Results for ' nano-technology'

999 found
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  1. Nano-time intervals in bio-systems - Their relevance to nano-bio-science and nano-bio-technology.Varanasi Ramabrahmam - 2013 - In Proceedings of 2nd National seminar on New Materials Research and Nanotechnology (NSNMRN2013) held at Department of Physics, Government Arts College, Stone House Hill, OOty-643 002, the Nilagiris District, Tamilnadu, India, between 25-27, September, 201. pp. 172-178.
    The nature and structure of time and time-intervals in physical, chemical and biological systems will be elucidated. The relation and dependence among time, energy and taking place of natural processes will be critically analyzed. The bio-processes taking place in nano-time intervals will be identified. Their relevance to nano-bio-science and nano-bio-technology will be developed and nano-time interval-aspect of nano-sciences and nano-technology will be advanced. -/- .
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  2.  55
    Review of: "Production of nano supercapacitors using nanoparticles (a piezoelectric and ferroelectric material)".Afshin Rashid - 2023 - Qeios 32.
    Production of nano supercapacitors using nanoparticles that can be polarized so that electrical energy can be stored. Nanostructure multilayer technology (solid state) is a known dielectric material used in nano supercapacitors because it is a piezoelectric and ferroelectric material. In this work, by creating passive filters, they provide storage between different types of these electric nano layers. The degree of electrical properties in solid materials (nanosupercapacitors) is very diverse. Based on the amount of resistance (nano (...)
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  3.  41
    Nano-plasmonic and nanoelectronic pattern is one of the miniaturization techniqu.Afshin Rashid - 2024 - Authorea 12.
    nanological gates, in order to design nano-scale computers with dual-scale capabilities. All living biological systems function due to the molecular interactions of different subsystems. Molecular components (proteins and nucleic acids, lipids and carbohydrates, DNA and RNA) can be used as an inspirational strategy on how to design high-performance NEMS and MEMS that have the required features and characteristics. Considered. In addition, analytical and numerical methods are available for dynamic analysis and three-dimensional geometry, bonding and other properties of atoms and (...)
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  4.  40
    Review of: "Nano supercapacitors (supercapacitors or electrochemical nanocapacitors)".Afshin Rashid - 2024 - Qeios 23.
    Nanosupercapacitors, also called electrochemical supercapacitors or nanocapacitors, thus emerge as promising fuel sources with astonishingly fast charge release rates. Incredibly fast charging occurs. Created to improve power execution (high-speed capability), they still depend on similar inherent breakpoints. About the electrical characteristics and the manufacturing process of a nanocapacitor structure using (metalinsulator-carbon-metal nanotube layers). This structure shows high capacitance and the possibility of extremely high integration density due to the unique structure of the nanotubes. Nanoscale patterns and a high aspect ratio (...)
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  5. The MANBRIC-technologies in the forthcoming technological revolution.Leonid Grinin, Anton Grinin & Andrey Korotayev - 2017 - Industry 4.0 - Entrepreneurship and Structural Change in the New Digital Landscape: What is Coming on Along with the Fourth Industrial Revolution:243-261.
    In this chapter, we analyze the relationship between Kondratieff waves and major technological revolutions on the basis of the theory of production principles and production revolutions, and offer some forecasts about the features of the Sixth Kondratieff Wave/the Fourth Industrial Revolution. We show that the technological breakthrough of the Sixth Kondratieff Wave may be interpreted as both the Fourth Industrial Revolution and as the final phase of the Cybernetic Revolution. We assume that the sixth K-wave in the 2030s and 2040s (...)
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  6. Global Technological Perspectives in the Light of Cybernetic Revolution and Theory of Long Cycles.Leonid Grinin & Anton Grinin - 2015 - Journal of Globalization Studies 6 (2):119-142.
