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Heidi A. Schweingruber | Akateeminen Kirjakauppa

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Discipline-Based Education Research - Understanding and Improving Learning in Undergraduate Science and Engineering
Heidi A. Schweingruber; Natalie R. Nielsen; Susan R. Singer
National Academies Press (2012)
Pehmeäkantinen kirja
53,10
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America's Lab Report - Investigations in High School Science
Heidi A. Schweingruber; Margaret L. Hilton; Susan R. Singer
National Academies Press (2006)
Pehmeäkantinen kirja
53,10
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Taking Science to School - Learning and Teaching Science in Grades K-8
Andrew W. Shouse; Heidi A. Schweingruber; Richard A. Duschl
National Academies Press (2007)
Kovakantinen kirja
73,60
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Ready, Set, Science! - Putting Research to Work in K-8 Science Classrooms
Sarah Michaels; Andrew W. Shouse; Heidi A. Schweingruber; Center for Education; Steve Olson; National Research Council; Nati
National Academies Press (2007)
Pehmeäkantinen kirja
37,60
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Surrounded by Science - Learning Science in Informal Environments
Marilyn Fenichel; Heidi A. Schweingruber; Center for Education; National Research Council
National Academies Press (2010)
Pehmeäkantinen kirja
27,40
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ostoskoriin kpl
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Rise and Thrive with Science - Teaching PK-5 Science and Engineering
Heidi Schweingruber; Amy Stephens; Carla Zembal-Saul; Eve Manz; Ximena Dominguez; Elizabeth A. Davis; Heidi Carlone; Kobe
National Academies Press (2024)
Pehmeäkantinen kirja
42,90
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Equity in K-12 STEM Education - Framing Decisions for the Future
Heidi Schweingruber; Kenne A. Dibner; Eileen R. Parsons
National Academies Press (2024)
Pehmeäkantinen kirja
103,70
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Discipline-Based Education Research - Understanding and Improving Learning in Undergraduate Science and Engineering
53,10 €
National Academies Press
Sivumäärä: 282 sivua
Asu: Pehmeäkantinen kirja
Julkaisuvuosi: 2012, 27.09.2012 (lisätietoa)
Kieli: Englanti
The National Science Foundation funded a synthesis study on the status, contributions, and future direction of discipline-based education research (DBER) in physics, biological sciences, geosciences, and chemistry. DBER combines knowledge of teaching and learning with deep knowledge of discipline-specific science content. It describes the discipline-specific difficulties learners face and the specialized intellectual and instructional resources that can facilitate student understanding.


Discipline-Based Education Research is based on a 30-month study built on two workshops held in 2008 to explore evidence on promising practices in undergraduate science, technology, engineering, and mathematics (STEM) education. This book asks questions that are essential to advancing DBER and broadening its impact on undergraduate science teaching and learning. The book provides empirical research on undergraduate teaching and learning in the sciences, explores the extent to which this research currently influences undergraduate instruction, and identifies the intellectual and material resources required to further develop DBER.


Discipline-Based Education Research provides guidance for future DBER research. In addition, the findings and recommendations of this report may invite, if not assist, post-secondary institutions to increase interest and research activity in DBER and improve its quality and usefulness across all natural science disciples, as well as guide instruction and assessment across natural science courses to improve student learning. The book brings greater focus to issues of student attrition in the natural sciences that are related to the quality of instruction. Discipline-Based Education Research will be of interest to educators, policy makers, researchers, scholars, decision makers in universities, government agencies, curriculum developers, research sponsors, and education advocacy groups.

Table of Contents


Front Matter
Executive Summary
Section I: Status of Discipline-Based Education Research
1 Introduction
2 The Emergence and Current State of Discipline-Based Education Research
Section II: Contributions of Discipline-Based Education Research
3 Overview of Discipline-Based Education Research
4 Identifying and Improving Students' Conceptual Understanding in Science and Engineering
5 Problem Solving, Spatial Thinking, and the Use of Representations in Science and Engineering
6 Instructional Strategies
7 Some Emerging Areas of Discipline-Based Education Research
Section III: Future Directions for Discipline-Based Education Research
8 Translating Research into Teaching Practice: The Influence of Discipline-Based Education Research on Undergraduate Science and Engineering Instruction
9 Future Directions for Discipline-Based Education Research: Conclusions and Recommendations
References
Appendix: Biographical Sketches of Committee Members and Staff

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