Expectations are high for digital technologies to address sustainability related challenges. While research into such applications and the twin transformation is growing rapidly, insights in the actual daily practices of digital sustainability within organizations is lacking. This is problematic as the contributions of digital tools to sustainability goals gain shape in organizational practices. To bridge this gap, we develop a theoretical perspective on digital sustainability practices based on practice theory, with an emphasis on the concept of sociomateriality. We argue that connecting meanings related to sustainability with digital technologies is essential to establish beneficial practices. Next, we contend that the meaning of sustainability is contextspecific, which calls for a local meaning making process. Based on our theoretical exploration we develop an empirical research agenda.
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This paper describes a research about the changing role and competences of teachers and the willingness of the teachers to change. The researchers developed and conducted a survey at Fontys University of Applied Sciences department engineering to find out how teachers teach and how they would want to teach. The conclusion drawn from this research results in five subjects of attention: 1 To investigate new teaching competences 2 To investigate new teaching strategies 3 To develop collaborating professional environments for teachers 4 To develop a formal declaration of how companies can participate effectively in the process of the transition of youngsters to professional practitioners 5 To investigate how the organization should change their culture and structure towards a professional learning environment for students and teachers. The above mentioned items will be subject of further research in the coming study year. The main goal is to develop a business case or strategic plan on how to implement change in teaching engineering education.
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The COVID-19 pandemic has revealed the importance for university teachers to have adequate pedagogical and technological competences to cope with the various possible educational scenarios (face-to-face, online, hybrid, etc.), making use of appropriate active learning methodologies and supporting technologies to foster a more effective learning environment. In this context, the InnovaT project has been an important initiative to support the development of pedagogical and technological competences of university teachers in Latin America through several trainings aiming to promote teacher innovation. These trainings combined synchronous online training through webinars and workshops with asynchronous online training through the MOOC “Innovative Teaching in Higher Education.” This MOOC was released twice. The first run took place right during the lockdown of 2020, when Latin American teachers needed urgent training to move to emergency remote teaching overnight. The second run took place in 2022 with the return to face-to-face teaching and the implementation of hybrid educational models. This article shares the results of the design of the MOOC considering the constraints derived from the lockdowns applied in each country, the lessons learned from the delivery of such a MOOC to Latin American university teachers, and the results of the two runs of the MOOC.
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Innovation is crucial for higher education to ensure high-quality curricula that address the changing needs of students, labor markets, and society as a whole. Substantial amounts of resources and enthusiasm are devoted to innovations, but often they do not yield the desired changes. This may be due to unworkable goals, too much complexity, and a lack of resources to institutionalize the innovation. In many cases, innovations end up being less sustainable than expected or hoped for. In the long term, the disappointing revenues of innovations hamper the ability of higher education to remain future proof. Against the background of this need to increase the success of educational innovations, our colleague Klaartje van Genugten has explored the literature on innovations to reveal mechanisms that contribute to the sustainability of innovations. Her findings are synthesized in this report. They are particularly meaningful for directors of education programs, curriculum committees, educational consultants, and policy makers, who are generally in charge of defining the scope and set up of innovations. Her report offers a comprehensive view and provides food for thought on how we can strive for future-proof and sustainable innovations. I therefore recommend reading this report.
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As societies age, the development of resources and strategies that foster healthy ageing from the beginning of life become increasingly important. Social and healthcare professionals are key agents in this process; therefore, their training needs to be in agreement with societal needs. We performed a scoping review on professional competences for social and health workers to adequately promote healthy ageing throughout life, using the framework described by Arksey and O’Malley and the Joanna Briggs Institute Guidelines. A stakeholder consultation was held in each of the participating countries, in which 79 experts took part. Results show that current literature has been excessively focused on the older age and that more attention on how to work with younger population groups is needed. Likewise, not all disciplines have equally reflected on their role before this challenge and interprofessional approaches, despite showing promise, have not been sufficiently described. Based on our results, health and social professionals working to promote healthy ageing across the lifespan will need sound competences regarding person-centred communication, professional communication, technology applications, physiological and pathophysiological aspects of ageing, social and environmental aspects, cultural diversity, programs and policies, ethics, general and basic skills, context and self-management-related skills, health promotion and disease prevention skills, educational and research skills, leadership skills, technological skills and clinical reasoning. Further research should contribute to establishing which competences are more relevant to each discipline and at what level they should be taught, as well as how they can be best implemented to effectively transform health and social care systems.
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In this chapter, we discuss the education of secondary school mathematics teachers in the Netherlands. There are different routes for qualifying as a secondary school mathematics teacher. These routes target different student teacher populations, ranging from those who have just graduated from high school to those who have already pursued a career outside education or working teachers who want to qualify for teaching in higher grades. After discussing the complex structure this leads to, we focus on the aspects that these different routes have in common. We point out typical characteristics of Dutch school mathematics and discuss the aims and challenges in teacher education that result from this. We give examples of different approaches used in Dutch teacher education, which we link to a particular model for designing vocational and professional learning environments.We end the chapter with a reflection on the current situation.
