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definition of interpretation in science: Interpretation in Social Life, Social Science, and Marketing John O'Shaughnessy, 2009-05-07 'Interpretation' is used as an umbrella for bringing together a wide range of concepts and developments in the philosophy of social science that provide the foundation for clear thinking about social phenomena. In his new book, John O’Shaughnessy familiarises the reader with the nature of interpretation and its importance in social life, decision making in social science enquiries and consumer marketing, thus offering a multidisciplinary approach to problems of bias and uncertainty. Thus, this book is novel in its outlook and comprehensive in its approach. Whereas past studies in interpretation have focused on hermeneutical methods, O’Shaughnessy goes further considering the role of interpretation in social interactions, in undertaking scientific work, in the use of statistics, in causal analysis, in consumer evaluations of products and artifacts and in interpreting problematic situations together with the corresponding biases arising from emotional happiness and the concepts employed. |
definition of interpretation in science: Understanding Heritage Marie-Theres Albert, Roland Bernecker, Britta Rudolff, 2013-04-30 The publication is the first in a new series on existing and innovative paradigms in Heritage Studies. The series aims at systematising and developing the academic discourse on heritage, which has yielded a wealth and breadth of contributions over the past few years. The publication offers its own emphasis by developing heritage studies with a perspective towards and as a contribution to human development. It thus offers a vision for the construction and establishment of a new discipline. The academic mainsprings and research interests of this repositioning of heritage studies as an academic discipline are discussed by internationally renowned thinkers and heritage practitioners. The publication thus establishes first important points for discussion. Central to this publication are questions concerning the sustainable protection and use of heritage, focussing on the world cultural heritage and intangible cultural heritage, but equally questions on the relation of heritage and memory and how these could mutually enrich our understanding of heritage. |
definition of interpretation in science: Environmental Interpretation Sam H. Ham, 1992 Environmental Interpretation is the first truly applied treatment of environmental communication written specifically for people with big ideas and small budgets. Drawing on 20 years experience and the successes of his colleagues worldwide, Sam Ham presents an unusually diverse collection of low-cost communication techniques that really work. More than 200 illustrations, photos, and technical insets provide simple instructions for designing and implementing effective education programs in forests, parks, protected areas, zoos, botanical gardens, extension and community programs, and in all kinds of agriculture and natural resource management programs. Aside from its step-by-step, how-to approach, what sets this volume apart is its solid theoretical foundation. Readers learn not only how to communicate their ideas more forcefully but why the methods work. Some 20 case studies, carefully selected from throughout the Western Hemisphere, stimulate the imagination and show how others have successfully applied what this book is about. Written for beginners and experts alike, the book represents a valuable resource for anyone faced with the need to communicate about the environment yet constrained by lack of money and experience. |
definition of interpretation in science: A Model-Theoretic Realist Interpretation of Science E.B. Ruttkamp, 2013-03-14 In this book Emma Ruttkamp demonstrates the power of the full-blown employment of the model-theoretic paradigm in the philosophy of science. Within this paradigm she gives an account of sciences as process and product. She expounds the received statement and the non-statement views of science, and shows how the model-theoretic approach resolves the spurious tension between these views. In this endeavour she also engages the views of a number of contemporary philosophers of science with affinity to model theory. This text can be read by specialists working in philosophy of science or formal semantics, by logicians working on the structure of theories, and by students in philosophy of science - this text offers a thorough introduction to non-statement accounts of sciences as well as a discussion of the traditional statement account of science. |
definition of interpretation in science: Interpretation in Social Life, Social Science, and Marketing John O'Shaughnessy, 2009-05-07 This book analyzes the nature and role of interpretation in social interactions, decision making in social science enquiries and consumer marketing, in the use of statistics and causal analysis, in consumer evaluations of products and in interpreting problematic situations along side biases arising from the emotions. |
