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Technology
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Harmonious Technology : A Confucian Ethics of Technology
Technology has become a major subject of philosophical ethical reflection in recent years, as the novelty and disruptiveness of technology confront us with new possibilities and unprecedented outcomes as well as fundamental changes to our "normal" ways of living that demand deep reflection of technology.However, philosophical and ethical analysis of technology has until recently drawn primarily from the Western philosophical and ethical traditions, and philosophers and scholars of technology discuss the potential contribution of non-Western approaches only sparingly.Given the global nature of technology, however, there is an urgent need for multiculturalism in philosophy and ethics of technology that include non-Western perspectives in our thinking about technology.While there is an increased attention to non-Western philosophy in the field, there are few systematic attempts to articulate different approaches to the ethics of technology based on other philosophical and ethical traditions.The present edited volume picks up the task of diversifying the ethics of technology by exploring the possibility of Confucian ethics of technology.In the six chapters of this volume, the authors examine various ideas, concepts, and theories in Confucianism and apply them to the ethical challenges of technology; in the epilogue, the editors review the key ideas articulated throughout the volume to identify possible ways forward for Confucian ethics of technology.Harmonious Technology revives Confucianism for philosophical and ethical analysis of technology and presents Confucian ethics of technology as another approach to the ethics of technology.It will be essential for philosophers and ethicists of technology, who are urged to consider beyond the Western paradigms.More broadly, the volume will be of interest to students and scholars in the fields of philosophy, science and technology studies, innovation studies, political science, and social studies.
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Conservation Technology
The global loss of biodiversity is occurring at an unprecedented pace.Despite the considerable effort devoted to conservation science and management, we still lack even the most basic data on the distribution and density of the majority of plant and animal species, which in turn hampers our efforts to study changes over time.In addition, we often lack behavioural data from the very animals most influenced by environmental changes; this is largely due to the financial and logistical limitations associated with gathering scientific data on species that are cryptic, widely distributed, range over large areas, or negatively influenced by human presence.To overcome these limitations, conservationists are increasingly employing technology to facilitate such data collection.Innovative solutions have been driven by dramatic advances in the conservation-technology interface.The use of camera traps, acoustic sensors, satellite data, drones, and computer algorithms to analyse the large datasets collected are all becoming increasingly widespread.Although specialist books are available on some of these individual technologies, this is the first comprehensive text to describe the breadth of available technology for conservation and to evaluate its varied applications, bringing together a team of international experts using a diverse range of approaches.Conservation Technology is suitable for graduate level students, professional researchers, practitioners and field managers in the fields of ecology and conservation biology.
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Feminist Technology
Is there such a thing as a "feminist technology"? If so, what makes a technology feminist? Is it in the design process, in the thing itself, in the way it is marketed, or in the way it is used by women (or by men)?In this collection, feminist scholars trained in diverse fields consider these questions by examining a range of products, tools, and technologies that were specifically designed for and marketed to women.Evaluating the claims that such products are liberating for women, the contributors focus on case studies of menstrual-suppressing birth control pills, home pregnancy tests, tampons, breast pumps, Norplant, anti-fertility vaccines, and microbicides.In examining these various products, this volume explores ways of actively intervening to develop better tools for designing, promoting, and evaluating feminist technologies.Recognizing the different needs and desires of women and acknowledging the multiplicity of feminist approaches, Feminist Technology offers a sustained debate on existing and emergent technologies that share the goal of improving women's lives. Contributors are Jennifer Aengst, Maia Boswell-Penc, Kate Boyer, Frances Bronet, Shirley Gorenstein, Anita Hardon, Deborah G.Johnson, Linda L. Layne, Deana McDonagh, and Sharra L. Vostral.
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Should I learn wood technology or carpentry technology?
The decision between learning wood technology or carpentry technology depends on your interests and career goals. Wood technology focuses on the science and engineering of wood materials, including processing, preservation, and utilization. This field is more research and industry-oriented, with opportunities in manufacturing, product development, and quality control. On the other hand, carpentry technology is more hands-on and practical, focusing on the skills and techniques needed for construction and woodworking projects. If you are more interested in the technical and scientific aspects of wood, then wood technology may be the better choice. However, if you enjoy working with your hands and want to pursue a career in construction or woodworking, then carpentry technology may be the better fit for you.
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Is induction technology more durable than ceramic glass technology?
Induction technology is generally considered more durable than ceramic glass technology. This is because induction cooktops are made with a tough glass-ceramic material that can withstand high temperatures and is less prone to scratches and cracks. Additionally, induction cooktops have fewer parts that can wear out over time compared to ceramic glass cooktops, making them more reliable in the long run. Overall, induction technology is known for its durability and longevity compared to ceramic glass technology.
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After the emerging quantum technology, which technology will follow?
After the emerging quantum technology, it is likely that the next big technology will be in the field of artificial intelligence and machine learning. As quantum computing becomes more advanced and accessible, it will enable the development of more powerful AI algorithms and systems. This could lead to significant advancements in areas such as autonomous vehicles, healthcare, and robotics. Additionally, there may also be a focus on biotechnology and genetic engineering as the next frontier in technological innovation.
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Why do Germans prefer creamy and mild over spicy and flavorful?