    In the present paper, on the basis of the theory of production principles and production revolutions, we reveal the interrelation between K-waves and major technological breakthroughs in history and make some predictions about features of the sixth Kondratieff wave in the light of the Cybernetic Revolution which, we think, started in the 1950s. We assume that the sixth K-wave in the 2030s and 2040s will merge with the final phase of the Cybernetic Revolution (which we call the phase of self-regulating (...)
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  7. Imaginative Value Sensitive Design: Using Moral Imagination Theory to Inform Responsible Technology Design.Steven Umbrello - 2020 - Science and Engineering Ethics 26 (2):575-595.
    Safe-by-Design (SBD) frameworks for the development of emerging technologies have become an ever more popular means by which scholars argue that transformative emerging technologies can safely incorporate human values. One such popular SBD methodology is called Value Sensitive Design (VSD). A central tenet of this design methodology is to investigate stakeholder values and design those values into technologies during early stage research and development (R&D). To accomplish this, the VSD framework mandates that designers consult the philosophical and ethical literature to (...)
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  8.  34
    Review of: "Many types of electrical nano-sensors using CP nanomaterials designed for nano-biological applications".Afshin Rashid - 2024 - Qeios 8 (815_987654):1 _ 2.
    Note: Many types of nanosensors are designed using CP nanomaterials for nanobiological applications. (Conductive surface) The oxidation of conductive polymeric materials is easily altered by redox mechanisms, and the charge transfer properties of these materials are affected by structural parameters, such as diameter and dimensions. CP materials are able to provide sensitive and rapid responses to specific biological and chemical species. Techniques such as chemical polymerization are often used to make CP nanomaterials. Manufacturing strategies can be divided into three categories: (...)
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  9. Ecosophy, Philosophy of Security, New Technologies and the Digital Philosophy.Sarbu Ion - 2017 - In Proceedings of the 13th International Scientific Committee "Strategies XXI". Technologies, Military Applications, Simulations and Resources. Bucharest: "Carol I" National Defence University. pp. 437-443.
    Defining Ecosophy (ecological wisdom) like a contemporary philosophy of survival, security and a sustainable Human Development, terrestrial nature and society, the author of this article approaches the correlation between it and the digital version of security in the context of new technologies. Human survival is in connection with the protection, optimal functioning of the natural environment and the development of human society. Human evolution, physical and psychological (the issues of Anthropoecology, a medical-biological science, deals with them), depends on the natural (...)
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  10. Streaching the notion of moral responsibility in nanoelectronics by appying AI.Robert Albin & Amos Bardea - 2021 - In Robert Albin & Amos Bardea (eds.), Ethics in Nanotechnology Social Sciences and Philosophical Aspects, Vol. 2. Berlin: De Gruyter. pp. 75-87.
    The development of machine learning and deep learning (DL) in the field of AI (artificial intelligence) is the direct result of the advancement of nano-electronics. Machine learning is a function that provides the system with the capacity to learn from data without being programmed explicitly. It is basically a mathematical and probabilistic model. DL is part of machine learning methods based on artificial neural networks, simply called neural networks (NNs), as they are inspired by the biological NNs that constitute (...)
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  11. Chemical Action: What is it and Why Does it Really Matter?W. John Koolage & W. John Koolage & Ralph Hall - 2011 - Journal of Nanoparticle Research 13 (13):1401-1427.
    Nanotechnology, as with many technologies before it, places a strain on existing legislation and poses a challenge to all administrative agencies tasked with regulating technology-based products. It is easy to see how statutory schemes become outdated, as our ability to understand and affect the world progresses. In this article, we address the regulatory problems that nanotechnology posses for the Food and Drug Administration’s (FDA) classification structure for ‘‘drugs’’ and ‘‘devices.’’ The last major modification to these terms was in 1976, (...)
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  12. The Sixth Kondratieff Wave and the Cybernetic Revolution.Leonid Grinin & Anton Grinin - 2016 - Globalistics and Globalization Studies:337-355.
