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Pete Arvedson Satellites & Education Conference XXVII University of Wisconsin – Madison August 1, 2014
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Session Objectives… Lessons from the Sky More Lessons from the Sky A word about standards Free Web access ◦ CSULA & NOAA-CREST West August 1, 2014 Satellites & Education Conference XXVIIMore Lessons from the Sky 2
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1995 Satellite Educators Association Educator authors How-to book for weather satellite direct read-out Lesson emphasis on use of remote sensing data/imagery August 1, 2014 Satellites & Education Conference XXVIIMore Lessons from the Sky 3
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Monthly SEA Newsletter feature ◦ August 2011 to date ◦ Online – http://www.SatEd.orghttp://www.SatEd.org ◦ Free access K-12 Interdisciplinary STEM integration Standards matched ◦ National Science Education Standards ◦ Next Generation Science Standards August 1, 2014 Satellites & Education Conference XXVIIMore Lessons from the Sky 4
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August 1, 2014 Satellites & Education Conference XXVIIMore Lessons from the Sky 5 Tracking Hurricanes from Space What is a Tornado? Types of Orbits for Earth Observation Cloud Typing from Ground and Space Young Meteorologist Program Fishing via Satellite Electromagnetic Radiation & Satellites – Antenna Design Modeling Satellite Remote Sensing Land Cover Change How Landsat Works Foucault’s Pendulum Volcanic Ash Plumes from Space Tracking Hurricane Sandy World-Wide Weather Identifying Landforms FIZZ-POP! Action-Reaction Some Lesson Plan Titles
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Introduction Standards Objectives Assessment Suggestions Student Activity Background Preparation Acknowledgements Resources Answer Key PDF August 1, 2014 Satellites & Education Conference XXVIIMore Lessons from the Sky 6 Invitation Worksheets ◦ 5E Inquiry ◦ Skill Tutorial ◦ Coop Learning Strategies ◦ Other Answer Sheet Your Turn Activities DOC TEACHING NOTES STUDENT ACTIVITY
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National Science Education Standards – 1991 Based on American Association for the Advancement of Science’s Project 2061… ◦ Science for All Americans - 1989 ◦ Benchmarks for Science Literacy - 1990 August 1, 2014 Satellites & Education Conference XXVIIMore Lessons from the Sky 7
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National Science Education Standards – 1991 7 Categories of Standards Science as Inquiry Physical Science Life Science Earth and Space Science Science and Technology Science in Personal and Social Perspectives History and Nature of Science August 1, 2014 Satellites & Education Conference XXVIIMore Lessons from the Sky 8
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National Science Education Standards – 1991 7 Categories of Standards Science as Inquiry Physical Science Life Science Earth and Space Science Science and Technology Science in Personal and Social Perspectives History and Nature of Science August 1, 2014 Satellites & Education Conference XXVIIMore Lessons from the Sky 9 Includes INQUIRY standards
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National Science Education Standards – 1991 7 Categories of Standards Science as Inquiry Physical Science Life Science Earth and Space Science Science and Technology Science in Personal and Social Perspectives History and Nature of Science August 1, 2014 Satellites & Education Conference XXVIIMore Lessons from the Sky 10 Includes ENGINEERING standards
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National Science Education Standards – 1991 7 Categories of Standards Science as Inquiry Physical Science Life Science Earth and Space Science Science and Technology Science in Personal and Social Perspectives History and Nature of Science August 1, 2014 Satellites & Education Conference XXVIIMore Lessons from the Sky 11 Includes EARTH SYSTEM-HUMAN INTERACTION standards
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National Science Education Standards – 1991 7 Categories of Standards Science as Inquiry Physical Science Life Science Earth and Space Science Science and Technology Science in Personal and Social Perspectives History and Nature of Science August 1, 2014 Satellites & Education Conference XXVIIMore Lessons from the Sky 12
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Next Generation Science Standards For States, By States – 2013 Based on A Framework for K-12 Science Education: Practices, Crosscutting Concepts, and Core Ideas – 2012, National Academy of Science Emphasis on ◦ Integration of dimensions via performance expectations ◦ Opportunities to design & evaluate solutions ◦ Human influence on Earth Systems ◦ Global change August 1, 2014 Satellites & Education Conference XXVIIMore Lessons from the Sky 13
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Dimension… Science & Engineering Practices… 1. Asking questions & defining problems 2. Developing & using models 3. Planning & carrying out investigations 4. Analyzing & interpreting data 5. Using mathematics & computational thinking 6. Constructing explanations & designing solutions 7. Engaging in argument from evidence 8. Obtaining, evaluating, & communicating information August 1, 2014 Satellites & Education Conference XXVIIMore Lessons from the Sky 14
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Dimension… Crosscutting Concepts… 1. Patterns 2. Cause & effect: Mechanism & explanation 3. Scale, proportion, & quantity 4. Systems & system models 5. Energy & matter: Flows, cycles, & conservation 6. Structure & function 7. Stability & change August 1, 2014 Satellites & Education Conference XXVIIMore Lessons from the Sky 15
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Dimension… Disciplinary Core Ideas… 1. Physical Sciences 2. Life Sciences 3. Earth & Space Sciences 4. Engineering Design August 1, 2014 Satellites & Education Conference XXVIIMore Lessons from the Sky 16
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“Students cannot fully understand scientific and engineering ideas without engaging in the practices of inquiry. At the same time, they cannot show competence in practices except in the context of specific content.”-NRC, Framework August 1, 2014 Satellites & Education Conference XXVIIMore Lessons from the Sky 17 PERFORMANCE EXPECTATION
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August 1, 2014 Satellites & Education Conference XXVIIMore Lessons from the Sky 18
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SEA Newsletter – http://www.SatEd.orghttp://www.SatEd.org CSULA Archive – NOAA-CREST West… http://web.calstatela.edu/programs/crest August 1, 2014 Satellites & Education Conference XXVIIMore Lessons from the Sky 19
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