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Статті в журналах з теми "Law science"

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Baltimore, David, David S. Tatel, and Anne-Marie Mazza. "Bridging the Science-Law Divide." Daedalus 147, no. 4 (October 2018): 181–94. http://dx.doi.org/10.1162/daed_a_00528.

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Formal opportunities for members of the scientific and legal communities to engage in ongoing collegial consideration of issues at the interface of science and law are limited. In the late 1990s, the National Academies of Sciences, Engineering, and Medicine established the Committee on Science, Technology, and Law (CSTL)-composed of equal numbers of members from science, engineering, and law-to provide an ongoing forum that would build permanent links between these communities. The range of issues investigated by the CSTL and the influence of these explorations are discussed in this essay.
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Supriarno, Supriarno, Abdul Rachmad Budiono, Setyo Widagdo, and Moh Fadli. "The Position of Legal Philosophy Science in Science Constellation." International Journal of Multicultural and Multireligious Understanding 7, no. 11 (December 2, 2020): 127. http://dx.doi.org/10.18415/ijmmu.v7i11.2145.

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The philosophy of law is a science that analyzes law in a philosophical way. So that, the object of the science of legal philosophy is legal norms, and the object is evaluated in a way that is at the heart or basis, which is called the law. The philosphy of law has a wider area than the investigation of the workings of law regarding certainty, truth and objectivity. The position of the philosophy of law in the scientific constellation is as a basis for ethical logic about law. Philosophy of law is a science that specifically discusses the nature of law in a fundamental and comprehensive manner which is always dealing with scientific constellations consisting of the social and natural sciences, so that it’s also at the intersection f the sciences as well as at the meeting point between the sciences. Science and it intersects with the ethics and logic.
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Miller, Evan. "An Unlikely Symbiosis: Science and Law." American Journal of Undergraduate Research 17, no. 2 (September 30, 2020): 27–33. http://dx.doi.org/10.33697/ajur.2020.018.

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Science has historically held a position of high regard in society. Science is intimately connected to law. These disciplines meet in the courtroom. Due to the nature of civil and criminal disputes in the United States, litigators retain expert witnesses to explicate nuanced subjects, including science. Unfortunately, the common law system has not always favored sound science. This paper examines how science and law can work in concert to benefit all people. Some feel that scientists should simply educate courtrooms, but further scrutiny questions the feasibility of this approach. Understanding the sociology of scientific knowledge elucidates this debate and is applied to the forensic sciences. Science and law have the capacity to improve the human condition and increase equity among all people. KEYWORDS: Science Communication; Expert Witnesses; Science; Public Perception; Law; Misinformation
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Mc Roos, Rolie. "Is law Science?" Potchefstroom Electronic Law Journal/Potchefstroomse Elektroniese Regsblad 17, no. 4 (April 11, 2017): 1439. http://dx.doi.org/10.17159/1727-3781/2014/v17i4a2169.