    In the present paper, on the basis of the theory of production principles and production revolutions, we reveal the interrelation between K-waves and major technological breakthroughs in history and make forecasts about features of the sixth Kondratieff wave in the light of the Cybernetic Revolution that, from our point of view, started in the 1950s. We assume that the sixth K-wave in the 2030s and 2040s will merge with the final phase of the Cybernetic Revolution (which we call a phase (...)
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  13. The Cybernetic Revolution and the Forthcoming Epoch of Self-Regulating Systems.Leonid Grinin & Anton L. Grinin - 2016 - Moscow,Russia: "Uchitel" Publishing House.
    The monograph presents the ideas about the main changes that occurred in the development of technologies from the emergence of Homo sapiens till present time and outlines the prospects of their development in the next 30–60 years and in some respect until the end of the twenty-first century. What determines the transition of a society from one level of development to another? One of the most fundamental causes is the global technological transformations. Among all major technological breakthroughs in history the (...)
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  14. Changing the Criminal Character: Nanotechnology and Criminal Punishment.Katrina Sifferd - 2012 - In Daniel Seltzer (ed.), The Social Scale: The Weight of Justice. MIT Press.
    This chapter examines how advances in nanotechnology might impact criminal sentencing. While many scholars have considered the ethical implications of emerging technologies, such as nanotechnology, few have considered their potential impact on crucial institutions such as our criminal justice system. Specifically, I will discuss the implications of two types of technological advances for criminal sentencing: advanced tracking devices enabled by nanotechnology, and nano-neuroscience, including neural implants. The key justifications for criminal punishment- including incapacitation, deterrence, rehabilitation, and retribution – apply (...)
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  15. Imaginative Value Sensitive Design: How Moral Imagination Exceeds Moral Law Theories in Informing Responsible Innovation.Steven Umbrello - 2018 - Dissertation, University of Edinburgh
    Safe-by-Design (SBD) frameworks for the development of emerging technologies have become an ever more popular means by which scholars argue that transformative emerging technologies can safely incorporate human values. One such popular SBD methodology is called Value Sensitive Design (VSD). A central tenet of this design methodology is to investigate stakeholder values and design those values into technologies during early stage research and development (R&D). To accomplish this, the VSD framework mandates that designers consult the philosophical and ethical literature to (...)
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  16. Forthcoming Kondratieff wave, Cybernetic Revolution, and global ageing.Leonid Grinin, Anton Grinin & Andrey Korotayev - 2017 - Technological Forecasting and Social Change 115:52-68.
    In the present article we analyze the relationships between K-waves and major technological breakthroughs in history and offer forecasts about features of the sixth Kondratieff wave. We use for our analysis the basic ideas of long cycles' theory and related theories (theories of the leading sector, technological styles etc.) as well as the ideas of our own theory of production principles and production revolutions. The latest of production revolution is the Cybernetic Revolution that, from our point of view, started in (...)
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  17. Making Philosophy of Science Relevant for Science Students.Henrik Kragh Sørensen - 2012 - Centre for Science Studies, University of Aarhus.
    Since 2004, it has been mandated by law that all Danish undergraduate university programmes have to include a compulsory course on the philosophy of science for that particular program. At the Faculty of Science and Technology, Aarhus University, the responsibility for designing and running such courses were given to the Centre for Science Studies, where a series of courses were developed aiming at the various bachelor educations of the Faculty. Since 2005, the Centre has been running a dozen different (...)
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  18. Structural and Magnetic Properties of Laxsr1-Xmno3.A. A. Gomaa & A. A. Mohamed - 2018 - International Journal of Engineering and Information Systems (IJEAIS) 2 (12):1-4.
