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11 – 20 of over 4000William Gerard Ryan, Alex Fenton, Wasim Ahmed and Phillip Scarf
The purpose of this research is to explore and define the digital maturity of events using the Industry 4.0 model (I4.0) to create a definition for Events 4.0 (E4.0) and to place…
Abstract
Purpose
The purpose of this research is to explore and define the digital maturity of events using the Industry 4.0 model (I4.0) to create a definition for Events 4.0 (E4.0) and to place various relevant technologies on a scale of digital maturity.
Design/methodology/approach
In a mixed methods approach, we carried out a qualitative social media analysis and a quantitative survey of tourism and events academics. These surveys and the thorough literature review that preceded them allowed us to map the digital technologies used in events to levels of a digital maturity model.
Findings
We found that engagement with technology at events and delegate knowledge satisfactorily coexists for and across a number of different experiential levels. However, relative to I4.0, event research and the events industry appear to be digitally immature. At the top of the digital maturity scale, E4.0 might be defined as an event that is digitally managed; frequently upgrades its digital technology; fully integrates its communication systems; and optimizes digital operations and communication for event delivery, marketing, and customer experience. We expect E4.0 to drive further engagement with digital technologies and develop further research.
Originality/value
This study has responded to calls from the academic literature to provide a greater understanding of the digital maturity of events and how events engage with digital technology. Furthermore, the research is the first to introduce the concept of E4.0 into the academic literature. This work also provides insights for events practitioners which include the better understanding of the digital maturity of events and the widespread use of digital technology in event delivery.
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Muhammad Mujtaba Asad and Safdar Hussain
Education 4.0 is one of the major transformations in the field of education to improve the quality of teaching and learning processes and prepare students as 21st-century…
Abstract
Purpose
Education 4.0 is one of the major transformations in the field of education to improve the quality of teaching and learning processes and prepare students as 21st-century learners. This study aims to examine the effect of Educations 4.0 on creative and collaborative learning of students.
Design/methodology/approach
In this correlational research study, a quantitative data collection tool such as a questionnaire is used. This research is conducted on university students (N = 365), and purposive sampling technique is used to achieve the purpose. Statistical Package for Social Sciences (SPSS) version 27.0 is used to analyze the data.
Findings
The findings of the study reveal that there is a strong positive relationship between education 4.0 and the two major 21st-century skills, i.e. collaboration and creativity. The value of correlation coefficient value of the variables is 0.597, which indicates positive and strong relationship; hence, null hypothesis is rejected and an alternative hypothesis is accepted.
Practical implications
The results of the current study are beneficial for the school managers to enhance students' two significant 21st-century skills, i.e. “Creativity” and “Collaboration.” Also, the school managers can make efforts to develop teachers' competence to adapt the technological advancements for improving students' creativity and collaboration to benefit their learning.
Originality/value
This is a unique study because there are only a few recent studies that show a connection between Education 4.0 and 21st-century skills. Also, there is no other study that presents the direct association of Education 4.0 and students' creativity and collaboration specifically in the context of Pakistan.
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Blesson Varghese and Gerard McKee
The purpose of this paper is to address a classic problem – pattern formation identified by researchers in the area of swarm robotic systems – and is also motivated by the need…
Abstract
Purpose
The purpose of this paper is to address a classic problem – pattern formation identified by researchers in the area of swarm robotic systems – and is also motivated by the need for mathematical foundations in swarm systems.
Design/methodology/approach
The work is separated out as inspirations, applications, definitions, challenges and classifications of pattern formation in swarm systems based on recent literature. Further, the work proposes a mathematical model for swarm pattern formation and transformation.
Findings
A swarm pattern formation model based on mathematical foundations and macroscopic primitives is proposed. A formal definition for swarm pattern transformation and four special cases of transformation are introduced. Two general methods for transforming patterns are investigated and a comparison of the two methods is presented. The validity of the proposed models, and the feasibility of the methods investigated are confirmed on the Traer Physics and Processing environment.
Originality/value
This paper helps in understanding the limitations of existing research in pattern formation and the lack of mathematical foundations for swarm systems. The mathematical model and transformation methods introduce two key concepts, namely macroscopic primitives and a mathematical model. The exercise of implementing the proposed models on physics simulator is novel.
