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CADRE I. DRK-12 Science Project Portfolio Descriptive Summary.

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Presentation on theme: "CADRE I. DRK-12 Science Project Portfolio Descriptive Summary."— Presentation transcript:

1 CADRE I. DRK-12 Science Project Portfolio Descriptive Summary

2 CADRE DRK-12 Project Portfolio (n=176) Science Project Breakdown  101 Science Projects  55 Science Projects (with technology) Science Project Funding (median funding)  Science Projects: $1,412,555  Science Projects (with technology): $1,779,459  Science Projects (without technology): $597,503 Average Length of Award  Science Projects: 3.49 years  Science Projects (with technology): 3.70 years  Science Projects (without technology): 3.24 years

3 CADRE Science Projects by Grade Band

4 CADRE Science Content Areas

5 CADRE Science Projects Focus

6 CADRE Types of Resources

7 CADRE Types of Technologies

8 CADRE Types of Models

9 CADRE Science Projects - Target Audience

10 CADRE Point in the Cycle of Research and Development Synthesize & theorize 9% Develop & Test 72% Implement & Improve 8% Scale-up & Study Effectiveness 3% Explore, Hypothesize, & Clarify 8%

11 CADRE Dissemination of Findings  Journal article: 66%  Book/chapter: 9%  Report: 5%  White/working paper: 9%  Newsletter: 8%  Popular Media: 7%  Presentation/poster: 80%  Website: 66%  Blog: 1%  Webinar: 6%  Workshop: 29%  CD/DVD: 5%  Commercial product: 15%  Professional network: 34%  Other: 32%

12 CADRE II. DRK-12 Science Project Research Questions Categories and Descriptions

13 CADRE Science Projects – Research Questions Categories of Research Questions:  Project implementation  Teacher outcomes  Student outcomes  Classroom/school/district outcomes  Project evaluation

14 CADRE Project Implementation  Meeting project goals  Barriers to success  Implementing with fidelity  Support for teachers  Support for students

15 CADRE Teacher Outcomes  Teacher content knowledge/learning/skills  Teacher satisfaction  Changes in instruction  Changes in teacher attitudes/beliefs/motivation  Incorporation of tools into instruction

16 CADRE Student Outcomes  Enhancement of student learning (academic/social/emotional)  Changes in achievement  Obstacles to learning/achieving  Effects on college and career goals  Changes in student confidence, motivation, awareness

17 CADRE Classroom/School/District Outcomes  Professional development  Instructional support  Institutional policies  School structure  Teaching methodology  Classroom discourse

18 CADRE Project Evaluation  Formative/summative evaluation  Project effectiveness  Comparisons of new versus existing tools and techniques  Implementation challenges  Curriculum validity/reliability/bias

19 CADRE III. DRK-12 Science Projects’ Use of Technology Categories and Descriptions

20 CADRE Science Projects – Technology Categories  On-line gaming/interactive learning/virtual environment  On-line network/collaboration tool  Software on personal computer  Assessment

21 CADRE On-line gaming/Interactive Learning/Virtual Environment  Student data collection contributions to ongoing studies (on-line observations & data entry)/virtual laboratories  Student tutoring via interactive learning tools/ automated tutoring for lower performing students  Students interaction with “augmented reality” to supplement classroom curricula (e.g., climate change)  Scientific inquiry using GPS units, digital smart graphs, Google Earth, etc…  Teacher professional development about interactive software

22 CADRE On-line Networking/ Collaboration Tools  Interactive information-sharing and collaboration, on-line  On-line professional development (on curricula, lesson planning tools, audio/video training materials)  Promoting professional communities/communities of practice among teachers and between teachers and scientists  Social interaction platforms for students using avatars, portfolio spaces, and discussion forums

23 CADRE Software on Personal Computers  Ongoing teacher assessments to enhance instruction  Interactive learning tools  Digital laboratories  Tutorials/assessments/progress reports of student understanding and accumulation of knowledge

24 CADRE Assessment  Formative assessment  Summative assessment  Simulation-based benchmark assessment aligned with national standards—designed to bridge gap between formative and summative assessments  Assessment of strategies for teaching STEM  Virtual environment-situated assessment modules  Assessment of professional development


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