    Abstract: Samples of LaxSr1-xMnO3 (x = 0.5, 0.55, 0.6, 0.66, and 0.7) were prepared by the citrate-nitrate autocombustion method. The prepared nano-particles were investigated and characterized using X-Ray diffraction (XRD) and Transmission Electron Microscopy (TEM) to confirm the formation of the samples in single phase without any impurities and to calculate the particle size. The magnetic susceptibility χM was measured as a function of temperature and magnetic field intensity. From χM(T) and M(H) the saturation magnetization (Ms), remanent magnetization (Mr) (...)
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  19.  41
    Review of: "FinFET nanotransistor downscaling causes more short channel effects, less gate control, exponential increase in leakage currents, drastic process changes and unmanageable power densities".Afshin Rashid - 2024 - Qeios 9 (7680_765667).
    FinFEET nanotransistors are field-effect nanotransistors (metal-oxide-semiconductor) that are made on asubstrate. The gate is located on two, three, or four sides of the channel or is wrapped. The channel forms adouble gate structure. These devices are given the general name "finfets" because the source/drain region formsfins on the silicon surface. FinFET devices, compared to flat technology and using nanowires in the structureand (complementary metal oxide and semiconductor), < a i=8>have significantly faster switching and highercurrent density.Due to the reduction of (...)
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  20. Identification of regularities in the development of the baby economy as a component of the nanolevel of economy system.Tetiana Ostapenko, Igor Britchenko, Peter Lošonczi & Serhii Matveiev - 2022 - Eastern-European Journal of Enterprise Technologies 1 (13 (115)):92-102.
    This study has proven that the economic system is determined by various components, in particular, it includes the real sector of the economy, which is formed on mega-, macro, meso-, micro-and nano-levels. In addition, it was proved that the nano-level is determined by the activities of individuals whose economic activity begins with the birth and attitude of parents, attending various educational and upbringing institutions, and studying at university. A separate segment of the nano-level of the economic system (...)
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  21.  24
    (Nano Telecommunication) Nanotube Antennas (CNTs) or Multilayer and Graphene Nano Tape (GNRs).Afshin Rashid - 2024 - Authorea 13.
    The antenna is considered as the primary means of absorbing electromagnetic waves in space and has its own engineering knowledge, which is very developed and extensive. In general, in order to receive the electromagnetic wave in space, the dimensions of the antenna must be in the order of the size of the input wavelength to its surface. Due to the very low dimensions of nano-sensors, nano-antennas need a very high operating frequency to be usable. The use of graphene (...)
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  22.  35
    Review of: "Nano Fullerenes with The Ability to Store Electrostatic Energy That can be Used as Nano Supercapacitors With Very High Capacity".Afshin Rashid - 2024 - Qeios 3.
    Nano fullerenes with the ability to store electrostatic energy that can be used as nano supercapacitors with very high capacity. Also, with these nanotubes, the nervous network can be repaired. Carbon nano fullerenes are allotropes of carbon such as diamond and graphite. These compounds are made of carbon and take on spherical and elliptical shapes. Those that are spherical are called buckyballs.Fullerenes do not have much chemical activity. The width of the graphite plate is about a few (...)
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  23.  38
    Review of: "Micro and nano-electromechanical systems ( MEMS / NEMS ) are devices in which the physical motion of a micro- or nano-scale structure is controlled by an electronic circuit".Afshin Rashid - 2024 - Qeios 25.
    Micro and nano-electromechanical systems ( MEMS / NEMS ) are devices in which the physical motion of a micro or nano-scale structure is controlled by an electronic circuit or vice versa. MEMS and NEMS can be used to build sensitive sensors and stable timing devices. Nano System is a function at the molecular scale. This includes both current work and more advanced concepts. In its core meaning, nanotechnology refers to the predicted ability to make items from the (...)
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  24.  24
    Active Nano Diamond Particles, Having Special Electronic Features, Are The Founders Of Completely New Types Of High-power Nano Electronic Devices.Afshin Rashid - 2024 - Authorea 3.
