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Son, Mi Hyun; Lim, Wanchul; Son, Jeongwoo; Jeong, Dae Hong – Asia-Pacific Science Education, 2022
The suitability and characteristics of middle school inquiry activities in the 2015 National Curriculum of Science in Korea were studied from the perspective of eight science teachers with rich experience in teaching science inquiry activities. In-depth interviews revealed problems teachers experienced while conducting inquiry classes. Problems…
Descriptors: Foreign Countries, Science Curriculum, National Curriculum, Inquiry
What Works Clearinghouse, 2012
The "LeTUS" program is a three-year, project-based, technology-integrated middle school science curriculum for grades 6-8. The "LeTUS" program is composed of multiple units, each lasting between eight and ten weeks. Topics include global warming, water and air quality, force and motion, communicable diseases, and ecological…
Descriptors: Middle Schools, Urban Schools, Science Curriculum, Middle School Students
Kulo, Violet; Bodzin, Alec – Journal of Science Education and Technology, 2013
Geospatial technologies are increasingly being integrated in science classrooms to foster learning. This study examined whether a Web-enhanced science inquiry curriculum supported by geospatial technologies promoted urban middle school students' understanding of energy concepts. The participants included one science teacher and 108 eighth-grade…
Descriptors: Science Instruction, Scientific Concepts, Science Curriculum, Science Teachers
Bodzin, Alec M. – Journal of Research in Science Teaching, 2011
This study investigated whether a geospatial information technology (GIT)-supported science curriculum helped students in an urban middle school understand land use change (LUC) concepts and enhanced their spatial thinking. Five 8th grade earth and space science classes in an urban middle school consisting of three different ability level tracks…
Descriptors: Urban Environment, Urban Education, Middle School Students, Grade 8
What Works Clearinghouse, 2012
"Technology Enhanced Elementary and Middle School Science" ("TEEMSS") is a physical science curriculum for grades 3-8 that utilizes computers, sensors, and interactive models to support investigations of real-world phenomena. Through 15 inquiry-based instructional units, students interact with computers, gather and analyze…
Descriptors: Physical Sciences, Science Curriculum, Inquiry, Active Learning
Bodzin, Alec M.; Fu, Qiong – Journal of Science Education and Technology, 2014
Climate change science is a challenging topic for student learning. This quantitative study examined the effectiveness of a geospatial curriculum approach to promote climate change science understandings in an urban school district with eighth-grade students and investigated whether teacher- and student-level factors accounted for students'…
Descriptors: Middle School Students, Secondary School Science, Science Teachers, Grade 8
National Science Resources Center, 2010
In 1985, the leaders of the Smithsonian Institution and the National Academies established the National Science Resources Center (NSRC) to address the critical problem identified by the "A Nation at Risk" report. Through its Curriculum Development Center and in partnership with its publisher, Carolina Biological Supply Company, the NSRC developed…
Descriptors: Curriculum Development, Middle Schools, Science Education, Science Curriculum
Ellwood, Robin B. – ProQuest LLC, 2013
This research investigated how student social interactions within two approaches to an inquiry-based science curriculum could be related to student motivation and achievement outcomes. This qualitative case study consisted of two cases, Off-Campus and On-Campus, and used ethnographic techniques of participant observation. Research participants…
Descriptors: Science Achievement, Student Motivation, Computer Software, Inquiry
Robertson, William C. – National Science Teachers Association (NJ3), 2009
This valuable and entertaining compendium of Bill Robertson's popular "Science 101" columns, from NSTA member journal "Science and Children," proves you don't have to be a science geek to understand basic scientific concepts. The author of the best-selling "Stop Faking It!" series explains everything from quarks to photosynthesis, telescopes to…
Descriptors: Space Sciences, Physical Sciences, Scientific Concepts, Botany
Hug, Barbara; Krajcik, Joseph S.; Marx, Ronald W. – Urban Education, 2005
Recent reform movements within the United States have called for science for all and educational reforms to support this goal. In light of these reform movements and concerns regarding learning within urban schools, science educators and policy makers have pushed for the incorporation of learning technologies within schools as a way of creating…
Descriptors: Urban Schools, Science Curriculum, Educational Innovation, Science Instruction
Zinth, Kyle – Education Commission of the States (NJ3), 2008
America's advantage has historically been its people's creativity, flexibility and entrepreneurship. But just as painters need to be proficient in technique and theory to produce great masterpieces, the next generation of Americans will likely require a solid grounding in mathematics and science for their creativity to be maximized in a world…
Descriptors: Educational Change, Foreign Countries, Science Curriculum, Secondary Education