142,907 research outputs found

    Man and Machine: Questions of Risk, Trust and Accountability in Today's AI Technology

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    Artificial Intelligence began as a field probing some of the most fundamental questions of science - the nature of intelligence and the design of intelligent artifacts. But it has grown into a discipline that is deeply entwined with commerce and society. Today's AI technology, such as expert systems and intelligent assistants, pose some difficult questions of risk, trust and accountability. In this paper, we present these concerns, examining them in the context of historical developments that have shaped the nature and direction of AI research. We also suggest the exploration and further development of two paradigms, human intelligence-machine cooperation, and a sociological view of intelligence, which might help address some of these concerns.Comment: Preprin

    A précis of philosophy of computing and information technology

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    The authors recently finished a comprehensive chapter on “Philosophy of Computing and Information Technology” for the forthcoming (fall 2009) Philosophy of Technology and Engineering Sciences (Ed.: A. Meijers), Volume IX in the Elsevier series Handbook of the Philosophy of Science (Eds.: D. Gabbay, P. Thagard and J. Woods). The purpose of the chapter is to review and discuss the main developments, concepts, topics, and contributors in the intersection between philosophy and computing, as well as provide some suggestions on how to structure the many subcategories within what is loosely referred to as philosophy of computing. In this short synopsis, we will give an outline of the kinds of issues raised in this chapter

    Ethical Issues in Network System Design

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    Today, most desktop computers and PCs are networked that is, they have the ability to link to other machines, usually to access data and other information held remotely. Such machines may sometimes be connected directly to each other, as part of an office or company computer system. More frequently, however, connected machines are at a considerable distance from each other, typically connected through links to global systems such as the Internet, or WorldWideWeb (WWW). The networked machine itself may be anything from a powerful company computer with direct Internet connections, to a small hobbyist machine, accessing a bulletin board through telephone and modem. It is important to remember that, whatever the type or the location of networked machines, their access to the network, and the network itself, was planned and constructed following deliberate design considerations. In this paper I discuss some ways in which the technical design of computer systems might appropriately be influenced by ethical issues, and examine pressures on computer scientists and others to technically control networkrelated actions perceived as 'unethical'. After examination of the current situation, I draw together the issues, and conclude by suggesting some ethically based recommendations for the future design of networked systems

    Ethics of Artificial Intelligence

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    Artificial intelligence (AI) is a digital technology that will be of major importance for the development of humanity in the near future. AI has raised fundamental questions about what we should do with such systems, what the systems themselves should do, what risks they involve and how we can control these. - After the background to the field (1), this article introduces the main debates (2), first on ethical issues that arise with AI systems as objects, i.e. tools made and used by humans; here, the main sections are privacy (2.1), manipulation (2.2), opacity (2.3), bias (2.4), autonomy & responsibility (2.6) and the singularity (2.7). Then we look at AI systems as subjects, i.e. when ethics is for the AI systems themselves in machine ethics (2.8.) and artificial moral agency (2.9). Finally we look at future developments and the concept of AI (3). For each section within these themes, we provide a general explanation of the ethical issues, we outline existing positions and arguments, then we analyse how this plays out with current technologies and finally what policy conse-quences may be drawn

    Online consultation on experts’ views on digital competence

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    The objective of this investigation was to provide another perspective on what it means to be digitally competent today, in addition to reviews of literature and current frameworks for the development of digital competence, 5 all of which constitute part of the wider IPTS Digital Competence Project (DIGCOMP). Some common ground exists at a general level in defining digital competence in terms of knowledge, skills, and attitudes, which may be hierarchically organised. However, this does not provide the clarity needed by teachers, employers, citizens – all those who are responsible for digital competence development, be it their own or other people’s ‐ to make informed decisions. Further work is needed to create a common language that helps to enhance understanding across the worlds of research, education, training, and work. This will make it easier for citizens and employers to see what digital competence entails and how it is relevant to their jobs and more generally, their lives

    Information in the Context of Philosophy and Cognitive Sciences

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    This textbook briefly maps as many as possible areas and contexts in which information plays an important role. It attempts an approach that also seeks to explore areas of research that are not commonly associated, such as informatics, information and library science, information physics, or information ethics. Given that the text is intended especially for students of the Master's Degree in Cognitive Studies, emphasis is placed on a humane, philosophical and interdisciplinary approach. It offers rather directions of thought, questions, and contexts than a complete theory developed into mathematical and technical details

    Digital exclusion in later life : a Maltese case-study

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    Information and communication technologies (ICTs) are driving profound changes in the way in which individuals, organizations and governments interact. In particular, the internet has been a major force behind the development towards a more globalized, knowledge-based economy. However, in terms of computer access and internet usage, a digital divide between the ‘haves’ and the ‘have nots’ has long been recognized. One key sector of non-users consists of older persons. For various reasons – including no exposure to computers over their lifetime and in their occupations, income levels, physical disability and access to affordable ICT training – only limited percentages of older people have adequate ICT skills. A growing concern is that older adults who do not engage with ICTs face social disadvantages and exclusion. This article reports upon a qualitative study on older non-users of ICTs, with its key goal being to understand what leads to, and the effects of, digital exclusion in later life. Results found that older persons who never made use of ICTs were significantly delineated by gender and socio-economic status patterns - namely, women (especially housewives, who had never been in paid employment), individuals who worked in blue-collar and working-class occupations, and the long-term unemployed. Data also demonstrated that access was not the main issue at hand, and that the failure of older adults to become digital citizens was the result of a continuum of overlapping barriers. This study provided information highlighting the rationales and motivations underlying individuals’ non-use of computers - namely, believing that they were now ‘too old’ to use new technologies, a lack of relevance or ‘life-fit’ of computers, perceived non-usefulness and difficulty to use, anxiety about computer usage, concern about security and privacy issues, and the facing of disability issues.N/

    Exploring the tension and synergies between science and technology in science education

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    This chapter explores the way in which technology has been introduced through and by science educators in Australasia in the last 25 years. A number of themes have arisen in this time from using technology to engage students in science, exploring the impact of science on society through technology, considerations of the nature of technology in relation to science, and the exploration and development of technology as a subject in its own right. In this process student and teacher perceptions of technology were explored, as well as teacher change and the influence of teacher/ subject culture through to sustained classroom research and school change and the way in which the introduction of a new subject like technology can influence our thinking around science
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