Products related to Regulation:
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FinTech : Finance, Technology and Regulation
In this comprehensive, accessible work, Ross P. Buckley, Douglas W. Arner, and Dirk A. Zetzsche offer an ideal reference for anyone seeking to understand the technological transformation of finance and the role of regulation: the world of FinTech.They consider FinTech technologies including artificial intelligence, blockchain, BigData, cloud computing, cryptocurrencies, central bank digital currencies, and distributed ledger technology, and provide a unique perspective on FinTech as an interactive system involving finance, technology, law, and regulation.Starting with an evolutionary perspective, the authors then consider the major technologies transforming finance, arguing for approaches to balance the risks and challenges of innovation.They address the central role of infrastructure in digital financial transformation, highlighting lessons from China, India, and the EU, as well as the impact of pandemics and other sustainability crises, while considering the risks generated by FinTech.They conclude by offering forward-looking regulatory strategies to address the challenges facing our world today.
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FinTech : Finance, Technology and Regulation
In this comprehensive, accessible work, Ross P. Buckley, Douglas W. Arner, and Dirk A. Zetzsche offer an ideal reference for anyone seeking to understand the technological transformation of finance and the role of regulation: the world of FinTech.They consider FinTech technologies including artificial intelligence, blockchain, BigData, cloud computing, cryptocurrencies, central bank digital currencies, and distributed ledger technology, and provide a unique perspective on FinTech as an interactive system involving finance, technology, law, and regulation.Starting with an evolutionary perspective, the authors then consider the major technologies transforming finance, arguing for approaches to balance the risks and challenges of innovation.They address the central role of infrastructure in digital financial transformation, highlighting lessons from China, India, and the EU, as well as the impact of pandemics and other sustainability crises, while considering the risks generated by FinTech.They conclude by offering forward-looking regulatory strategies to address the challenges facing our world today.
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Law 3.0 : Rules, Regulation, and Technology
Putting technology front and centre in our thinking about law, this book introduces Law 3.0: the future of the legal landscape. Technology not only disrupts the traditional idea of what it is ‘to think like a lawyer,’ as per Law 1.0; it presents major challenges to regulators who are reasoning in a Law 2.0 mode.As this book demonstrates, the latest developments in technology offer regulators the possibility of employing a technical fix rather than just relying on rules – thus, we are introducing Law 3.0.Law 3.0 represents, so to speak, the state we are in and the conversation that we now need to have, and this book identifies some of the key points for discussion in that conversation.Thinking like a lawyer might continue to be associated with Law 1.0, but from 2020 onward, Law 3.0 is the conversation that we all need to join. And, as this book argues, law and the evolution of legal reasoning cannot be adequately understood unless we grasp the significance of technology in shaping both legal doctrine and our regulatory thinking. This is a book for those studying, or about to study, law – as well as others with interests in the legal, political, and social impact of technology.
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The New Goliaths : How Corporations Use Software to Dominate Industries, Kill Innovation, and Undermine Regulation
An approach to reinvigorating economic competition that doesn’t break up corporate giants, but compels them to share their technology, data, and knowledge “Bessen is a master of unpacking the nuances of a complex array of interrelated trends to build a coherent story of how the promise of the democratized Internet ended up under the control of just a few.Read The New Goliaths to see how the forest came to have only room for a few tall trees with the rest of us in the undergrowth.”—Joshua Gans, coauthor of Prediction Machines: The Simple Economics of Artificial Intelligence Historically, competition has powered progress under capitalism.Companies with productive new products rise to the top, but sooner or later, competitors come along with better innovations and disrupt the threat of monopoly.Dominant firms like Walmart, Amazon, and Google argue that this process of “creative destruction” prevents them from becoming too powerful or entrenched. But the threat of competition has sharply decreased over the past twenty years, and today’s corporate giants have come to power by using proprietary information technologies to create a tilted playing field.This development has increased economic inequality and social division, slowed innovation, and allowed dominant firms to evade government regulation.In the face of increasing calls to break up the largest companies, James Bessen argues that a better way to restore competitive balance and dynamism is to encourage or compel these companies to share technology, data, and knowledge.