definition of interpretation in science: Reproducibility and Replicability in Science National Academies of Sciences, Engineering, and Medicine, Policy and Global Affairs, Committee on Science, Engineering, Medicine, and Public Policy, Board on Research Data and Information, Division on Engineering and Physical Sciences, Committee on Applied and Theoretical Statistics, Board on Mathematical Sciences and Analytics, Division on Earth and Life Studies, Nuclear and Radiation Studies Board, Division of Behavioral and Social Sciences and Education, Committee on National Statistics, Board on Behavioral, Cognitive, and Sensory Sciences, Committee on Reproducibility and Replicability in Science, 2019-10-20 One of the pathways by which the scientific community confirms the validity of a new scientific discovery is by repeating the research that produced it. When a scientific effort fails to independently confirm the computations or results of a previous study, some fear that it may be a symptom of a lack of rigor in science, while others argue that such an observed inconsistency can be an important precursor to new discovery. Concerns about reproducibility and replicability have been expressed in both scientific and popular media. As these concerns came to light, Congress requested that the National Academies of Sciences, Engineering, and Medicine conduct a study to assess the extent of issues related to reproducibility and replicability and to offer recommendations for improving rigor and transparency in scientific research. Reproducibility and Replicability in Science defines reproducibility and replicability and examines the factors that may lead to non-reproducibility and non-replicability in research. Unlike the typical expectation of reproducibility between two computations, expectations about replicability are more nuanced, and in some cases a lack of replicability can aid the process of scientific discovery. This report provides recommendations to researchers, academic institutions, journals, and funders on steps they can take to improve reproducibility and replicability in science. |
definition of interpretation in science: Implications and Impacts of eSports on Business and Society: Emerging Research and Opportunities Finch, David J., O'Reilly, Norm, Abeza, Gashaw, Clark, Brad, Legg, David, 2019-10-25 The global gaming market, due to numerous technological advancements in social media networking and live-streaming video, has exploded in recent years. However, this newly acquired popularity has left many industry professionals pondering a difficult enigma: How does this affect the professional world? Implications and Impacts of eSports on Business and Society: Emerging Research and Opportunities provides innovative research exploring the immersion of competitive electronic sports and applications within global marketing, business, and society. Featuring coverage on a broad range of topics such as social networking, sponsorship branding, and risk management, this book is ideally designed for sports and entertainment practitioners, communications professionals, marketers, business consultants, researchers, professionals, and students seeking current research on potential business opportunities in the eSports industry. |
definition of interpretation in science: Communicating Science Effectively National Academies of Sciences, Engineering, and Medicine, Division of Behavioral and Social Sciences and Education, Committee on the Science of Science Communication: A Research Agenda, 2017-03-08 Science and technology are embedded in virtually every aspect of modern life. As a result, people face an increasing need to integrate information from science with their personal values and other considerations as they make important life decisions about medical care, the safety of foods, what to do about climate change, and many other issues. Communicating science effectively, however, is a complex task and an acquired skill. Moreover, the approaches to communicating science that will be most effective for specific audiences and circumstances are not obvious. Fortunately, there is an expanding science base from diverse disciplines that can support science communicators in making these determinations. Communicating Science Effectively offers a research agenda for science communicators and researchers seeking to apply this research and fill gaps in knowledge about how to communicate effectively about science, focusing in particular on issues that are contentious in the public sphere. To inform this research agenda, this publication identifies important influences †psychological, economic, political, social, cultural, and media-related †on how science related to such issues is understood, perceived, and used. |
definition of interpretation in science: Mindful Inquiry in Social Research Valerie Malhotra Bentz, Jeremy J. Shapiro, 1998-06-24 This innovative introduction to research in the social sciences guides students and new researchers through the maze of research traditions, cultures of inquiry and epistemological frameworks. It introduces the underlying logic of ten cultures of inquiry: ethnography; quantitative behavioral science; phenomenology; action research; hermeneutics; evaluation research; feminist research; critical social science; historical-comparative research; and theoretical research. It clarifies conceptual and intellectual traditions in research, and puts researchers firmly in the investigative saddle - able to choose, justify, and explain the intellectual framework and personal rationale of their research. |