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The question this contribution sets out to address is whether or not law can be regarded as a science. This notion is readily accepted by many, yet it is submitted that a proper theoretical justification for such an assumption is usually missing. The traditional primary sources of law, South African case law and legislation, distinguish between legal practice and legal science, but the basis of the distinction is not clear. However, an entire body of literature in the philosophy of science has developed around the question of when a discipline will amount to science. Various demarcation criteria proposed in the philosophy of science are considered. These include that science uses the scientific method, is susceptible to falsification, is puzzle-solving within a paradigm or renders beneficial results. None of these criteria offers a satisfactory solution to the problem. The proposition by a group of philosophers including Herman Dooyeweerd, Marinus Stafleu and DFM Strauss, that the answer to the demarcation question is to be found in modal abstraction, is then considered. Modal abstraction amounts to a consideration of reality (persons, things, theories and rules) from one or more defined point(s) of entry. It is an artificial and learnt manner of thinking as it approaches reality from the perspective of one of the modalities of being. For example, juridical abstraction would mean that a cow is considered as the object of someone's proprietary rights. An abstract idea of the cow's characteristics, from a juridical point of view, is formed and the rules of property law are applied. A number of South African legal philosophers, amongst others Van Zyl, Van der Vyver and LM du Plessis, have followed this approach. The South African legislature has also attempted to define the terms "science" and "research", mainly for funding purposes. These definitions are considered and the conclusion is that they do not provide the clear-cut answers one would expect. It will be argued that the nature of activities will determine whether an endeavour is scientific or not. The conclusion is that an alignment of the demarcation criterion developed by Strauss and others and the statutory definitions can provide a workable demarcation criterion. This "test" is then applied to the activities of law students, academics, practitioners and judicial officers to determine when they will be practising "science".
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Roos, MC. "Is Law science?" Potchefstroom Electronic Law Journal/Potchefstroomse Elektroniese Regsblad 17, no. 4 (January 28, 2015): 1391. http://dx.doi.org/10.4314/pelj.v17i4.06.

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Huff, Toby E. "Law and Science." Academic Questions 25, no. 1 (February 9, 2012): 54–64. http://dx.doi.org/10.1007/s12129-011-9268-1.

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Brickley, Peg. "Science v. Law." Scientific American 289, no. 6 (December 2003): 30–32. http://dx.doi.org/10.1038/scientificamerican1203-30.

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Prior, Stephanie. "Law and Science." Medicine, Science and the Law 53, no. 1 (January 2013): 57–58. http://dx.doi.org/10.1177/0025802412472639.

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Prior, Stephanie. "Law and Science." Medicine, Science and the Law 53, no. 2 (April 2013): 107–9. http://dx.doi.org/10.1177/0025802413484566.

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Prior, Stephanie. "Law and science." Medicine, Science and the Law 53, no. 3 (July 2013): 177–80. http://dx.doi.org/10.1177/0025802413494168.

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Дисертації з теми "Law science"

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Cunningham, Graeme James. "Law, rhetoric, and science : historical narratives in Roman law." Thesis, University of Glasgow, 2018. http://theses.gla.ac.uk/41030/.

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Historical narratives have limited scholarly appreciation of the impact of rhetoric on the development of Roman law in the late Republican period. This thesis challenges these narratives and attempts to re-evaluate the role of rhetoric in Roman law.
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Behan, Maeveen. "Science and Lore in Animal Law." Diss., The University of Arizona, 2006. http://hdl.handle.net/10150/194253.

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This dissertation employs techniques from folkecology to identify factors that have influenced lawmakers in their decision-making about animals. The purpose of this research is to understand the natural world as seen by lawmakers, identify and explain variation between lawmakers and scientists priorities, and, ultimately, consider ways to improve communication of understandings between these two cultures. The study is structured to follow Amadeo Rea's recommendation that scholars "note the etic while searching for the emic" (Rea 1998: xx) It compares priorities and then discusses findings to get at the question of meaning. What do different animals mean to lawmakers? What forces are operating when they make or interpret laws on behalf of animals? The answer "takes us into the realm of mythology," as Rea said it would (Rea 1998: xx), and provides an opportunity to consider the foundations of law and science, and the role of reason, narrative and imagination across the disciplines and across time, as lawmakers - who are keepers and shapers of their cultures -- continuously define and redefine what it means to be human, and what that means for other animals. Findings indicate that conservation efforts need to increase the cultural relevance of the natural world, rather than hope that science alone will change the ethic and priorities of lawmakers.
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Travis, Mitchell. "Interrogating personhood : law and science fiction." Thesis, Keele University, 2013. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.602983.

