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Article
Publication date: 14 December 2020

Terrie McLaughlin Galanti, Courtney Katharine Baker, Kimberly Morrow-Leong and Tammy Kraft

In spring 2020, educators throughout the world abruptly shifted to emergency remote teaching in response to an emerging pandemic. The instructors of a graduate-level synchronous…

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Abstract

Purpose

In spring 2020, educators throughout the world abruptly shifted to emergency remote teaching in response to an emerging pandemic. The instructors of a graduate-level synchronous online geometry and measurement course for practicing school teachers redesigned their summative assessments. Their goals were to reduce outside-of-class work and to model the integration of content, pedagogy and technology. This paper aims to describe the development of a digital interactive notebook (dINB) assignment using online presentation software, dynamic geometry tools and mathematical learning trajectories. Broader implications for dINBs as assessments in effective distance learning are presented.

Design/methodology/approach

The qualitative analysis in this study consists of a sequence of first-cycle coding of mid-semester surveys and second-cycle thematic categorizations of mid-semester surveys and end-of-course reflections. Descriptive categorization counts along with select quotations from open-ended participant responses provided a window on evolving participant experiences with the dINB across the course.

Findings

Modifications to the dINB design based on teacher mid-semester feedback created a flexible assessment tool aligned with the technological pedagogical content knowledge (TPACK) framework. The teachers also constructed their own visions for adapting the dINB for student-centered instructional technology integration in their own virtual classrooms.

Originality/value

The development of the dINB enriched the TPACK understandings of the instructors in this study. It also positioned teachers to facilitate innovative synchronous and blended learning in their own school communities. Further analysis of dINB artifacts in future studies will test the hypothesis that practicing teachers’ experiences as learners increased their TPACK knowledge.

Details

Interactive Technology and Smart Education, vol. 18 no. 3
Type: Research Article
ISSN: 1741-5659

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Article
Publication date: 4 October 2021

Tomayess Issa, Pedro Isaias and Theodora Issa

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Abstract

Details

Interactive Technology and Smart Education, vol. 18 no. 3
Type: Research Article
ISSN: 1741-5659

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