Article

Empowering computer science scholarship: the role of Computer Science and Engineering Research

Authors:
To read the full-text of this research, you can request a copy directly from the author.

Abstract

In the ever-evolving landscape of computer science and engineering, staying abreast of the latest advancements is imperative for both researchers and practitioners. As technology continues to permeate every facet of our lives, the need for a dedicated platform to disseminate cutting-edge research becomes increasingly crucial. Enter Computer Science and Engineering Research (CSER), a premier international peer-reviewed journal committed to advancing the frontiers of knowledge in the field. At CSER, we recognize the dynamic nature of computer science and engineering, encompassing a wide array of topics ranging from cyber-physical systems to computational neuroscience. Our mission is clear, to serve as a catalyst for innovation by providing a platform for researchers, practitioners, and industry professionals to share their latest findings, insights, and methodologies. With a diverse scope that includes but is not limited to cyber-physical systems, artificial intelligence, blockchain technologies, and augmented reality, CSER offers a comprehensive perspective on the multifaceted realm of computer science and engineering. By covering such a broad spectrum of topics, we aim to foster interdisciplinary collaboration and drive forward the collective knowledge base of the field.

No full-text available

Request Full-text Paper PDF

To read the full-text of this research,
you can request a copy directly from the author.

ResearchGate has not been able to resolve any citations for this publication.
Article
Full-text available
Cutting-edge technologies, with a special emphasis on the Internet of Things (IoT), tend to operate as game changers, generating enormous alterations in both traditional and modern enterprises. Understanding multiple uses of IoT has become vital for effective financial management, given the ever-changing nature of organizations and the technological disruptions that come with this paradigm change. IoT has proven to be a powerful tool for improving operational efficiency, decision-making processes, overall productivity, and data management. As a result of the continuously expanding data volume, there is an increasing demand for a robust IT system capable of adeptly handling all enterprise processes. Consequently, businesses must develop suitable IoT architectures that can efficiently address these continually evolving requirements. This research adopts an incremental explanatory approach, guided by the principles of the Preferred Reporting Items for Systematic Reviews and Meta-Analysis (PRISMA). A rigorous examination of 84 research papers has allowed us to delve deeply into the current landscape of IoT research. This research aims to provide a complete and cohesive overview of the existing body of knowledge on IoT. This is accomplished by combining a rigorous empirical approach to categorization with ideas from specialized literature in the IoT sector. This study actively contributes to the ongoing conversation around IoT by recognizing and critically examining current difficulties. This, consequently, opens new research possibilities and promotes future developments in this ever-changing sector.
Article
Full-text available
The recent devastating pandemic has drastically reminded humanity of the importance of constant scientific and technological progress. A strong interdisciplinary dialogue between academic and industrial scientists of various specialties, entrepreneurs, managers and the public is paramount in triggering new breakthrough ideas which often emerge at the interface of disciplines. The following sections, compiled by a highly diverse group of authors, are summarizing recently achieved game-changing leaps in science and technology. The game-changers range from paradigm shifts in scientific theories to make impact over several decades to game-changers that have the potential to change our everyday lives tomorrow. The paper is an interdisciplinary dialogue of relevance for academic interdisciplinary thinkers, large corporations' strategic planners, and top executives alike; it provides a glimpse into what further breakthroughs the future may hold and thereby intends to spark new ideas with its readers.
Article
Full-text available
It is important to have and use standardized terminology and develop a comprehensive common understanding of what is meant by cyber security and cyber security risk given the multidisciplinary nature of cyber security and the pervasiveness of cyber security concerns throughout society. Using expert elicitation methods, collaborating cyber researchers from multiple disciplines and two sectors (academia, government-military) were individually interviewed and asked to define cyber security and cyber security risk. Data-driven thematic analysis was used to identify the most salient themes within each definition, sector, and cyber expert group as a whole with results compared to current standards definitions. Network analysis was employed to visualize the interconnection of salient themes within and across sectors and disciplines. When examined as a whole group, "context-driven," "resilient system functionality," and "maintenance of CIA (confidentiality, integrity, availability)" were the most salient themes and influential network nodes for the definition of cyber security, while "impacts of CIA vulnerabilities," "probabilities of outcomes," and "context-driven" were the most salient themes for cyber security risk. We used this expert elicitation process to develop comprehensive definitions of cyber security (cybersecurity) and cyber security risk that encompass the contextual frameworks of all the disciplines represented in the collaboration and explicitly incorporates human factors as significant cyber security risk factors.
Article
Full-text available
Digital transformation and resultant business model innovation have fundamentally altered consumers’ expectations and behaviors, putting immense pressure on traditional firms, and disrupting numerous markets. Drawing on extant literature, we identify three stages of digital transformation: digitization, digitalization, and digital transformation. We identify and delineate growth strategies for digital firms as well as the assets and capabilities required in order to successfully transform digitally. We posit that digital transformation requires specific organizational structures and bears consequences for the metrics used to calibrate performance. Finally, we provide a research agenda to stimulate and guide future research on digital transformation.
Publisher's note Genesis Publishing Consortium Limited pledges to maintain a neutral stance on jurisdictional claims shown in published maps and institutional affiliations
https://doi.org/10.1016/j.jbusres.2019.09.022 Publisher's note Genesis Publishing Consortium Limited pledges to maintain a neutral stance on jurisdictional claims shown in published maps and institutional affiliations.