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This thesis brings together for the first time the legal humanities and feminist legal theory in an interrogation of legal personhood. Originality can be found in the consideration of the relationship between law and science fiction. This thesis considers the question of what makes a legal person. Proponents of feminism have highlighted that legal personhood is predicated upon the bodies of healthy white heterosexual males. As a consequence embodiment becomes central to understanding whom or what can become legal persons. In this thesis Ngaire Naffine's (1997, 2003, 2009, 2011) understanding of the embodied legal person is used as a starting point and applied to a number of different contemporary and potential entities including human-level artificial intelligence, admixed embryos and elective amputees. Adopting a law and culture approach three different science fiction films are used to anchor this work. 77w Matrix trilogy (1999, 2003a, 2003b) is used to highlight the relationship between embodiment and legal personhood. Bladerunner (1982) is used to exemplify the relationship between legal personhood and the conflated concepts of rationality and masculinity. District 9 (2009) and elective amputees are used to demonstrate the relationship between the body, rationality and legal personhood. Science fiction is presented as prophetic and allegorical; forewarning of the possibilities associated with potential entities but also serving as a reminder of the injustices of contemporary and historical times. These themes are drawn together through the proposition of a new approach to legal personhood; an approach based on multiple modes of embodied experience, diversity and heterogeneity.
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Khalili, Sinan. "Law as a Science : The Scientific Requisite." Thesis, Uppsala universitet, Juridiska institutionen, 2013. http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-204083.

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Laukyte, Migle <1981&gt. "Law and Science through the Lens of Patent Law and Software Agents." Doctoral thesis, Alma Mater Studiorum - Università di Bologna, 2010. http://amsdottorato.unibo.it/3114/.

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In this investigation I look at patents and software agents as a way to study broader relation between law and science (the latter term broadly understood as inclusive of science and technology). The overall premise framing the entire discussion, my basic thesis, is that this relation, between law and science, cannot be understood without taking into account a number of intervening factors identifying which makes it necessary to approach the question from the standpoint of fields and disciplines other than law and science themselves.
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Bain, Jonathan. "Subjective-Objective-Subjective: The Science Of Propaganda." Master's thesis, Faculty of Law, 2020. http://hdl.handle.net/11427/32197.

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This thesis discusses the following: 1. That, while advertising practitioners employ various levels of scientific endeavour (particularly strategic insight development, but also research, demographic data collection, and other objective tools of the trade), its final output is ultimately nonscientific, i.e. subjective creative ideation. (In this way, advertising is not dissimilar to the classic ‘art' of propaganda.) 2. That, for reasons of business necessity, creative ego and a latent form of ‘inferiority complex' the advertising industry describes its work in presentations to more scientifically-orientated clients as a more scientific proposition. 3. That, in contrast, as evidenced by the physical production process of the advertising idea (post the client presentation) – as well as in industry texts, award ceremonies, and selected case studies – advertising practitioners effectively acknowledge the subjective nature of their work. 4. That further evidence of this scientific ‘terministic screen' (Burke 1950, pp. 26-27) is also revealed in the failure of some television commercials to profitably ‘connect' as intended with an audience – thus undermining claims to the objective approach that preceded these commercials. 5. That, possibly, as is implied in at least one ethnographic case study, not even clients are necessarily convinced by advertising science: the ‘screen' may be a two-way mirror. 6. That there is, more broadly, a constant dialectic between right-brained creativity and the left-brained business project. 7. That this tension is a microcosm of the capitalist enterprise, and, in an increasing number of present examples, is perversely reflected in the advertising industry's output as anti-capitalist brand messaging. 8. That it is possible to think of advertising as a sub-set of a more consumer-orientated ‘design'. 6 9. That, admittedly within limited confines of my research, there is a tantalising indication that, generally, advertising artefacts were historically more logos-led, are currently more pathos-led, and may in future benefit from a more ethos-led orientation.
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Al-Dusri, Fahad. "The effectiveness of forensic science service in the State of Kuwait in criminal investigations and proceedings : forensic science practice in Kuwait." Thesis, University of Exeter, 1999. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.288002.