definition of interpretation in science: Analysis and Interpretation in the Exact Sciences Melanie Frappier, Derek Brown, Robert DiSalle, 2012-02-26 The essays in this volume concern the points of intersection between analytic philosophy and the philosophy of the exact sciences. More precisely, it concern connections between knowledge in mathematics and the exact sciences, on the one hand, and the conceptual foundations of knowledge in general. Its guiding idea is that, in contemporary philosophy of science, there are profound problems of theoretical interpretation-- problems that transcend both the methodological concerns of general philosophy of science, and the technical concerns of philosophers of particular sciences. A fruitful approach to these problems combines the study of scientific detail with the kind of conceptual analysis that is characteristic of the modern analytic tradition. Such an approach is shared by these contributors: some primarily known as analytic philosophers, some as philosophers of science, but all deeply aware that the problems of analysis and interpretation link these fields together. |
definition of interpretation in science: Investigating Your Environment , 1994 |
definition of interpretation in science: Phases of Interpretation Mara Frascarelli, 2008-08-22 This book investigates the concept of phase, aiming at a structural definition of the three domains that are assumed as the syntactic loci for interface interpretation, namely vP, CP and DP. In particular, three basic issues are addressed, that represent major questions of syntactic research within the Minimalist Program in the last decade. A) How is the set of minimally necessary syntactic operations to be characterised (including questions about the exact nature of copy and merge, the status of remnant movement, the role of head movement in the grammar), B) How is the set of minimally necessary functional heads to be characterised that determine the built-up and the interpretation of syntactic objects and C) How do these syntactic operations and objects interact with principles and requirements that are thought to hold at the two interfaces. The concept of phase has also implications for the research on the functional make-up of syntactic objects, implying that functional projections not only apply in a (universally given) hierarchy but split up in various phases pertaining to the head they are related to. This volume provides major contributions to this ongoing discussion, investigating these issues in a variety of languages (Berber, Dutch, English, German, Modern Greek, Hebrew, Italian, Norwegian and West Flemish) and combining the analysis of empirical data with the theoretical insights of the last years. |
definition of interpretation in science: Redefining Translation and Interpretation in Cultural Evolution Seel, Olaf Immanuel, 2017-10-31 Culture has a significant influence on the emerging trends in translation and interpretation. By studying language from a diverse perspective, deeper insights and understanding can be gained. Redefining Translation and Interpretation in Cultural Evolution is a pivotal reference source for the latest scholarly research on culture-oriented translation and interpretation studies in the contemporary globalized society. Featuring coverage on a range of topics such as sociopolitical factors, gender considerations, and intercultural communication, this book is ideally designed for linguistics, educators, researchers, academics, professionals, and students interested in cultural discourse in translation studies. |
definition of interpretation in science: A Framework for K-12 Science Education National Research Council, Division of Behavioral and Social Sciences and Education, Board on Science Education, Committee on a Conceptual Framework for New K-12 Science Education Standards, 2012-02-28 Science, engineering, and technology permeate nearly every facet of modern life and hold the key to solving many of humanity's most pressing current and future challenges. The United States' position in the global economy is declining, in part because U.S. workers lack fundamental knowledge in these fields. To address the critical issues of U.S. competitiveness and to better prepare the workforce, A Framework for K-12 Science Education proposes a new approach to K-12 science education that will capture students' interest and provide them with the necessary foundational knowledge in the field. A Framework for K-12 Science Education outlines a broad set of expectations for students in science and engineering in grades K-12. These expectations will inform the development of new standards for K-12 science education and, subsequently, revisions to curriculum, instruction, assessment, and professional development for educators. This book identifies three dimensions that convey the core ideas and practices around which science and engineering education in these grades should be built. These three dimensions are: crosscutting concepts that unify the study of science through their common application across science and engineering; scientific and engineering practices; and disciplinary core ideas in the physical sciences, life sciences, and earth and space sciences and for engineering, technology, and the applications of science. The overarching goal is for all high school graduates to have sufficient knowledge of science and engineering to engage in public discussions on science-related issues, be careful consumers of scientific and technical information, and enter the careers of their choice. A Framework for K-12 Science Education is the first step in a process that can inform state-level decisions and achieve a research-grounded basis for improving science instruction and learning across the country. The book will guide standards developers, teachers, curriculum designers, assessment developers, state and district science administrators, and educators who teach science in informal environments. |