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What is the purpose of measurement, control, and regulation technology?
The purpose of measurement, control, and regulation technology is to ensure that processes and systems operate efficiently, safely, and in accordance with set standards. Measurement technology allows for the accurate quantification of various parameters, such as temperature, pressure, flow rate, and more. Control technology enables the manipulation of these parameters to maintain desired conditions, while regulation technology ensures that systems and processes adhere to established norms and standards. Overall, these technologies are essential for maintaining quality, safety, and efficiency in various industrial, commercial, and environmental applications.
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When do people have the greatest regulation in science and technology?
People have the greatest regulation in science and technology when there is a balance between innovation and ethical considerations. This typically occurs when there is a strong regulatory framework in place that ensures the safety, security, and ethical use of new technologies. Additionally, public awareness and engagement in discussions about the implications of scientific advancements can also lead to increased regulation in the field. Ultimately, the greatest regulation in science and technology is achieved when there is a collaborative effort between policymakers, scientists, and the public to address potential risks and ethical concerns.
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What are end-to-end software and cloud technology solutions?
End-to-end software and cloud technology solutions refer to comprehensive and integrated systems that cover the entire process or lifecycle of a particular software or technology need. This means that these solutions encompass everything from initial design and development to deployment, maintenance, and ongoing support. End-to-end solutions are designed to streamline and simplify the entire process, providing a seamless and cohesive experience for users. This can include cloud-based services that offer a complete package of tools and resources to meet a specific business or technological need.
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Is this regulation pointless?
Without knowing the specific regulation in question, it is difficult to determine if it is pointless. Regulations are typically put in place to protect public safety, ensure fair competition, or address a specific issue. It is important to consider the context and purpose of the regulation before determining if it is pointless. Consulting experts or conducting a cost-benefit analysis can help evaluate the effectiveness and necessity of the regulation.
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Militarizing Artificial Intelligence : Theory, Technology, and Regulation
This book examines the military characteristics and potential of Artificial Intelligence (AI) in the new global revolution in military affairs. Offering an original perspective on the utilization, imagination, and politics of AI in the context of military development and weapons regulation, the work provides a comprehensive response to the question of how we might reflect on the AI revolution in warfare and what can be said about the ways in which this has been handled.In the first part of the book, AI is accommodated, both theoretically and empirically, in the strategic context of the 'Revolution in Military Affairs' (RMA).The book offers a novel understanding of autonomous weapons as multi-layered composite systems, pointing to a complex, non-linear interplay between evolutionary and revolutionary dynamics.In the second section, the book provides an impartial analysis of the related politics and operations of power, whereby increases in military budgets and R&D of the great powers are met and countered by advocacy networks and scientists campaigning for a ban on lethal autonomous weapons.As such, it moves beyond popular caricatures of ‘killer robots’ and points out some of the problems which result from over-reliance on such imagery. This book will be of much interest to students of strategic studies, critical security studies, arms control and disarmament, science and technology studies and general International Relations.
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Future Law : Emerging Technology, Regulation and Ethics
How will law, regulation and ethics govern a future of fast-changing technologies? 'From current controversies over Internet content, privacy and radicalisation, to science fiction and Black Mirror visions of the future, pervasive fears exist that technology inevitably outpaces law and social control' 'Future Law' responds to these fears by exploring how law and ethics can foresee and control new technologies that challenge our societal norms and expectations.Bringing together cutting-edge authors from academia, legal practice and the technology industry, this book explores and leverages the power of human imagination in understanding, critiquing and improving the legal responses to technological change.