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Bicego, Carl P. "The precautionary principle in law and science, nomos and narrative." Thesis, National Library of Canada = Bibliothèque nationale du Canada, 1996. http://www.collectionscanada.ca/obj/s4/f2/dsk2/ftp04/MQ26408.pdf.

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Forret, Joan Boyce. "An Interface between science and law: What is science for members of New Zealand's Environment Court?" The University of Waikato, 2006. http://hdl.handle.net/10289/2667.

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This study investigates the interface between science and law with reference to models of science described by members of New Zealand's Environment Court. The aim of the research is to identify differences and consistencies between the members of the Court in the way that they articulate their understanding of science and of scientific evidence. This research also aims to locate those individual models of science within a wider philosophical discourse concerning the nature of science. The research adopts a qualitative and interpretive approach that focuses on understanding the detail of contextual interactions arising from interviews with eight Environment Judges and 13 Commissioners. The interview group comprised all of the judges of the Court during the research period (1999 - 2000) and all but one permanent Commissioner. The analysis of interviews show a wide range of views concerning the scope and nature of science. Criteria significant to each individual's model of science have been identified as a series of micro themes. Those micro themes differ between individuals as to the combinations of criteria significant when locating the boundary between science and non-science. The analysis of interviews also identifies three macro themes that describe whether and how individuals differentiate science, technology and expertise. That analysis identifies a group of interviewees, comprising both judges and commissioners, that equates science with expertise without distinction as to any knowledge component or process considerations. The analysis of interview responses adopts a boundary-work approach that identifies how individuals locate the boundary between science and non-science through their articulation of the micro themes significant to their model of science. The study contributes to the discourse concerning the relationship of science and law within modern society. That discourse commonly addresses the appropriate legal framework to assess questions involving scientific expertise and invariably describes the legal process and the role of expert and decision maker within that process. However, that discourse rarely articulates the meaning of the terms science, scientist, or technology, assuming that science is a self-evident concept, its meaning having universal application and acceptance. This research challenges that approach and identifies wide differences in the models of science held by individual decision makers and differences in their expectations of evidence from expert witnesses. Aside from the implications of the research results for the discourse concerning the relationship of science and law, this research also has practical implications for the evaluation of expert scientific evidence within an adversarial system of law, and for expert evidence before the Environment Court. Suggestions to improve communication both within the Court and between the Court and parties appearing before it are made with a view to identifying consistent and fair expectations of experts and their evidence.
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Hagelüken, Alexandra. "The impact of EC law and WTO law on domestic law : a critical analysis of the case law of the European Court of Justice." Thesis, McGill University, 1998. http://digitool.Library.McGill.CA:80/R/?func=dbin-jump-full&object_id=21683.

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The relationship between, on the one hand, European Community Law and World Trade Organization Law and, on the other hand, domestic law lies at the heart of this thesis The European Treaty and the World Trade Organization Agreements have far reaching impacts not only on their Member States, but also on individuals. It is of crucial importance for the protection of individual rights and for the effective enforcement of these treaties whether individuals can invoke them before their national courts. After giving an overview of the general theories, which exist in international law with respect to the impact of international treaties on domestic law, this thesis analyzes the case law of the European Court of Justice regarding the impact of EC Law on domestic law and the impact of GATT 1947/WTO Law on the European Community. A review of this case law will demonstrate that the European Court has effectively promoted European integration by the doctrines of direct applicability, direct effect and supremacy. In contrast, the European Court has so far denied that individuals or Member States can challenge the validity of EC Law by invoking provisions of the GATT 1947. It is not clear whether the Court will change its attitude with respect to the WTO Agreements. This thesis will demonstrate that the general denial of direct effect to GATT/WTO Law is not based on legal reasons. With respect to the European Community, individuals must be allowed to rely at least on some of the provisions.
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Книги з теми "Law science"

1

Richard, Green. Sexual science and the law. Cambridge, Mass: Harvard University Press, 1992.

