The 4th Industrial Revolution—The Future of Design Research and Doctoral Programs

Author(s):  
Maria João Félix ◽  
Fernando Moreira da Silva
2018 ◽  
Vol 1 (3) ◽  
pp. 15-22
Author(s):  
Nemailal Tarafder

The fundamentals of nanotechnology lie in the fact that the properties of materials drastically change when their dimensions are reduced to nanometer scale. Nanotextiles can be produced by a variety of methods. The use of nanotechnology in the textile industry has increased rapidly due to its unique and valuable properties. Changed or improved properties with nanotechnology can provide new or enhanced functionalities. Nanotechnology is a growing interdisciplinary technology and seen as a new industrial revolution. The future success of nanotechnology in textile applications lies in the areas where new principles will be combined into durable and multi-functional textile systems without compromising the inherent properties. The advances in nanotechnology have created enormous opportunities and challenges for the textile industry, including the cotton industry.


2021 ◽  
pp. 103530462110147
Author(s):  
Mark Dean ◽  
Al Rainnie ◽  
Jim Stanford ◽  
Dan Nahum

This article critically analyses the opportunities for Australia to revitalise its strategically important manufacturing sector in the wake of the COVID-19 pandemic. It considers Australia’s industry policy options on the basis of both advances in the theory of industrial policy and recent policy proposals in the Australian context. It draws on recent work from The Australia Institute’s Centre for Future Work examining the prospects for Australian manufacturing renewal in a post-COVID-19 economy, together with other recent work in political economy, economic geography and labour process theory critically evaluating the Fourth Industrial Revolution (i4.0) and its implications for the Australian economy. The aim of the article is to contribute to and further develop the debate about the future of government intervention in manufacturing and industry policy in Australia. Crucially, the argument links the future development of Australian manufacturing with a focus on renewable energy. JEL Codes: L50; L52; L78; O10; O13: O25; O44; P18; Q42


Author(s):  
Natasha Kurnia Tishani ◽  
Rudy Trisno

The advancement of technology in the world is marked by the industrial revolution event. Indonesia has entered the era of the industrial revolution 4.0. This incident affects the way society dwell, slowly our lives have been dominated by technology and it is possible that in the future humans will be replaced by robots. We must developing soft skills that cannot be replaced by robots through our education. Indonesia’s education itself does not prepare the next generation to deal with this event. Starting from outdated curriculum,  teachers who are afraid to explore in teaching to school buildings that still adhere to the school system in the 19th century. The study of the discussion is how human dwell in the future in this case is to study, namely primary school buildings, which can accommodate teaching and learning activities with a curriculum that suits future needs. The design method used is in form of design stages, starting from Area Analysis; Investigation of selected sites; Proposed Program;  Design Analysis: Composition of mass and the concept of mass of buildings using the Metaphor Method; Project Zoning; Application of Pattern Language Methods and Structure and Building Materials. The result of this research is an elementary school architectural building that accmodate 21st century learning. Keywords:  creativity; education; metaphorical architecture; pattern langugae;primary school  Abstrak Kemajuan teknologi didunia ditandai dengan adanya peristiwa revolusi industri. Indonesia telah memasuki era revolusi industri 4.0. Peristiwa ini memengaruhi cara masyarakat berhuni, secara perlahan kehidupan kita telah didominasi dengan teknologi dan tidak menutup kemungkinan dimasa depan manusia akan digantikan dengan robot. Lalu, bagaimana kita sebagai manusia menghadapi ini ? yaitu mengembangkan softskill yang tidak bisa digantikan oleh robot melalui pendidikan kita. Pendidikan Indonesia tidak menyiapkan generasi selanjutnya untuk menghadapi perisitiwa ini. Berawal dari kurikulum yang sudah usang, lalu para guru yang takut untuk bereksplorasi dalam mengajar hingga bangunan sekolah yang masih menganut sistem sekolah di abad-19. Lingkup pembahasan laporan ini adalah bagaimana wadah berhuni manusia dimasa depan yaitu kegiatan menuntut ilmu, yaitu bangunan sekolah dasar, yang dapat mewadahi kegiatan pembelajaran dengan kurikulum masa depan. Metode perancangan yang digunakan adalah; a) Analisis Kawasan; b) Investigasi tapak terpilih; c) Usulan program; d) Analisis Perancangan : Gubahan massa dan Konsep Massa bangunan dengan Metode Arsitektur Metafora; d) Penzoningan Pada Proyek; e) Penerapan Metode Bahasa Pola dan f) Struktur dan Material Bangunan. Hasil akhir dari penelitian ini berupa bangunan arsitektur sekolah dasar yang mewadahi kegiatan pembelajaran abad-21.


