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Producten 3.312

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Advanced technology use by care professionals

Advanced technology is a primary solution for the shortage of care professionals and increasing demand for care, and thus acceptance of such technology is paramount. This study investigates factors that increase use of advanced technology during elderly care, focusing on current use of advanced technology, factors that influence its use, and care professionals’ experiences with the use. This study uses a mixed-method design. Logfiles were used (longitudinal design) to determine current use of advanced technology, questionnaires assessed which factors increase such use, and in-depth interviews were administered to retrieve care professionals’ experiences. Findings suggest that 73% of care professionals use advanced technology, such as camera monitoring, and consult clients’ records electronically. Six of nine hypotheses tested in this study were supported, with correlations strongest between performance expectancy and attitudes toward use, attitudes toward use and satisfaction, and effort expectancy and performance expectancy. Suggested improvements for advanced technology include expanding client information, adding report functionality, solving log-in problems, and increasing speed. Moreover, the quickest way to increase acceptance is by improving performance expectancy. Care professionals scored performance expectancy of advanced technology lowest, though it had the strongest effect on attitudes toward the technology.

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Advanced technology use by care professionals
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Blockchain: technology looking for a problem?

At the moment of writing of this article, mid-2018, the topic ‘blockchain’ was introduced in the real estate industry in the Netherlands about two years ago. Blockchain will have a large impact in the way we share information and make transactions. Its promise is big, interest in the topic and the number of experiments doubles each year, and not only in the Netherlands, but globally too. So you might expect the number of actual ‘blockchain products’ for the real estate market to follow the same exponential pattern.In reality, however, this is hardly the case at all. Does that mean there are barely any problems to which blockchain is the solution? Perhaps the problems do exist, but the market is not ready yet? And why not? The two most frequently asked questions in the real estate industry are the following: 1. How will blockchain change my business model?2. Where can I buy it so that I can employ it tomorrow?

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Blockchain: technology looking for a problem?
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Integration by students in contemporary society

In the following paper I investigate several factors of integration and their influence on students’ success in higher education derived from leading pedagogical theories. Furthermore the use of Facebook by first year students, in the Department of Media, Communication and Information at the Amsterdam University of Applied Sciences is discussed as a possible new influential factor of student success in contemporary society. The differences in the purpose of Facebook use by students are measured and compared with factors of integration, which were proven in previous studies, to be of influence to the success of students in higher education. Because this study is part of a broader (PhD) research wherein I investigate the influence of media literacy and its possible effect on students’ success, I will embed the results in a more theoretical discussion into integration in higher education and compare the results with previous studies conducted among the same population as part of previous mentioned research. All variables are measured using digital surveys and analysed with the help of statistical tests. This paper will ultimately investigate the relation between the variables derived from Tinto’s integration theory in contemporary society, Facebook use by students and its possible influence on students’ success.

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Personen 2

persoon

Frank Pierie

Frank Pierie
persoon

Martien Visser

Professor

Projecten 9

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Additive Manufacturing of smart biobased sandwich panels

Currently, many novel innovative materials and manufacturing methods are developed in order to help businesses for improving their performance, developing new products, and also implement more sustainability into their current processes. For this purpose, additive manufacturing (AM) technology has been very successful in the fabrication of complex shape products, that cannot be manufactured by conventional approaches, and also using novel high-performance materials with more sustainable aspects. The application of bioplastics and biopolymers is growing fast in the 3D printing industry. Since they are good alternatives to petrochemical products that have negative impacts on environments, therefore, many research studies have been exploring and developing new biopolymers and 3D printing techniques for the fabrication of fully biobased products. In particular, 3D printing of smart biopolymers has attracted much attention due to the specific functionalities of the fabricated products. They have a unique ability to recover their original shape from a significant plastic deformation when a particular stimulus, like temperature, is applied. Therefore, the application of smart biopolymers in the 3D printing process gives an additional dimension (time) to this technology, called four-dimensional (4D) printing, and it highlights the promise for further development of 4D printing in the design and fabrication of smart structures and products. This performance in combination with specific complex designs, such as sandwich structures, allows the production of for example impact-resistant, stress-absorber panels, lightweight products for sporting goods, automotive, or many other applications. In this study, an experimental approach will be applied to fabricate a suitable biopolymer with a shape memory behavior and also investigate the impact of design and operational parameters on the functionality of 4D printed sandwich structures, especially, stress absorption rate and shape recovery behavior.

Afgerond
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AM-SMART: Additive Manufacturing of Smart Bone Implants

Nowadays, there is particular attention towards the additive manufacturing of medical devices and instruments. This is because of the unique capability of 3D printing technologies for designing and fabricating complex products like bone implants that can be highly customized for individual patients. NiTi shape memory alloys have gained significant attention in various medical applications due to their exceptional superelastic and shape memory properties, allowing them to recover their original shape after deformation. The integration of additive manufacturing technology has revolutionized the design possibilities for NiTi alloys, enabling the fabrication of intricately designed medical devices with precise geometries and tailored functionalities. The AM-SMART project is focused on exploring the suitability of NiTi architected structures for bone implants fabricated using laser powder bed fusion (LPBF) technology. This is because of the lower stiffness of NiTi alloys compared to Ti alloys, closely aligning with the stiffness of bone. Additionally, their unique functional performance enables them to dissipate energy and recover the original shape, presenting another advantage that makes them well-suited for bone implants. In this investigation, various NiTi-based architected structures will be developed, featuring diverse cellular designs, and their long-term thermo-mechanical performance will be thoroughly evaluated. The findings of this study underscore the significant potential of these structures for application as bone implants, showcasing their adaptability for use also beyond the medical sector.

Lopend
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Climate change adaptation under multiple interpretations of reality

Climate change adaptation has influenced river management through an anticipatory governance paradigm. As such, futures and the power of knowing the future has become increasingly influential in water management. Yet, multiple future imaginaries co-exist, where some are more dominant that others. In this PhD research, I focus on deconstructing the future making process in climate change adaptation by asking ‘What river imaginaries exist and what future imaginaries dominate climate change adaptation in riverine infrastructure projects of the Meuse and Magdalena river?’. I firstly explore existing river imaginaries in a case study of the river Meuse. Secondly, I explore imaginaries as materialised in numerical models for the Meuse and Magdalena river. Thirdly, I explore the integration and negotiation of imaginaries in participatory modelling practices in the Magdalena river. Fourthly, I explore contesting and alternative imaginaries and look at how these are mobilised in climate change adaptation for the Magdalena and Meuse river. Multiple concepts stemming from Science and Technology Studies and Political Ecology will guide me to theorise the case study findings. Finally, I reflect on my own positionality in action-research which will be an iterative process of learning and unlearning while navigating between the natural and social sciences.

Lopend