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The positivist science of law. Aldershot, Hants [England]: Avebury, 1989.

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Lakoff, George. Cognitive science and the law. [Toronto, Ont.]: Faculty of Law, University of Toronto, 1989.

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4

The stolen law. New York: Harper & Row, 1986.

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The concept of physical law. Cambridge [Cambridgeshire]: Cambridge University Press, 1985.

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D, Redlich Allison, ed. Wrongful conviction: Law, science, and policy. Durham, N.C: Carolina Academic Press, 2011.

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A, Bievenue Lisa, ed. Social science, law, and public policy. Lanham, Md: University Press of America, 1992.

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Dooyeweerd, H. Encyclopedia of the science of law. Lewiston, N.Y: Edwin Mellen Press, 2002.

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Cohen, Marcus. Lyme disease update: Science, policy & law. Edited by Smith Patricia V. New Jersey: Lyme Disease Association, 2004.

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The role of science in law. New York: Oxford University Press, 2009.

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Частини книг з теми "Law science"

1

Martin, Brian. "Law Versus Science." In Groupthink in Science, 115–26. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-36822-7_10.

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Wu, Chongqi. "Law, Health Law and Science of Health Law." In Legal and Forensic Medicine, 157–72. Berlin, Heidelberg: Springer Berlin Heidelberg, 2013. http://dx.doi.org/10.1007/978-3-642-32338-6_43.

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Hancock, P. A. "Science and the Law." In Advances in Intelligent Systems and Computing, 739–44. Cham: Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-96080-7_89.

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Kaufman, Noah K., Shane S. Bush, Nicole R. Schneider, and Scotia J. Hicks. "“Science” and “the Law”." In Forensic Mental Health Assessment in Criminal Contexts, 86–102. New York: Routledge, 2022. http://dx.doi.org/10.4324/9780367645090-4.

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Kossovsky, Alex Ely. "A Tale of Two Laws—Bode’s Law and Kepler’s Law." In The Birth of Science, 197–206. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-51744-1_46.

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Weik, Martin H. "law." In Computer Science and Communications Dictionary, 879. Boston, MA: Springer US, 2000. http://dx.doi.org/10.1007/1-4020-0613-6_10013.

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Maras, Marie-Helen, and Michelle D. Miranda. "Forensic Science." In Encyclopedia of Law and Economics, 1–6. New York, NY: Springer New York, 2014. http://dx.doi.org/10.1007/978-1-4614-7883-6_11-1.

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Maras, Marie-Helen, and Michelle D. Miranda. "Forensic Science." In Encyclopedia of Law and Economics, 892–96. New York, NY: Springer New York, 2019. http://dx.doi.org/10.1007/978-1-4614-7753-2_11.

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Maras, Marie-Helen, and Michelle D. Miranda. "Forensic Science." In Encyclopedia of Law and Economics, 1–6. New York, NY: Springer New York, 2021. http://dx.doi.org/10.1007/978-1-4614-7883-6_11-2.

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McComas, William F. "Law (Scientific Law or Principle)." In The Language of Science Education, 58. Rotterdam: SensePublishers, 2014. http://dx.doi.org/10.1007/978-94-6209-497-0_51.

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Тези доповідей конференцій з теми "Law science"

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Chamakura, Reddy P. "Internet and forensic science." In Enabling Technologies for Law Enforcement and Security, edited by John Hicks, Peter R. De Forest, and Vivian M. Baylor. SPIE, 1997. http://dx.doi.org/10.1117/12.266303.

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Heizmann, Michael, and Fernando Puente Leon. "Model-based analysis of striation patterns in forensic science." In Enabling Technologies for Law Enforcement, edited by Simon K. Bramble, Edward M. Carapezza, and Lenny I. Rudin. SPIE, 2001. http://dx.doi.org/10.1117/12.417572.

