Teachers’ Knowledge and Capacity for Using Digital Resources in Mathematics Education
- ,
- Veronica Hoyos,
- Jason Silverman,
- Alice Lee
- ,
- ,
- National Pedagogical University,
- Drexel University,
- The University of Hong Kong
Research Output:
Conference Article in Proceeding or Book/Report chapter
Book chapter
Peer-reviewPublication Information
Output type
Research Output:
Conference Article in Proceeding or Book/Report chapter
Book chapter
Peer-reviewOriginal language
EnglishPages from-to (Number of pages)
Pages 851-881 (30 pages)Publication milestones
- Published - 2024
Publication status
Published - 2024
Publisher
Springer, United States, GermanyBook series
- Book series name: Springer International Handbook of Education
ISSN: 2197-1951
ISBN (Print)
2197-1951Publication IDs
- Scopus: 85200479773
Host publication title
Teachers’ Knowledge and Capacity for Using Digital Resources in Mathematics EducationHost publication editors
- Birgit Pepin
- Ghislaine Gueudet
- Jeffrey Choppin
Abstract
This chapter synthesizes different influential conceptualizations of teacher knowledge and capacity for using digital resources in mathematics education, namely themes and developments of TPACK, instrumental frameworks, the structuring features of classroom practice, and variation theory. The purpose of this contribution is to provide mathematics educators with an overview and synthesis of research results on what’s required to effectively teach mathematics with digital technologies. Accordingly, the mentioned conceptualizations are described and compared, while also providing detailed examples and applications that are introduced and analyzed. Furthermore, as these frameworks (and related streams of research and development) have come about somewhat insularly, with little evidence of contextual knowledge or collaboration across them, this chapter considers potential next steps that connect and/or cut across these four broad frameworks, including research on the role of the context in teaching and learning with digital resources. Ultimately, we seek to catalyze future research and development that uses these currently disparate strands of work collectively to support greater and more effective integration of technology into mathematics teaching and learning.
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