Dwyer, Hilary; Franklin, Diana – Science and Children, 2015
As science teachers continue preparing for implementation of the "Next Generation Science Standards," one recommendation is to use computer programming as a promising context to efficiently integrate science and engineering. In this article, a interdisciplinary team of educational researchers and computer scientists describe how to use…
Descriptors: Animation, Programming, Integrated Curriculum, Science Education
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Rogers, Meredith Park; Steele, Melonie – Science and Children, 2014
Much has been written about developing outdoor classrooms or how to generate effective and integrated learning using the outdoors. However, with the release of the "Next Generation Science Standards," teachers need to consider how they are going to design their science curriculum to include opportunities for students to learn about core…
Descriptors: Institutes (Training Programs), Elementary School Students, Outdoor Education, Interdisciplinary Approach
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Nickel, John; Jennings, Margaret – Science and Children, 1971
The South Central Kansas Elementary Science-Math Project involves integrating science and math, active learning, and inquiry. Approximately 25,000 students are involved in the program. (CP)
Descriptors: Curriculum Development, Elementary School Science, Elementary School Students, Integrated Curriculum
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Olson, Anne K. – Science and Children, 1992
Rebuts the case made by Donald Williams in "Making a Case for the Science Specialist." Argues that using science specialists gives the impression that science is only for certain people. Considers points made by preservice teachers in Williams' article concerning attitude, curricular concerns, and teaching science using real-life…
Descriptors: Collegiality, Curriculum Problems, Elementary Education, Elementary School Teachers
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Girod, Mark – Science and Children, 2007
One of the shortcomings in most efforts to integrate art and science is that many people have a shallow understanding of art, which inevitably leads to shallow connections between art and science. Coloring drawings of planets, building sculptures of volcanoes, and decorating scientific diagrams are fine activities, but they do not link science and…
Descriptors: Science Education, Teaching Methods, Art Education, Interdisciplinary Approach
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Kearney, Elizabeth I. – Science and Children, 1979
Describes a science curriculum, grades 1-12, which features an interdisciplinary approach with a focus on science as an adjunct to reading and math. (Author/MA)
Descriptors: Curriculum Design, Curriculum Enrichment, Elementary Secondary Education, Gifted
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Kotar, Michael; Guenter, Cris E.; Metzger, Devon; Overholt, James L. – Science and Children, 1998
Recommends that teachers develop integrated curriculum units with their students. Describes a course for preservice teachers in which they become familiar with a problem-based interdisciplinary approach. (DDR)
Descriptors: Course Content, Elementary Education, Higher Education, Integrated Curriculum
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Dillon, Nancy – Science and Children, 2000
Explains the process of creating a curriculum based on the National Science Education Standards (NSES). Introduces an activity where students experience flowers and their environments. Focuses on Content Standard C of the NSES. (YDS)
Descriptors: Biological Sciences, Curriculum Development, Elementary Education, Field Trips
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McMahon, Maureen M.; O'Hara, Susan P.; Holliday, William G.; McCormack, Bernadette B.; Gibson, Elizabeth M. – Science and Children, 2000
Introduces Project WRITE (World Resources for Integrated Thematic Education). Features six science-based units that include "American Revolution: People and Technology", "A Look Inside Ourselves", "Westward Ho!", "Animals and Humans Living Together", "Environmental Awareness", and "1800s: The…
Descriptors: Animals, Curriculum Development, Elementary Education, Environmental Education
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Gee, Thomas; Olson, Mary W. – Science and Children, 1992
Describes strategies that use trade books to teach science to primary students. Strategies include (1) developing concepts and vocabulary; (2) using concrete manipulatives to reinforce learning; (3) encouraging retelling; (4) developing class summaries; and (5) developing visual imagery. (MDH)
Descriptors: Childrens Literature, Discussion (Teaching Technique), Instructional Materials, Integrated Curriculum
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Park Rogers, Meredith A.; Volkmann, Mark J.; Abell, Sandra K. – Science and Children, 2007
Connections between science and mathematics seem natural. First, mathematics can be used in science to organize and analyze data in tables and graphs. Second, mathematics can help represent scientific phenomena and understand scientific concepts. Student learning should benefit when teachers make the connections between science and mathematics…
Descriptors: Scientific Concepts, Mathematics Instruction, Mathematical Concepts, Science Instruction
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