    Nowadays, many semiconductors such as silicon are used in a wide range of nanoelectronic devices. However, due to the range of thermal changes and its extremely high speed, nano diamond is only compared to gold nanoparticles, which is the second best nano semiconductor in the world. Nano graphite and graphene nano strips are electrically conductive due to cloud scattering. Active nano diamond particles with such features, especially electronic ones, can be the foundation of completely new (...)
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  25.  36
    Review of: "Nano supercapacitor called (electrostatic) -- The total thickness of each < a i=4>electrostatic nanocapacitors only 25 nm".Afshin Rashid - 2024 - Qeios 18:10 -12.
    Electrostatic nanocapacitors also benefit from a very short distance between their electrodes. Electrostatic nanocapacitors are unique in this respect. If the electrodes are far apart, like charges on their surface strongly repel each other. When the electrodes are placed closer together, the negative and positive charges on both sides balance these repulsive forces, and more total charge can be stored in a given area.
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  26.  51
    Review of: "Nano electrical memories and testing Nickel nanoparticles NI_nanoparticle Strong conductors of electric current".Afshin Rashid - 2023 - Qeios 5 (78484_8637):1 _ 3.
    Note: NI_nanoparticle nickel nanoparticles is a strong conductor of electric current and its surface is shiny and polished. This element belongs to the group of iron and cobalt elementsUsing particles from the microscale to the nanoscale provides benefits for various scientific fields, but because a large percentage of their atoms is on the surface, nanomaterials can be highly reactive and pose risks. have a potential for humans. Nanoparticles are of great interest due to their wide application, both in industry and (...)
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  27.  34
    Review of: "(Field effect nano transistors) Nano transistor electronic quantity and ionization potential)".Afshin Rashid - 2023 - Qeios 28:9 _ 18.
    An increase in the surface-to- volume ratio and changes in geometry and electronic structure have a strong impact on the chemical interactions of matter, and for example, the activity of small particles changes with changes in the number of atoms (and thus the size of the particles). Unlike today's nano-transistors, which behave based on the movement of a mass of electrons in matter, new devices follow the phenomena of quantum mechanics at the nano scale, in which the discrete (...)
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  28.  32
    Review of: "Nano wire immersion method (structure and function)".Afshin Rashid - 2023 - Qeios 9.
    In the immersion method, nanowires have enough time to transfer from nanoparticle particles to cavities ; The formation step of uniform nanoparticles is done slowly and finally uniform nanowires are formed. Structural study with FESEM in the immersion method of single-stranded nanowires in all porosities and in a large area of nanowire particles are formed. Changing the Sr / Fe ratio does not change the morphology of the nanowires. And spectroscopy of nanowires with a ratio of Sr / Fe states (...)
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  29. Technology and the Lifeworld: From Garden to Earth.Don Ihde - 1990 - Indiana University Press.
    "... Dr. Ihde brings an enlightening and deeply humanistic perspective to major technological developments, both past and present." —Science Books & Films "Don Ihde is a pleasure to read.... The material is full of nice suggestions and details, empirical materials, fun variations which engage the reader in the work... the overall points almost sneak up on you, they are so gently and gradually offered." —John Compton "A sophisticated celebration of cultural diversity and of its enabling technologies.... perhaps the best single (...)
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  30. Technologically scaffolded atypical cognition: The case of YouTube’s recommender system.Mark Alfano, Amir Ebrahimi Fard, J. Adam Carter, Peter Clutton & Colin Klein - 2020 - Synthese (1-2):1-24.
    YouTube has been implicated in the transformation of users into extremists and conspiracy theorists. The alleged mechanism for this radicalizing process is YouTube’s recommender system, which is optimized to amplify and promote clips that users are likely to watch through to the end. YouTube optimizes for watch-through for economic reasons: people who watch a video through to the end are likely to then watch the next recommended video as well, which means that more advertisements can be served to them. This (...)
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  31. Technology ethics assessment: Politicising the ‘Socratic approach’.Robert Sparrow - 2023 - Business Ethics, the Environment and Responsibility (2):454-466.