Germans tend to prefer creamy and mild flavors over spicy and flavorful ones due to their traditional culinary preferences. German cuisine often features dishes that are hearty and comforting, with a focus on simple and wholesome ingredients. Creamy and mild flavors are seen as more comforting and familiar, appealing to a wider range of palates. Additionally, the German palate tends to prioritize balance and subtlety in flavors, rather than bold and intense tastes.
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Concrete Technology
The success of any concrete structure depends on the designer’s sound knowledge of concrete and its behaviour under load, under temperature and humidity changes, and under exposure to the relevant environment and industrial conditions. This book gives students a thorough understanding of all aspects of concrete technology from first principles.It covers concrete ingredients, properties and behaviour in the finished structure with reference to national standards and recognised testing methods used in Britain, the European Union and the United States.Examples and problems are given throughout to emphasise the important aspects of each chapter. An excellent coursebook for all students of Civil Engineering, Structural Engineering and Building at degree or diploma level, Concrete Technology will also be a valuable reference book for practising engineers in the field.
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Fertility Technology
A concise overview of fertility technology—its history, practical applications, and ethical and social implications around the world. In the late 1850s, a physician in New York City used a syringe and glass tube to inject half a drop of sperm into a woman’s uterus, marking the first recorded instance of artificial insemination.From that day forward, doctors and scientists have turned to technology in ever more innovative ways to facilitate conception.Fertility Technology surveys this history in all its medical, practical, and ethical complexity, and offers a look at state-of-the-art fertility technology in various social and political contexts around the world. Donna J. Drucker’s concise and eminently readable account introduces the five principal types of fertility technologies used in human reproduction—artificial insemination; ovulation timing; sperm, egg, and embryo freezing; in vitro fertilization; and IVF in uterine transplants—discussing the development, manufacture, dispersion, and use of each.Geographically, it focuses on countries where innovations have emerged and countries where these technologies most profoundly affect individuals and population policies.Drucker’s wide-ranging perspective reveals how these technologies, used for birth control as well as conception in many cases, have been critical in shaping the moral, practical, and political meaning of human life, kinship, and family in different nations and cultures since the mid-nineteenth century.
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Materials Technology
Materials Technology clearly identifies materials and technology as the fundamental generators of buildings and examines how they determine the structure, overall form and quality.It examines the issues that determine the choice of materials, and argues that the decision-making of architects, engineers and designers should take account of the environmental impact of sourcing the basic materials, and of the energy implications of their processing and use in manufacturing. Materials Technology is an essential resource for Materials Technology units in building, architecture and surveying degree and postgraduate courses; and students of BTEC HNC/D building and surveying.It will also be a useful reference tool for Advanced GNVQ Construction and the Built Environment courses and Built Environment NVQs at levels 3 and 4.
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Explaining Technology
A long tradition explains technological change as recombination.Within this tradition, this Element develops an innovative combinatorial model of technological change and tests it with 2,000 years of global GDP data and with data from US patents filed between 1835 and 2010.The model explains 1) the pace of technological change for a least the past two millennia, 2) patent citations and 3) the increasing complexity of tools over time.It shows that combining and modifying pre-existing goods to produce new goods generates the observed historical pattern of technological change.A long period of stasis was followed by sudden super-exponential growth in the number of goods.In this model, the sudden explosion of about 250 years ago is a combinatorial explosion that was a long time in coming, but inevitable once the process began at least two thousand years ago.This Element models the Industrial Revolution as a combinatorial explosion.
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What is the complexity of semiconductor technology or microsystems technology?
The complexity of semiconductor technology or microsystems technology is high due to the intricate processes involved in designing, manufacturing, and integrating tiny electronic components. These technologies require precise control at the nanoscale level, involving complex materials, intricate fabrication techniques, and sophisticated equipment. Additionally, the rapid pace of innovation and the need for continuous improvement in performance and miniaturization add to the complexity of these technologies. As a result, semiconductor and microsystems technology require significant expertise, resources, and investment to develop and produce advanced electronic devices.
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Is there a difference between IT technology and information technology?
The terms IT technology and information technology are often used interchangeably, but there is a subtle difference between the two. IT technology typically refers to the hardware and software used to manage and process data within an organization, such as computers, servers, and networking equipment. On the other hand, information technology encompasses a broader scope, including the management and use of information systems to support business operations and decision-making. In essence, IT technology is a subset of information technology, focusing specifically on the technology aspect of managing information.
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Why do Germans prefer creamy and mild instead of spicy and flavorful?
Germans tend to prefer creamy and mild flavors over spicy and flavorful ones due to their traditional culinary preferences. Creamy and mild dishes are often associated with comfort and familiarity in German cuisine. Additionally, the German palate tends to favor subtle and balanced flavors rather than bold and intense ones. This preference for creamy and mild dishes may also be influenced by the availability of ingredients and the influence of neighboring European cuisines.
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Does man have to master technology or does technology master man?
The relationship between man and technology is complex and constantly evolving. While technology has the potential to empower and enhance human capabilities, it also has the power to control and influence human behavior. Ultimately, it is up to man to master technology by using it responsibly and ethically, and ensuring that it serves the best interests of humanity. However, if not managed carefully, technology has the potential to master man by shaping our behaviors, thoughts, and even our societal structures. Therefore, it is important for individuals and society as a whole to actively engage with and understand technology in order to maintain control over its impact on our lives.
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