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Interface between Regulation and Statistics in Drug Development
With the critical role of statistics in the design, conduct, analysis and reporting of clinical trials or observational studies intended for regulatory purposes, numerous guidelines have been issued by regulatory authorities around the world focusing on statistical issues related to drug development.However, the available literature on this important topic is sporadic, and often not readily accessible to drug developers or regulatory personnel.This book provides a systematic exposition of the interplay between the two disciplines, including emerging themes pertaining to the acceleration of the development of pharmaceutical medicines to serve patients with unmet needs.Features: Regulatory and statistical interactions throughout the drug development continuum The critical role of the statistician in relation to the changing regulatory and healthcare landscapes Statistical issues that commonly arise in the course of drug development and regulatory interactions Trending topics in drug development, with emphasis on current regulatory thinking and the associated challenges and opportunities The book is designed to be accessible to readers with an intermediate knowledge of statistics, and can be a useful resource to statisticians, medical researchers, and regulatory personnel in drug development, as well as graduate students in the health sciences.The authors’ decades of experience in the pharmaceutical industry and academia, and extensive regulatory experience, comes through in the many examples throughout the book.
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Gastrointestinal Physiology : Development, Principles and Mechanisms of Regulation
This book offers one of the most comprehensive reviews in the field of gastrointestinal (GI) physiology, guiding readers on a journey through the complete digestive tract, while also highlighting related organs and glandular systems.It is not solely limited to organ system physiology, and related disciplines like anatomy and histology, but also examines the molecular and cellular processes that keep the digestive system running.As such, the book provides extensive information on the molecular, cellular, tissue, organ, and system levels of functions in the GI system. Chapters on the roles of the gut as an endocrine, exocrine and neural organ, as well as its microbiome functions, broaden readers’ understanding of the multi-organ networks in the human body.To help illustrate the interconnections between the physiological concepts, principles and clinical presentations, it outlines clinical examples such as pathologies that link basic science with clinical practice in special “clinical correlates” sections.Covering both traditional and contemporary topics, it is a valuable resource for biomedical students, as well as healthcare and scientific professionals.
Price: 249.99 £ | Shipping*: 0.00 £
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What are the differences in terms of difficulty level, salary, etc. between cybersecurity and software development?
Cybersecurity and software development are both in-demand fields with their own unique challenges and rewards. In terms of difficulty level, cybersecurity can be more complex as it involves protecting systems and networks from constantly evolving threats, while software development requires strong problem-solving and coding skills. In terms of salary, cybersecurity professionals tend to earn higher salaries due to the specialized nature of their work and the high demand for their skills. However, software developers also command competitive salaries, especially as they gain experience and expertise in specific programming languages or technologies. Both fields offer opportunities for growth and advancement, and individuals should consider their interests and strengths when choosing a career path.
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Is a regulation legally binding?
Yes, a regulation is legally binding. Regulations are rules or laws created by an authority, such as a government agency, that have the force of law. This means that individuals and organizations are required to comply with regulations, and failure to do so can result in legal consequences. Regulations are enforceable and have the same legal weight as statutes or laws passed by a legislative body.
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How does thermal regulation work?
Thermal regulation is the process by which the body maintains a stable internal temperature. When the body gets too hot, blood vessels near the skin dilate to release heat, and sweat glands produce sweat to cool the body as it evaporates. When the body gets too cold, blood vessels constrict to conserve heat, and muscles may shiver to generate warmth. The hypothalamus in the brain plays a key role in monitoring and regulating body temperature, sending signals to the body to adjust its temperature as needed.
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What is enzyme inhibition and regulation?
Enzyme inhibition is the process by which a molecule binds to an enzyme and decreases its activity. This can occur through competitive inhibition, where the inhibitor competes with the substrate for binding to the active site, or through non-competitive inhibition, where the inhibitor binds to a different site on the enzyme and changes its shape or function. Enzyme regulation refers to the control of enzyme activity within a cell or organism. This can occur through various mechanisms, including allosteric regulation, covalent modification, and feedback inhibition, to ensure that the enzymes are functioning at the appropriate levels to maintain cellular homeostasis.
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