    That technologies may raise ethical issues is now widely recognised. The ‘responsible innovation’ literature – as well as, to a lesser extent, the applied ethics and bioethics literature – has responded to the need for ethical reflection on technologies by developing a number of tools and approaches to facilitate such reflection. Some of these instruments consist of lists of questions that people are encouraged to ask about technologies – a methodology known as the ‘Socratic approach’. However, to date, these instruments (...)
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  32. Is Technology Value-Neutral?Boaz Miller - 2021 - Science, Technology, and Human Values 46 (1):53-80.
    According to the Value-Neutrality Thesis, technology is morally and politically neutral, neither good nor bad. A knife may be put to bad use to murder an innocent person or to good use to peel an apple for a starving person, but the knife itself is a mere instrument, not a proper subject for moral or political evaluation. While contemporary philosophers of technology widely reject the VNT, it remains unclear whether claims about values in technology are just a (...)
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  33. Technology as Driver for Morally Motivated Conceptual Engineering.Herman Veluwenkamp, Marianna Capasso, Jonne Maas & Lavinia Marin - 2022 - Philosophy and Technology 35 (3):1-25.
    New technologies are the source of uncertainties about the applicability of moral and morally connotated concepts. These uncertainties sometimes call for conceptual engineering, but it is not often recognized when this is the case. We take this to be a missed opportunity, as a recognition that different researchers are working on the same kind of project can help solve methodological questions that one is likely to encounter. In this paper, we present three case studies where philosophers of technology implicitly (...)
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  34. Earthing Technology.Vincent Blok - 2017 - Techné: Research in Philosophy and Technology (2/3).
    In this article, we reflect on the conditions under which new technologies emerge in the Anthropocene and raise the question of how to conceptualize sustainable technologies therein. To this end, we explore an eco-centric approach to technology development, called biomimicry. We discuss opposing views on biomimetic technologies, ranging from a still anthropocentric orientation focusing on human management and control of Earth’s life-support systems, to a real eco-centric concept of nature, found in the responsive conativity of nature. This concept provides (...)
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  35.  38
    Review of: "Reproduction (electrical nano memories) by the method combined nanolithography (۱۲ V), Fast switching speed (۱ microsecond)".Afshin Rashid - 2023 - Qeios 34:15-19.
    Graphene nanomemories have been developed molecularly, providing excellent programmable nanoscale memory performance compared to previous graphene memory devices and a memory window. Large (12V), fast switching speed (1 microsecond), shows strong electrical reliability. Graphene molecular nanomemories show unique electronic properties, and their small dimensions, structural strength, and high performance make them a charge storage medium for Nano memory applications. We use a set of techniques involving a solution of nanoparticles, which creates a very thin layer on the target substrate (...)
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  36. Technological progress and responsibility.Nikil Mukerji - 2014 - In Fiorella Battaglia, Nikil Mukerji & Julian Nida-Rümelin (eds.), Rethinking Responsibility in Science and Technology. Pisa University Press. pp. 25-36.
    In this essay, I will examine how technological progress affects the responsibilities of human agents. To this end, I will distinguish between two interpretations of the concept of responsibility, viz. responsibility as attributability and substantive responsibility. On the former interpretation, responsibility has to do with the idea of authorship. When we say that a person is responsible for her actions we mean that she is to be seen as the author of these actions. They can be attributed to her, such (...)
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  37. Attention, Technology, and Creativity.Carolyn Dicey Jennings & Shadab Tabatabaeian - 2023 - In D. Graham Burnett & Justin E. H. Smith (eds.), Scenes of Attention: An Interdisciplinary Inquiry. Columbia University Press.
    An important topic in the ethics of technology is the extent to which recent digital technologies undermine user autonomy. Supporting evidence includes the fact that recent digital technologies are known to have an impact on attention, which balances "bottom-up" and "top-down" influences on cognition. As described in numerous papers, these technologies manipulate bottom-up influences through cognitive fluency, intermittent variable rewards, and other techniques, making them more attractive to the user. We further reason that recent digital technologies reduce the user’s (...)