10.28945/4665 ◽  
2020 ◽  
Vol 15 ◽  
pp. 685-704
Author(s):  
Patrícia Silva Santos ◽  
Maria Teresa Patrício

Aim/Purpose: This article examines the experience and practice of doctoral students by focusing on different dimensions of the PhD socialization process. It addresses the question of whether university collaborations with businesses influence the experience and practice of PhD students. Background: The study explores the academic culture in the PhD process through the analysis of the experiences and practices of doctoral students in two groups – those without business collaborations (academic trajectories) and those with business collaborations (hybrid trajectories). Academic trajectories are seen as traditional academic disciplinary based doctoral education, while hybrid trajectories cross boundaries collaborating with companies in the production of new knowledge. Methodology: The article uses a qualitative methodology based on extensive interviews and analysis of the curriculum vitae of fourteen Portuguese PhD students in three scientific domains (engineering and technology sciences, exact sciences, and social sciences). The doctoral program profiles were defined according to a survey applied to the directors of all doctoral programs in Portugal. Contribution: The study contributes to the reflection on the effects of collaboration with companies, in particular on the trajectories and experiences of doctoral students. It contributes to the understanding of the challenges associated with business collaborations. Findings: Some differences were found between academic and hybrid trajectories of doctoral students. Traditional products such as scientific articles are the main objective of the PhD student, but scientific productivity is influenced by trajectory and ultimately by career prospects. The business culture influences the trajectories of doctoral students with regard to outputs such as publishing that may act as a barrier to academic culture. PhD students with academic trajectories seem to value international experiences and mobility. Minor differences were found in the choice of topic and type of research activity, revealing that these dimensions are indicative of the scientific domain. Both hybrid and academic students indicate that perceptions of basic and applied research are changing with borders increasingly blurred. Recommendations for Practitioners: It is important for universities, department chairs, and PhD coordinators to be concerned with the organisation, structure, and success of doctoral programs. Therefore, it is useful to consider the experiences and trajectories of PhD students involved with the business sector and to monitor the relevance and results of such exchange. Key points of contact include identifying academic and business interests, cultures, and practices. A student-centred focus in university-business collaboration also can improve students’ well-being in this process. Recommendation for Researchers: Researchers should consider the processes of interaction and negotiation between academic and business sectors and actors. It is important to understand and analyse the trajectories and experiences of PhD students in doctoral programs and in university-company collaborations, since they are the central actors. Impact on Society: This analysis is relevant to societies where policy incentives encourage doctoral programs to collaborate with companies. The PhD is an important period of socialization and identity formation for researchers, and in this sense the experiences of students in the context of collaboration with companies should be analyzed, including its implications for the professional identity of researchers and, consequently, for the future of science inside and outside universities. Future Research: More empirical studies need to explore these processes and relationships, including different national contexts and different scientific fields. Other aspects of the academic and business trajectory should be studied, such as the decision to pursue a PhD or the focus on perceptions about the future career. Another point that deserves to be studied is whether a broader set of experiences increases the recognition and appreciation of the doctoral degree by employers inside and outside the academy.


