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107,431 result(s) for "ACTIVITY LEARNING"
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Children’s Emotions in Design-Based Learning: a Systematic Review
Design-based learning (DBL) is gaining increasing acceptance as a motivating and practical approach that can be used to prepare young people for the challenges of the twenty-first century. Emotions are known to influence a student’s academic performance in traditional learning, which raises the question as to what role emotions can play in DBL. This article presents a systematic survey of literature published in the last 20 years (searching from 1998 to 2019) and indexed in the Scopus, ERIC, and PsycINFO databases which contribute to our understanding of children’s emotions in DBL. This review coded a total of 34 papers that met the inclusion criteria. Findings that reported on children’s emotions are structured under three themes: (1) the affective DBL components, (2) the labeled emotions, and (3) the impact of emotions in DBL. Based on this evidence, we make recommendations for future research and compile a set of guidelines for designing DBL activities, taking into account students’ emotions that can aid their learning.
A Framework of Implementing Strategies for Active Student Engagement in Remote/Online Teaching and Learning during the COVID-19 Pandemic
The COVID-19 pandemic has caused a drastic shift of face-to-face teaching and learning to remote/online teaching and learning at all levels of education worldwide. Active student engagement is always a challenging task for educators regardless of the teaching modalities. The degree of challenge for active student engagement increases significantly in remote/online teaching and learning. This paper presents a framework that implements activities/strategies to ensure active student engagement in remote/online teaching and learning during this COVID-19 pandemic. The structure of the developed framework combines the balanced use of adjusted teaching pedagogy, educational technologies, and an e-learning management system. Teaching pedagogy involves various active learning techniques, synchronous teaching, asynchronous teaching, and segmentation. The educational technologies, such as Google Meet, Jamboard, Google Chat, Breakout room, Mentimeter, Moodle, electronic writing devices, etc., enable the developed framework for active student engagement. An e-learning management system, Moodle, is used for course management purposes. Over the last three semesters (Fall 2020, Spring 2021, and Summer 2021), the framework is tested for three different engineering courses. A questionnaire draws out student perception on the developed framework in terms of active student engagement that ensures student–student interactions, student–instructor interactions, social presence, reinforces learning and deepens understanding of the materials in remote teaching. The feedback also indicates that combining the utilized technologies, synchronous teaching, and active learning activities in the developed framework is effective for interactive learning; hence a practical approach for active student engagement in remote/online teaching and learning. The article focuses on contributing to present research and infusing future research direction about technology-enhanced active student engagement in Engineering Education.
Relational topologies in the learning activity spaces: operationalising a sociomaterial approach
Technology-mediated interactions and datafication are increasingly central in contemporary social dynamics and institutions, including teaching and learning processes. In order to fully understand the complex entanglements of human and non-human actants that emerge in postdigital education, it is essential to imagine new methodological approaches that are sensitive to the multidimensional nature of education—as a socially and materially-situated phenomenon that increasingly takes place across distributed contexts. The overall goal of this paper is to propose and operationalise a new methodological approach for the study of technology in education. It draws on the notion of relational topologies to improve our understanding of educational settings and, ultimately, how learning unfolds. The proposed approach relies on a multi-paradigm enquiry strategy, based on the idea of using “topologies of digital data practices” in combination with the three dimensions that articulate design-for-learning processes according to the Activity-Centred Analysis and Design (ACAD) framework: epistemic, social and set designs. While the article focuses on presenting the elements of the approach from a theoretical perspective, we illustrate its application through the data collected in a small case study that will serve as a testbed. The topologies of relations we present in this article show uses of technology—as described by participants in their own learning experience—that involve different spaces, devices, and personal situations. In doing so, we reveal how humans and non-humans are entangled in hybrid, unstable and generative ways. The article concludes with some remarks on the value of the proposed approach for studying technology in education and its potential to explore the state-of-the-actual in this field, with the ultimate goal of helping inform educational research, practice and decision-making.
Preceptors' experiences of using structured learning activities as part of the peer learning model: A qualitative study
The clinical environment is a vital component of nurse education, constantly changing due to constraints of the current health care systems such as increasing number of students and a limited number of preceptors. Peer learning, is gaining momentum as an educational model highly suitable for clinical placements. The peer learning model incorporates structured learning activities that support student activity, but little is reported of the actual structure and content of those activities. Thereby, the aim of this study was to explore precepting nurses’ experience of using structured learning activities as part of the peer learning model during clinical placement. We used a qualitative research approach, using two open self-administered global questions. The result is based on the analysis of the written responses from 62 preceptors. Four categories followed the analysis: An opportunity for collaboration, An occasion for reflection, A new educational structure, and Recommendations for development. The preceptors perceived the structured learning activities as beneficial for increased collaboration and reflection among students. Moreover, utilizing the structured learning activities was perceived to be time saving for the preceptors, however this is an area where further research is needed. •Structured learning activities as part of peer learning seem to be timesaving.•Structured learning activities allow for increased collaboration for nursing students.•Structured learning activities allow for an observational role for the preceptor.•Structured learning activities clearly aligned theory and practice.
Integrating competency-based education with a case-based or problem-based learning approach in online health sciences
In the current competitive and globalized economy, employers and professional organizations call for higher education institutions to deliver graduates with relevant competencies and skills. In response, a growing number of higher educational institutions is introducing competency-based education. This is particularly true for health science programs, which have a tradition of applying a case-based or problem-based learning approach. The effort to merge a problem- or case-based online learning approach with competency-based education offers various opportunities, while facing numerous challenges. To support these efforts, this paper aims at identifying suitable practices, as well as challenges for online course design and online learning activities for higher education health science programs, when integrating competency-based education with an online problem-based and/or case-based learning approach. It found various opportunities for online learning activities that support competency-based education, problem-based learning and case-based learning, whereas challenges relate to logistics, administration, and the affordances of an LMS.