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  38. Technology and Epistemic Possibility.Isaac Record - 2013 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie (2):1-18.
    My aim in this paper is to give a philosophical analysis of the relationship between contingently available technology and the knowledge that it makes possible. My concern is with what specific subjects can know in practice, given their particular conditions, especially available technology, rather than what can be known “in principle” by a hypothetical entity like Laplace’s Demon. The argument has two parts. In the first, I’ll construct a novel account of epistemic possibility that incorporates two pragmatic conditions: (...)
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  39. Technological Dimensions of Globalization across Organizations: Inferences for Instruction and Research.Jupeth Pentang - 2021 - International Educational Scientific Research Journal 7 (7):28-32.
    Globalizations across organizations are impacted by economic, political, legal, security, social, cultural, ecological, and technological dimensions among others. This paper presents the readings from relevant articles and studies pertaining to the relationship between technology and its dimensions with globalization. Globalization and technological advancement are indeed interrelated where the success or failure of one is associated with the other. With this, Technology Education and Globalization, as intertwined disciplines, must be inculcated across curriculums and program offerings to address the demand (...)
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  40. Technological Seduction and Self-Radicalization.Mark Alfano, Joseph Adam Carter & Marc Cheong - 2018 - Journal of the American Philosophical Association (3):298-322.
    Many scholars agree that the Internet plays a pivotal role in self-radicalization, which can lead to behaviours ranging from lone-wolf terrorism to participation in white nationalist rallies to mundane bigotry and voting for extremist candidates. However, the mechanisms by which the Internet facilitates self-radicalization are disputed; some fault the individuals who end up self-radicalized, while others lay the blame on the technology itself. In this paper, we explore the role played by technological design decisions in online self-radicalization in its (...)
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  41. Agricultural technologies as living machines: toward a biomimetic conceptualization of technology.V. Blok & H. G. J. Gremmen - 2018 - Ethics, Policy and Environment 21 (2):246-263.
    Smart Farming Technologies raise ethical issues associated with the increased corporatization and industrialization of the agricultural sector. We explore the concept of biomimicry to conceptualize smart farming technologies as ecological innovations which are embedded in and in accordance with the natural environment. Such a biomimetic approach of smart farming technologies takes advantage of its potential to mitigate climate change, while at the same time avoiding the ethical issues related to the industrialization of the agricultural sector. We explore six principles of (...)
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  42. Technology in the Age of Innovation: Responsible Innovation as a New Subdomain Within the Philosophy of Technology.Lucien Schomberg & Vincent Blok - 2019 - Philosophy and Technology 34 (2):309–323.
    Praised as a panacea for resolving all societal issues, and self-evidently presupposed as technological innovation, the concept of innovation has become the emblem of our age. This is especially reflected in the context of the European Union, where it is considered to play a central role in both strengthening the economy and confronting the current environmental crisis. The pressing question is how technological innovation can be steered into the right direction. To this end, recent frameworks of Responsible Innovation (RI) focus (...)
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  43. Technology as an Aspect of Human Praxis.Laszlo Ropolyi - 2019 - In Mihály Héder & Eszter Nádasi (eds.), Essays in Post-Critical Philosophy of Technology. Wilmington, Delaware: Vernon Press. pp. 19-31.
    This paper proposes a specific approach to understanding the nature of technology that encompasses the entire field of technological praxis, from the making of primitive tools to using the Internet. In that approach, technology is a specific form of human agency that yields to (an imperfect) realization of human control over a technological situation—that is, a situation not governed to an end by natural constraints but by specific human aims. The components of such technological situations are a given (...)
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  44. Determining technology: myopia and dystopia.Gregory Swer - 2014 - South African Journal of Philosophy 33 (2):201-210.