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The Fontys University of professional Education, department of Mechanical Engineering, has started development of a new curriculum during the year 2000-2001, Human Mechanical Engineering (HME). Next to immersion of our students in actual technology practices, we aim to include for our students new topics in the field of Mechanical Engineering. We aim to include methods and an approach towards a career as an intermediary between the market and the company. We also include a well developed valuesystem, compatible with the working of Society, a sense of responsibility and a capacity for independent thought. Skills such as entrepeneurship and following market developments are combined with management of product-creation processes and some depth in selected mechanical engineering topics. The curriculum will be designed with 14 so-called competences as educational targets (See also Dick van Schenk Brill & Peter Boots 2001). Knowledge as well as skills and attitudes are combined in a competence in such a way that it meets a standard of behaviour for an excellent engineer. Also the individual career expectations will be used to arrive at optimal choices for papers, assignments and traineeships for every given student. At this moment recruitment is at full speed. During the season 2001-2002 further developments will be undertaken from a general baseline within the department of Mechanical Engineering. Furthermore work will be done on implementing interdisciplinary (Hans van Zonneveld & Hay Geraedts 1997) as well as international collaboration and communication (Peter van Kollenburg & Hay Geraedts 2001) and further developments into topics like sustainability and ethics.
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Regional sustainability networks in the Netherlands are rooted in regionalculture and have an emphasis on social learning and effective collaboration between multiple actors. The national ‘Duurzaam Door’ (Moving Forward Sustainably) Policy Programme regards these networks as generative governance arrangements where new knowledge, actions and relations can co-evolve together with new insights in governance and learning within sustainability transitions. In order to understand the dynamics of the learning in these networks we have monitored emergent properties of social learning between 2014 and 2016. Our focus is particularly on the interrelated role of trust, commitment, reframing and reflexivity. Our aim is to better understand the role and the dynamics of these emergent properties and to see which actors and roles can foster the effectiveness of social learning in regional transitions towards more sustainable ways of living. We used a retrospective analysis with Reflexive Monitoring in Action (RMA), which we combined with the Most Significant Change approach. We found that reflexivity in particularis a critical property at moments that can make or break the process.
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This workshop addresses the development of teacher competencies for Education for Sustainable Development (ESD) and builds upon the learning experiences in the first of two periods of the Erasmus+ Teacher Academy EduSTA. By embracing different countries, educational cultures, contexts and needs, EduSTA aimed to cocreate a generic competence-based teacher role description, based on the current teacher competencies frameworks for ESD (Ametller, 2024), underpinning a prototype for micro-credentials, digital open badge-driven learning pathways and accompanying learning modules for teachers. The aim of the workshop is two-fold:1. Participants are actively involved in furthering the discussion on bringing sustainability education to life by negotiating the tensions and dilemmas in translating sustainability education concepts to teacher development practise. 2. Workshop hosts triangulate the tensions and dilemmas identified in the EduSTA badge-design process with the perspectives of educational stakeholders beyond the consortium. In a learning by doing process, participants in this workshop are presented with a set of educational design principles that foster ESD. In mixed groups they are invited to negotiate possibilities to make room for transformative learning, assessment as learning and communal and authentic learning while building upon the developed EduSTA badge constellation prototype, its competence objectives and criteria.
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Worldwide, pupils with migrant backgrounds do not participate in school STEM subjects as successfully as their peers. Migrant pupils’ subject-specific language proficiency lags behind, which hinders participation and learning. Primary teachers experience difficulty in teaching STEM as well as promoting required language development. This study investigates how a professional development program (PDP) focusing on inclusive STEM teaching can promote teacher learning of language-promoting strategies (promoting interaction, scaffolding language and using multilingual resources). Participants were five case study teachers in multilingual schools in the Netherlands (N = 2), Sweden (N = 1) and Norway (N = 2), who taught in primary classrooms with migrant pupils. The PDP focused on three STEM units (sound, maintenance, plant growth) and language-promoting strategies. To trace teachers’ learning, three interviews were conducted with each of the five teachers (one after each unit). The teachers also filled in digital logs (one after each unit). The interviews showed positive changes in teachers’ awareness, beliefs and attitudes towards language-supporting strategies. However, changes in practice and intentions for practice were reported to a lesser extent. This study shows that a PDP can be an effective starting point for teacher learning regarding inclusive STEM teaching. It also illuminates possible enablers (e.g., fostering language awareness) or hinderers (e.g., teachers’ limited STEM knowledge) to be considered in future PDP design.
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