2020 ◽  
Vol 8 (5) ◽  
pp. 4204-4208

The technologies of the future society can make a super connective society where everything is connected and organically interacted, and it promotes “Hyper-Connected”, “Hyper-Intelligent”, "Hyper-Real" as it is possible to become intellectual by techniques such as artificial intelligence and big data analysis. To find out the key triggers by extracting the technologies with these characteristics and identifying what factors and forms are used allows us to grasp changes in the industry due to the rapidly changing domestic environment and the influence of innovation technologies. According to the analysis, the key triggers of major technologies in information society are keywords such as security, technology, service, virtual, and finance which have a great chance to converge with other technologies. The implications of this study are as follows. First, key technologies of domestic information society were identified based on a huge amount of reliable news data. In addition, Network Analysis based on Data, which has increased the frequency of studies all over the field including computer science, sociology and business administration, is applied to predicting the future. Based on this, the methodology has been proposed that can be used to predict the pattern of technology development or notable technologies in the future. This study wasn’t conducted only on one detailed technology, but comprehensively on major technologies extracted in the era of 4th Industrial Revolution and presents Black Swan Prediction to enhance competitiveness of domestic industry in related technologies and create new added value.


Author(s):  
Stefano Rossi ◽  
Francesca Russo

Porcelain enamel coatings have their origins in ancient times when they were mainly used for decorative and ornamental purposes. From the industrial revolution onwards, these coatings have started to be used also as functional layers, ranging from home applications up to the use in high-technological fields, such as in chemical reactors. The excellent properties of enamel coatings, such as fire resistance, protection of the substrate from corrosion, resistance to atmospheric and chemical degradation, mainly depend and originate from the glassy nature of the enamel matrix itself. On the other side, the vitreous nature of enamel coatings limits their application in many fields, where mechanical stress and heavy abrasion phenomena could lead to nucleation and propagation of cracks inside the material, thus negatively affecting the protective properties of this coating. Many efforts have been made to improve the abrasion resistance of enamelled materials. On this regard, researchers showed encouraging results and proposed many different improvement approaches. Now it is possible to obtain enamels with enhanced resistance to abrasion. Differently, the investigation of the mechanical properties of enamel coatings remains a poorly studied topic. In the literature, there are interesting methodological ideas, which could be successfully applied to the mechanical study of enamelled materials and could allow to have further insights on their behaviour. Thus, the path that should be followed in the future includes the mechanical characterization of these coatings and the search for new solutions to address their brittle behaviour.


Author(s):  
Yelyzaveta Snitko ◽  
Yevheniia Zavhorodnia

The development of a modern economy, in the context of the fourth industrial revolution, is impossible without the accumulation and development of human capital, since the foundation of the transformation of the economic system in an innovative economy is human capital. In this regard, the level of development and the efficiency of using human capital are of paramount importance. This article attempts to assess the role of human capital in the fourth industrial revolution. In the future, human talent will play a much more important role in the production process than capital. However, it will also lead to a greater division of the labor market with a growing gap between low-paid and high-paid jobs, and will contribute to an increase in social tensions. Already today, there is an increase in demand for highly skilled workers, especially in high-income countries, with a decrease in demand for workers with lower skills and lower levels of education. Analysis of labor market trends suggests that the future labor market is a market where there is simultaneously a certain demand for both higher and lower skills and abilities, combined with the devastation of the middle tier. The fourth industrial revolution relies heavily on the concept of human capital and the importance of finding complementarity between human and technology. In assessing the impact of the fourth industrial revolution, the relationship between technology, economic growth and human resources was examined. The analysis was carried out in terms of three concepts of economic growth, technological change and human capital. Human capital contributes to the advancement of new technologies, which makes the concept of human capital an essential factor in technological change. The authors emphasize that the modern economy makes new demands on workers; therefore it is necessary to constantly accumulate human capital, develop it through continuous learning, which will allow the domestic economy to enter the trajectory of sustainable economic growth. The need to create conditions for a comprehensive increase in the level of human capital development is noted.


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