    Throughout its brief history the philosophy of technology has been largely concerned with the debate over the nature of technology. Typically, technology has been viewed as being essentially another term for applied science, the practical application of scientific theory to the material world. In recent years philosophers and cultural critics have characterised technology in a far more problematic fashion, as an authoritarian power with the ability to bring about far-reaching cultural, political and ecological effects. Proponents of (...)
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  45. Technology, autonomy, and manipulation.Daniel Susser, Beate Roessler & Helen Nissenbaum - 2019 - Internet Policy Review 8 (2).
    Since 2016, when the Facebook/Cambridge Analytica scandal began to emerge, public concern has grown around the threat of “online manipulation”. While these worries are familiar to privacy researchers, this paper aims to make them more salient to policymakers — first, by defining “online manipulation”, thus enabling identification of manipulative practices; and second, by drawing attention to the specific harms online manipulation threatens. We argue that online manipulation is the use of information technology to covertly influence another person’s decision-making, by (...)
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  46. Ectogestative Technology and the Beginning of Life.Lily Frank, Julia Hermann, Ilona Kavege & Anna Puzio - 2023 - In Ibo van de Poel (ed.), Ethics of Socially Disruptive Technologies: An Introduction. Cambridge, UK: Open Book Publishers. pp. 113–140.
    How could ectogestative technology disrupt gender roles, parenting practices, and concepts such as ‘birth’, ‘body’, or ‘parent’? In this chapter, we situate this emerging technology in the context of the history of reproductive technologies and analyse the potential social and conceptual disruptions to which it could contribute. An ectogestative device, better known as ‘artificial womb’, enables the extra-uterine gestation of a human being, or mammal more generally. It is currently developed with the main goal of improving the survival (...)
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  47. Technology Transfer.Magdalena Klimczuk-Kochańska & Andrzej Klimczuk - 2015 - In Mehmet Odekon (ed.), The Sage Encyclopedia of World Poverty, 2nd Edition. Sage Publications. pp. 1529--1531.
    Technology transfer is the movement of technical and organizational skills, knowledge, and methods from one individual or organization to another for economic purposes. This process usually involves a group that possesses specialized technical skills and technology that transfers it to a target group of receptors who do not possess those skills, and who cannot create that technology themselves.
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  48. What are Socially Disruptive Technologies?Jeroen Hopster - 2021 - Technology in Society 67:101750.
    Scholarly discourse on “disruptive technologies” has been strongly influenced by disruptive innovation theory. This theory is tailored for analyzing disruptions in markets and business. It is of limited use, however, in analyzing the broader social, moral and existential dynamics of technosocial disruption. Yet these broader dynamics should be of great scholarly concern, both in coming to terms with technological disruptions of the past and those of our current age. Technologies can disrupt social relations, institutions, epistemic paradigms, foundational concepts, values, and (...)
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  49. Technology assessment and the 'ethical matrix'.Doris Schroeder & Clare Palmer - 2003 - Poiesis and Praxis 1 (4):295-307.
    This paper explores the usefulness of the 'ethical matrix', proposed by Ben Mepham, as a tool in technology assessment, specifically in food ethics. We consider what the matrix is, how it might be useful as a tool in ethical decision-making, and what drawbacks might be associated with it. We suggest that it is helpful for fact-finding in ethical debates relating to food ethics; but that it is much less helpful in terms of weighing the different ethical problems that it (...)
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  50. Technology and Neutrality.Sybren Heyndels - 2023 - Philosophy and Technology 36 (4):1-22.
    This paper clarifies and answers the following question: is technology morally neutral? It is argued that the debate between proponents and opponents of the Neutrality Thesis depends on different underlying assumptions about the nature of technological artifacts. My central argument centres around the claim that a mere physicalistic vocabulary does not suffice in characterizing technological artifacts as artifacts, and that the concepts of function and intention are necessary to describe technological artifacts at the right level of description. Once this (...)
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