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Bakirov, Denys. "SCIENCE, LAW, ART, THEIR FEEDBACK." In THEORETICAL AND EMPIRICAL SCIENTIFIC RESEARCH: CONCEPT AND TRENDS, chair Oleksansr Filonenko. European Scientific Platform, 2021. http://dx.doi.org/10.36074/logos-10.12.2021.v2.39.

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McMillan III, George. "THE UNIFICATION OF THE PHILOSOPHICAL AND BEHAVIORAL SOCIAL SCIENCES." In Law & Political Science Conference, Vienna. International Institute of Social and Economic Sciences, 2017. http://dx.doi.org/10.20472/lpc.2017.001.005.

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Vladeck, David C., Hal Abelson, Niva Elkin-Koren, Erik Neuenschwander, Jason Schultz, and Christopher C. Yoo. "Educational programs in computer science and law." In CSLAW '19: Symposium on Computer Science and Law. New York, NY, USA: ACM, 2019. http://dx.doi.org/10.1145/3379921.3379928.

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S. Mellett, James. "Science The Law And Environmental Remediation." In 7th EEGS Symposium on the Application of Geophysics to Engineering and Environmental Problems. European Association of Geoscientists & Engineers, 1994. http://dx.doi.org/10.3997/2214-4609-pdb.208.1994_001.

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Mellett, James S. "Science, the Law and Environmental Remediation." In Symposium on the Application of Geophysics to Engineering and Environmental Problems 1994. Environment and Engineering Geophysical Society, 1994. http://dx.doi.org/10.4133/1.2922065.

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İnce, Salih Tayfun. "A LEGAL EFFECT OF EUROPEAN UNION'S BUSINESS LAW POLICY: SINGLE MEMBER COMPANIES IN TURKISH LAW." In Law & Political Science Conference, Vienna. International Institute of Social and Economic Sciences, 2017. http://dx.doi.org/10.20472/lpc.2017.001.003.

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Park, Soyoung. "THE ROLE OF GOVERNMENT IN SCIENCE AND TECHNOLOGY LEGISLATION TO PREPARE FOR THE ERA OF ARTIFICIAL INTELLIGENCE." In 2nd Law & Political Science Conference, Prague. International Institute of Social and Economic Sciences, 2018. http://dx.doi.org/10.20472/lpc.2018.002.009.

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Cadena Afanador, Walter René. "OFFSHORE SOCIETIES IN “PANAMA PAPERS” ERA. LATIN AMERICAN DILEMMAS ABOUT TAX EVASION AND FOREIGN INVESTMENT INCENTIVE." In Law & Political Science Conference, Vienna. International Institute of Social and Economic Sciences, 2017. http://dx.doi.org/10.20472/lpc.2017.001.001.

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Звіти організацій з теми "Law science"

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Gonçalves, Maria Eduarda, and Inês Gameiro. Hard Law, Soft Law and Self-regulation: Seeking Better Governance for Science and Technology in the EU. DINÂMIA'CET-IUL, 2011. http://dx.doi.org/10.7749/dinamiacet-iul.wp.2011.18.

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Jones, Nicole S. 2018 Impression, Pattern and Trace Evidence Symposium. RTI Press, May 2018. http://dx.doi.org/10.3768/rtipress.2018.cp.0006.1805.

