ロボットを利用したSTEM教育:研究と実践からの教訓<br>STEM Education with Robotics : Lessons from Research and Practice

個数:

ロボットを利用したSTEM教育:研究と実践からの教訓
STEM Education with Robotics : Lessons from Research and Practice

  • 提携先の海外書籍取次会社に在庫がございます。通常3週間で発送いたします。
    重要ご説明事項
    1. 納期遅延や、ご入手不能となる場合が若干ございます。
    2. 複数冊ご注文の場合、分割発送となる場合がございます。
    3. 美品のご指定は承りかねます。

    ●3Dセキュア導入とクレジットカードによるお支払いについて

  • 提携先の海外書籍取次会社に在庫がございます。通常約2週間で発送いたします。
    重要ご説明事項
    1. 納期遅延や、ご入手不能となる場合が若干ございます。
    2. 複数冊ご注文の場合、分割発送となる場合がございます。
    3. 美品のご指定は承りかねます。

    ●3Dセキュア導入とクレジットカードによるお支払いについて
  • 【入荷遅延について】
    世界情勢の影響により、海外からお取り寄せとなる洋書・洋古書の入荷が、表示している標準的な納期よりも遅延する場合がございます。
    おそれいりますが、あらかじめご了承くださいますようお願い申し上げます。
  • ◆画像の表紙や帯等は実物とは異なる場合があります。
  • ◆ウェブストアでの洋書販売価格は、弊社店舗等での販売価格とは異なります。
    また、洋書販売価格は、ご注文確定時点での日本円価格となります。
    ご注文確定後に、同じ洋書の販売価格が変動しても、それは反映されません。
  • 製本 Paperback:紙装版/ペーパーバック版/ページ数 262 p.
  • 言語 ENG
  • 商品コード 9781032367576
  • DDC分類 371.33

Full Description

This book offers a synthesis of research, curriculum examples, pedagogy models, and classroom recommendations for the effective use of robotics in STEM teaching and learning. Authors Chauhan and Kapila demonstrate how the use of educational robotics can catalyze and enhance student learning and understanding within the STEM disciplines.

The book explores the implementation of design-based research (DBR); technological, pedagogical, and content knowledge (TPACK); and the 5E instructional model; among others. Chapters draw on a variety of pedagogical scaffolds to help teachers deploy educational robotics for classroom use, including research-driven case studies, strategies, and standards-aligned lesson plans from real-life settings.

This book will benefit STEM teachers, STEM teacher educators, and STEM education researchers.

Contents

Part I: Introduction. Chapter 1. Transformational Learning with Educational Robotics. 1.1. Introduction. 1.2. STEM and technology-enhanced learning environments. 1.3. Educational robotics. 1.4. Exhibiting the role of robots in supporting student learning. 1.5. Conclusion. 1.6. Key takeaways. Chapter 2. Applications of Robots in Educational Settings. 2.1. Introduction. 2.2. Constructionism and educational robotics. 2.3. Educational robotics: Roles and settings. 2.4. Examples of applications of robots as a learning tool in teaching and learning. 2.5. Conclusion. 2.6. Key takeaways. Chapter 3. Teaching STEM with Robotics: Synopsis of a Research-guided Program. 3.1. Introduction. 3.2. Need for authentic STEM learning experiences. 3.3. Rationale for robotics in STEM education. 3.4. Overview, theoretical background, and project design. 3.5. Illustrative examples from implementation. 3.6. Project outcomes and recommendations. 3.7. Conclusion. 3.8. Key takeaways. Part II: Theory, Design, and Implementation. Chapter 4. Design-based Research for Robotics-enhanced Learning Environments. 4.1. Introduction. 4.2. Design-based research. 4.3. Literature review exemplifying the use of design-based research in robotics-enabled learning. 4.4. Design-based research implementation examples from robotics-enhanced learning environments. 4.5. Implementation challenges of design-based research. 4.6. Conclusion. 4.7. Key takeaways. Chapter 5. Effective Professional Development for Robotics-focused Learning Environments. 5.1. Introduction. 5.2. Teacher professional development. 5.3. Designing for effective professional development. 5.4. Literature review on teacher professional development for robotics-based learning. 5.5. Designing a robotics-based professional development program using situated learning. 5.6. Creating a professional development program using the social capital theory. 5.7. Challenges in planning effective professional development programs and incorporating their lessons. 5.8. Conclusion. 5.9. Key takeaways. Chapter 6. Applying TPACK to Design for Robotics-enhanced Learning. 6.1. Introduction. 6.2. Technological, pedagogical, and content knowledge. 6.3. Literature review on teachers' TPACK development. 6.4. Development of teacher TPACK through professional development aimed at using robotics as a learning tool. 6.5. Development of TPACK-guided robotics-based STEM learning units. 6.6. Conclusion. 6.7. Key takeaways. Part III: Instructional Perspectives and Lesson Designs. Chapter 7. Prerequisites, Practices, and Perceptions to Design Effective Robotics-based Lessons. 7.1. Introduction. 7.2. Enabling effective integration of robotics in classrooms. 7.3. Prerequisites for robotics-based STEM lessons. 7.4. Instructional practices for effective robotics-based lessons. 7.5. Factors that influence student perceptions of utilizing robots as educational tools. 7.6. Conclusion. 7.7. Key takeaways. Chapter 8. Applying Cognitive Domain of Bloom's Taxonomy to Robotics-based Learning. 8.1. Introduction. 8.2. Bloom's taxonomy. 8.3. Literature review on applications of Bloom's taxonomy in robotics. 8.4. Integrating cognitive domain of Bloom's taxonomy with educational robotics to promote higher-order thinking. 8.5. Conclusion. 8.6. Key takeaways. Chapter 9. Using the 5E Instructional Model to Develop Robotics-based Science Units. 9.1. Introduction. 9.2. The 5E instructional model. 9.3. Literature review on integrating the 5E model in robotics-based learning. 9.4. Exemplar robotics-based science unit plans aligned with the 5E model and Next Generation Science Standards. 9.5. Implementing the 5E instructional model. 9.6. Conclusion. 9.7. Key takeaways. Appendix A. Appendix B. Index

最近チェックした商品