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Jason McGrath and John Fischetti
The digital technological revolution offers new ways for classrooms to operate and challenges the concept of whether brick and mortar schools should exist at all. At the same…
Abstract
The digital technological revolution offers new ways for classrooms to operate and challenges the concept of whether brick and mortar schools should exist at all. At the same time, the changes to society as we move from a knowledge-based economy to an intelligent and innovation-based economy challenges us to reassess the purpose of education. This chapter investigates an overarching counterfactual question, “What if compulsory schooling was invented in the twenty-first century”? We used a foresight methodology, based on “anticipation,” to conceptualize possible models for a future system of compulsory schooling arising from an analysis of contemporary catalysts for remodeling. While anticipation does not predict the future, the concept is that when a current system and a model of a system interplay, they impact each other to change both the present as well as possible futures. The design principles of cities, such as Freiburg (Germany), Poundbury (England), and Christie Walk (Australia), which have been developed around the idea of ecologically sustainable and decentralized cities, are focused on approaches to living that can provide a springboard for exploring the impact of changing employment, economic, technological, and social change on future schooling models. Magnetic Resonance Imaging (MRI) has opened up a new field of study to investigate neuroscience, which can inform teaching practice. Postmodern and indigenous ways of thinking provide different insights about how schooling might be reconceptualized. Alternative models of future schooling are conceptualized about (i) the role of the learner and teacher, (ii) design of a school, and (iii) the purpose of compulsory schooling. For each area of remodeling, deviations to current practices as well as paradigm shifts are framed as part of scenario building. Related questions include: how schooling might be different if it had been created today for the first time? How might it better meet the needs of contemporary society? What aspects of schooling now might be lost if it was only invented in the twenty-first century? What are possible side effects from any change ideas as part of research practice? A vital aspect of this chapter is to explore the concept of learning as a general concept versus the more specific concept of schooling. We are at the precipice of a new vision of schooling based on a counterfactual way of thinking about the future of schooling as we have known it in the West.
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Huosheng Hu, Lixiang Yu, Pui Wo Tsui and Quan Zhou
Today’s Internet technology provides a convenient way for us to develop an integrated network environment for the diversified applications of different robotic systems. To be…
Abstract
Today’s Internet technology provides a convenient way for us to develop an integrated network environment for the diversified applications of different robotic systems. To be successful in real‐world applications, Internet‐based robots require a high degree of autonomy and local intelligence to deal with the restricted bandwidth and arbitrary transmission delay of the Internet. This paper describes the first step toward building such an Internet‐based robotic system for teleoperation in the University of Essex. The system has a standard network protocol and an interactive human‐machine interface. Using a Web browser, a remote operator can control the mobile robot to navigate in our laboratory with visual feedback and a simulated environment map via the Internet. The employment of an intuitive user interface enables Internet users to control the mobile robot and implement useful tasks remotely. Although at its first stage, the developed system has the potential to be extended to many real‐world applications such as tele‐manufacturing, tele‐training and tele‐service.
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Given the recent growth of service robot research in hospitality and tourism management (HTM), the purpose of this study is to identify a research agenda by conducting a…
Abstract
Purpose
Given the recent growth of service robot research in hospitality and tourism management (HTM), the purpose of this study is to identify a research agenda by conducting a systematic and holistic review of service robot research published in both HTM and broader business management (BM) journals.
Design/methodology/approach
Adopting a service ecosystem perspective, 38 HTM articles and 13 highly cocited BM articles out of 126 BM articles were qualitatively reviewed to analyze the intellectual structures and foundations of robotics research.
Findings
The relationships between service robots and the four multilevel actors of the service ecosystem were analyzed: the consumer, employee, management and society. Twenty-eight specific research questions were proposed for the robotics-customer relationship, robotics-employee relationship, robotics-management relationship and robotics-society relationship.
Research limitations/implications
This study contributes to understanding the intellectual structures and evolution of rapidly growing HTM robotics research in terms of the holistic relationships among the four service ecosystem actors of robotics. Future research needs to identify other actors and their activities to examine the service ecosystem of robotics.
Originality/value
This study provides a pathway for future hospitality and tourism research by helping to focus on important robotics issues and further develop the theoretical and empirical knowledge of robotics. This work informs practitioners of key issues associated with the industrial adoption of robots.
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Rahul S Mor, Dinesh Kumar, Anupama Singh and K. Neethu
Improved production with quality, safety, and security is the biggest challenge of the food industry. Modern technologies, including robotics and automation systems, can help to…
Abstract
Improved production with quality, safety, and security is the biggest challenge of the food industry. Modern technologies, including robotics and automation systems, can help to cope with such issues. This chapter gives a brief view of robotics and automation for the sustainable food industry along with packaging, warehousing, distribution, marketing, and consumer services. It describes the recently implemented solutions of robotic automation in different supply chain operations and various food commodities. The benefits of robotic and automation technology for perishable and semi-perishable items have also been covered. The present research may assist the food industry professionals, supply chain managers, and academicians in implementing automation and robotics in the food industry.
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