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Анотація:
From January 22 to 25, 2018, RTI International, the National Institute of Justice (NIJ) and the Forensic Technology Center of Excellence (FTCoE) held the 2018 Impression, Pattern and Trace Evidence Symposium (IPTES) in Arlington, VA, to promote collaboration, enhance knowledge transfer, and share best practices and policies for the impression, pattern, and trace evidence forensic science communities. NIJ and FTCoE are committed to improving the practice of forensic science and strengthening its impact through support of research and development, rigorous technology evaluation and adoption, effective knowledge transfer and education, and comprehensive dissemination of best practices and guidelines to agencies dedicated to combating crime. The future of forensic sciences and its contribution to the public and criminal justice community is a motivating topic to gather expertise in a forum to discuss, learn, and share ideas. It’s about becoming part of an essential and historic movement as the forensic sciences continue to advance. The IPTES was specifically designed to bring together practitioners and researchers to enhance information-sharing and promote collaboration among the impression, pattern, and trace evidence analysts, law enforcement, and legal communities. The IPTES was designed to bring together practitioners and researchers to enhance information sharing and promote collaboration among impression, pattern, and trace evidence analysts, law enforcement, and legal communities. This set of proceedings comprises abstracts from workshops, general sessions, breakout sessions, and poster presentations.
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Gruson-Daniel, Célya, and Maya Anderson-González. Étude exploratoire sur la « recherche sur la recherche » : acteurs et approches. Ministère de l'enseignement supérieur et de la recherche, November 2021. http://dx.doi.org/10.52949/24.

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• Introduction Dans le cadre du deuxième Plan National de la Science Ouverte, le Comité pour la science ouverte a souhaité mener une étude pour la préfiguration d’un Lab de la science ouverte (LabSO) afin de mieux comprendre le périmètre de la recherche sur la recherche (research on research) dans un contexte international. • Objectifs de l’étude : L’étude répond ainsi à trois objectifs : 1. repérer des grands courants de recherche sur la recherche (RoR) dans le paysage plus général de la recherche universitaire en Europe et outre-atlantique, en reconnaître les principaux acteurs institutionnels et différencier les approches mobilisées par les uns et les autres ; 2. proposer une méthodologie d’analyse dans une démarche de science ouverte (méthodes mixtes et cartographie numérique) pour faciliter l’appropriation de son contenu ; 3. émettre des recommandations pour faciliter le positionnement du LabSO et s’inspirer d’initiatives existantes. • Méthodologie Une série de treize entretiens et une collecte de données d’une sélection thématique de sites web ont permis de dresser un paysage d’acteurs et d’approches impliqués dans des recherches sur la recherche. Ce dernier s’est nourri d’une démarche de cartographie numérique pour repérer et visualiser les liens existants entre différentes communautés, mouvements, réseaux et initiatives (financeurs, projets, centres de recherche, fournisseurs de données, éditeurs, etc.). • Résultats Le rapport présente différents courants de « recherche sur la recherche » issus des traditions théoriques et méthodologiques de la sociologie, de l’économie, des sciences politiques, de la philosophie, des sciences de l’information et des mesures (biblio/scientométrie). Des courants plus récents sont aussi décrits. Ils s’inscrivent dans un contexte de politiques publiques favorables à la science ouverte et ont émergé dans le champ des sciences sociales computationnelles, des Big Data ou encore des domaines biomédicaux. Si certaines de ces approches s’appuient sur des courants académiques (STS, sciences des mesures) établis depuis de nombreuses décennies, d’autres comme ceux de la « métascience » ou de la « science de la science », se sont structurées plus récemment avec une visée prescriptive et de changement fondé sur des preuves (evidence-based) se basant sur un engagement normatif pour une science plus ouverte, inclusive et diverse. Bien loin d’un paysage statique, l’étude fait ressortir des recherches en mouvement, des débats tout autant que des mises en garde afin que certains courants « ne réinventent pas la roue » en faisant fit d’une longue tradition académique de l’étude des sciences et de la production scientifiques. De nouvelles alliances entre centres de recherche et laboratoires, institutions subventionnaires, décideurs politiques et fournisseurs de données ont été repérées. Elles participent à une dynamique actuelle d’équipement des politiques publiques par des outils d’évaluation et des protocoles de recherche pour guider les actions menées, on parle d’évidence-based policies. Un des exemples les plus récents étant laa seconde feuille de route du RoRI1 poussant notamment à la formation d’un réseau international d’instituts de recherche sur la recherche, fondé sur le partage et la mutualisation de données, de méthodes et d’outils. Outre la présentation de ces différents acteurs et courants, le rapport pointe le rôle joué par les infrastructures et les fournisseurs de données scientifiques (publications, données, métadonnées, citations, etc.) dans la structuration de ce paysage et les équilibres à trouver. • Recommandations 1. Accompagner la construction d’indicateurs et de métriques par le biais d’un regard critique et de discussions collectives pour mesurer leurs impacts sur les comportements des professionnels de la recherche (mésusages, gaming). 2. Porter attention aux étapes de diffusion des résultats scientifiques issus des « recherches sur la recherche » pour les adapter aux différents publics ciblés (chercheurs, responsables des politiques publiques de recherche, journalistes, etc.). 3. Articuler les travaux de « recherche sur la recherche » avec une démarche de science ouverte en questionnant notamment les choix faits concernant les fournisseurs de données, les infrastructures et outils d’évaluation, de découvrabilité et d’analyse de la production scientifique (gouvernance, utilisation des données, etc.). 4. Soutenir les approches thématiques et transversales plutôt que disciplinaire de manière collaborative entre les différents membres du Lab de la science ouverte et aider le dialogue entre les différentes approches et mouvements (STS, research on research, science of science, scientométrie, etc.)
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Mazurkiewicz, Marek. ECMI Minorities Blog. German minority as hostage and victim of populist politics in Poland. European Centre for Minority Issues, February 2022. http://dx.doi.org/10.53779/fhta5489.

