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Showing 1 to 15 of 18 results Save | Export
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Pinar Baspinar; Jale Çakiroglu; Engin Karahan – Science Insights Education Frontiers, 2024
Astronomy education is essential for STEM education in primary schools, and integrating engineering design-based science education enhances student engagement and achievement in the field of space science. Integrating engineering design into science education is essential for students to excel in astronomy and to meet the requirements of…
Descriptors: Science Instruction, Middle Schools, Grade 6, Astronomy
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Min Liu; Chenglu Li; Zilong Pan – International Journal of Designs for Learning, 2022
In this design case, we describe our experience of designing and creating a teacher's dashboard as an accompanying tool to support sixth-grade teachers who implement a technology-supported problem-based learning program on sixth-grade space science in their classrooms. We describe in detail the background of this design case, our motivation to…
Descriptors: Middle School Teachers, Grade 6, Educational Technology, Problem Based Learning
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Pan, Zilong; Liu, Min – Journal of Educational Technology Systems, 2022
This mixed-method study introduced an adaptive scaffolding system to support middle school science problem-based learning (PBL) activities. 298 6th-graders were grouped into three conditions, which are the adaptive scaffolding group, the non-adaptive scaffolding group, and a control group that did not receive any scaffoldings. Results showed that…
Descriptors: Grade 6, Problem Based Learning, Scaffolding (Teaching Technique), Middle School Students
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Brown, Patrick L.; Concannon, James – Science Activities: Classroom Projects and Curriculum Ideas, 2016
One tried-and-true way to hook students' attention and promote long-lasting understanding is to sequence science instruction in an explore-before-explain instructional sequence. In these lessons for the second through sixth grade band, elementary students investigate the interaction between "cold" and "hot" substances and…
Descriptors: Science Instruction, Elementary School Science, Interaction, Weather
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Wilhelm, Jennifer; Toland, Michael D.; Cole, Merryn – Journal of Education in Science, Environment and Health, 2017
Differences were examined between groups of sixth grade students? spatial-scientific development pre/post implementation of an Earth/Space unit. Treatment teachers employed a spatially-integrated Earth/Space curriculum, while control teachers implemented their Business as Usual (BAU) Earth/Space units. A multi-level modeling approach was used in a…
Descriptors: Grade 6, Middle School Students, Earth Science, Space Sciences
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Zhang, Jie; Wong, Sissy; Relyea, Jackie; Wui, Ma Glenda; Emenahar, Uchenna – English in Texas, 2017
In the DISCUSS (Dialogic Inquiry for Socioscientific and Conceptual Understanding in School Science) research project, a Socioscientific Issues (SSI)-based curriculum is developed and implemented in sixth-grade science classrooms with predominantly English language learners (ELLs) in Houston, Texas. A four-week space unit is designed in…
Descriptors: Science Education, English Language Learners, Persuasive Discourse, Classroom Communication
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Jackson, Christa; Wilhelm, Jennifer Anne; Lamar, Mary; Cole, Merryn – School Science and Mathematics, 2015
This study investigated sixth-grade middle-level students' geometric spatial development by gender and race within and between control and experimental groups at two middle schools as they participated in an Earth/Space unit. The control group utilized a regular Earth/Space curriculum and the experimental group used a National Aeronautics and…
Descriptors: Grade 6, Middle School Students, Geometric Concepts, Spatial Ability
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Guler, Mutlu Pinar Demirci – Educational Research and Reviews, 2013
According to its definition, socio-scientific subjects emerge during scientific and technologic developments. Besides information, attitude and value constraints are effective in decision-making processes and thus there is no consensus on socio-scientific subjects yet and it leads to social discussions. These subjects comprise decision making…
Descriptors: Foreign Countries, Science and Society, Elementary School Curriculum, Grade 6
Vogt, Gregory L.; Shearer, Deborah A. – National Aeronautics and Space Administration (NASA), 2011
Among the thousands of questions that need to be answered before astronauts travel to distant planets and asteroids are questions related to the astronauts themselves. How much food will they need and what foods can they take? We are fortunate on Earth to have an amazing variety of foods to eat. When astronauts do go to Mars and other…
Descriptors: Space Sciences, Space Exploration, Nutrition, Food
National Aeronautics and Space Administration (NASA), 2013
With just a few materials, building a paper model of the International Space Station (ISS) can become an excellent group, troop, or class project. This publication contains a brief overview of the ISS, its parts, the science that occurs on board, instructions, and extensions for an interdisciplinary technology experience. Discover more about the…
Descriptors: Space Sciences, Space Exploration, Science Instruction, Simulation
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Adams, Amelia; Laughter, Judson – Multicultural Learning and Teaching, 2012
Should a focus on empowering education for a socially just world stretch across schooling generally? Is it really the responsibility of science educators to focus on such a struggle? We believe the answer to both questions is an enthusiastic "yes" and in this article report on the planning and execution of a 6th grade science unit…
Descriptors: Units of Study, Science Instruction, Science and Society, Culturally Relevant Education
Nebraska Department of Education, 2010
This publication presents the Nebraska Science Standards for Grades K-12. The standards are presented according to the following grades: (1) Grades K-2; (2) Grades 3-5; (3) Grades 6-8; and (4) Grades 9-12.
Descriptors: Elementary Secondary Education, State Standards, Academic Standards, Academic Achievement
Schneider, Twila, Ed. – National Aeronautics and Space Administration (NASA), 2010
This educator guide is organized into seven chapters: (1) Overview; (2) The Design Challenge; (3) Connections to National Curriculum Standards; (4) Preparing to Teach; (5) Classroom Sessions; (6) Opportunities for Extension; and (7) Teacher Resources. Chapter 1 provides information about Environmental Control and Life Support Systems used on NASA…
Descriptors: Glossaries, Web Sites, Technological Literacy, Space Sciences
National Aeronautics and Space Administration (NASA), 2010
National Aeronautics and Space Administration (NASA) Engineers at Marshall Space Flight Center, Dryden Flight Research Center, and their partners at other NASA centers and in private industry are currently developing X-33, a prototype to test technologies for the next generation of space transportation. This single-stage-to-orbit reusable launch…
Descriptors: Space Sciences, Astronomy, Engineering, Worksheets
National Aeronautics and Space Administration (NASA), 2007
This student employee handbook offers tips on planning, design process, and presentation of a student Lunar Nautics project. Each section includes mission, task, challenge, and guide questions. With the activities presented, students will learn to design a Lunar Lander, Lunar Miner, and Lunar Base; investigate the geography and geology of the moon…
Descriptors: Geology, Geography, Lunar Research, Hands on Science
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