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On 4 February 2022, the Polish Journal of Laws published a new ordinance of the Minister of Education and Science, implementing cuts in the funding of education of German as a minority language. Consequently, the hourly length of such lessons will be significantly reduced. This regulation applies exclusively to the German minority, and the official motive for introducing discriminatory measures is to improve the situation of Polish diaspora in Germany. This is the first time after 1989 when the Polish state authorities introduce a law limiting the rights of Poland’s citizens belonging to a national minority (in this situation children), as a retaliation for the alleged situation of a kin-community elsewhere. Importantly, the adopted regulations are not only discriminatory towards one of the minorities; their implementation may in fact contribute to the dysfunctionality of the entire minority education system in Poland. This is also an obvious violation of the constitutional principle of equality before the law, the right of minorities to ‘maintain and develop their own language’, international standards of minority rights protection, as well as a threat to the very functioning of human rights protection mechanisms in the country.
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Houston, Johnny L. ECSU Computational Science Research Lab. Fort Belvoir, VA: Defense Technical Information Center, January 1998. http://dx.doi.org/10.21236/ada339116.

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Maier, Anna, and Deanna Niebuhr. California Community Schools Partnership Program: A Transformational Opportunity for Whole Child Education. Learning Policy Institute, October 2021. http://dx.doi.org/10.54300/806.436.

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The historic $3 billion investment in the California Community Schools Partnership Program provides an opportunity to transform schools into community hubs that deliver a whole child education. This brief examines key elements of the new law. It then lays out evidence-based principles of high-quality community schools implementation that are grounded in the four researchbacked pillars included in statute and aligned with the science of learning and development. It concludes with a discussion of the technical assistance needed for high-quality implementation.
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Koehler, Paul E. Low-Energy Nuclear Science at LANSCE. Office of Scientific and Technical Information (OSTI), September 2017. http://dx.doi.org/10.2172/1394960.

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Carl R. Brune and Steven M. Grimes. Studies in Low-Energy Nuclear Science. Office of Scientific and Technical Information (OSTI), January 2010. http://dx.doi.org/10.2172/970080.

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van Bibber, K. Science and applications of low-emittance electron beams. Office of Scientific and Technical Information (OSTI), August 2000. http://dx.doi.org/10.2172/15004102.

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Fronzak, Hannah Kristina, and Karen Elizabeth Kippen. Modernizing the nation’s stockpile: Plutonium Surface Science Lab. Office of Scientific and Technical Information (OSTI), July 2018. http://dx.doi.org/10.2172/1463468.

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