definition of interpretation in science: Interdisciplinary Interpretation Kenneth A. Reynhout, 2013-06-20 The past fifty years has seen the emergence of an energetic dialogue between religion and the natural sciences that has contributed to a growing desire for interdisciplinarity among many constructive theologians. However, some have also resisted this trend, in part because it seems that the price one must pay for such engagement is much too high. Interdisciplinary work appears overly abstract and methodologically restrictive, with little room for systematic theologians self-consciously operating within a particular historical tradition. In Interdisciplinary Interpretation: Paul Ricoeur and the Hermeneutics of Theology and Science,Kenneth A. Reynhout seeks to address this concern by constructing an alternative understanding of interdisciplinary theology based on the hermeneutical thought of Paul Ricoeur, generally recognized as one of the most interdisciplinary philosophers of the twentieth century. Appealing to Ricoeur’s view of interpretation as the dialectical process of understanding through explanation, Reynhout argues that theology’s engagement with the natural sciences is fundamentally hermeneutical in character. As such, interdisciplinary theologians can faithfully borrow meaning from the sciences through a process of “interdisciplinary interpretation,” a process that can honestly attend to the legitimate challenges posed by the natural sciences without automatically requiring the evacuation of theological norms and convictions. Reynhout’s creative appropriation of Ricoeur’s hermeneutics succeeds in providing a novel interdisciplinary vision, not only for theology but also for interdisciplinary work in general. |
definition of interpretation in science: Interpretation and Method Dvora Yanow, Peregrine Schwartz-Shea, 2015-03-04 Exceptionally clear and well-written chapters provide engaging discussions of the methods of accessing, generating, and analyzing social science data, using methods ranging from reflexive historical analysis to critical ethnography. Reflecting on their own research experiences, the contributors offer an inside, applied perspective on how research topics, evidence, and methods intertwine to produce knowledge in the social sciences. |
definition of interpretation in science: Interpretable Machine Learning Christoph Molnar, 2020 This book is about making machine learning models and their decisions interpretable. After exploring the concepts of interpretability, you will learn about simple, interpretable models such as decision trees, decision rules and linear regression. Later chapters focus on general model-agnostic methods for interpreting black box models like feature importance and accumulated local effects and explaining individual predictions with Shapley values and LIME. All interpretation methods are explained in depth and discussed critically. How do they work under the hood? What are their strengths and weaknesses? How can their outputs be interpreted? This book will enable you to select and correctly apply the interpretation method that is most suitable for your machine learning project. |
definition of interpretation in science: International Handbook of Interpretation in Educational Research Paul Smeyers, David Bridges, Nicholas C. Burbules, Morwenna Griffiths, 2015-01-06 This handbook focuses on the often neglected dimension of interpretation in educational research. It argues that all educational research is in some sense ‘interpretive’, and that understanding this issue belies some usual dualisms of thought and practice, such as the sharp dichotomy between ‘qualitative’ and ‘quantitative’ research. Interpretation extends from the very framing of the research task, through the sources which constitute the data, the process of their recording, representation and analysis, to the way in which the research is finally or provisionally presented. The thesis of the handbook is that interpretation cuts across the fields (both philosophically, organizationally and methodologically). By covering a comprehensive range of research approaches and methodologies, the handbook gives (early career) researchers what they need to know in order to decide what particular methods can offer for various educational research contexts/fields. An extensive overview includes concrete examples of different kinds of research (not limited for example to ‘teaching’ and ‘learning’ examples as present in the Anglo-Saxon tradition, but including as well what in the German Continental tradition is labelled ‘pädagogisch’, examples from child rearing and other contexts of non-formal education) with full description and explanation of why these were chosen in particular circumstances and reflection on the wisdom or otherwise of the choice – combined in each case with consideration of the role of interpretation in the process. The handbook includes examples of a large number of methods traditionally classified as qualitative, interpretive and quantitative used across the area of the study of education. Examples are drawn from across the globe, thus exemplifying the different ‘opportunities and constraints’ that educational research has to confront in different societies. |
definition of interpretation in science: Psychodynamic Therapy Techniques Brian A. Sharpless, 2019-03-06 Psychodynamic therapy has a growing evidence base, is cost-effective, and may have unique mechanisms of clinical change. However, gaining competence in this approach generally requires extensive training and mastery of a large and complex literature. Integrating clinical theory and research findings, Psychodynamic Therapy Techniques provides comprehensive but practical guidance on the main interventions of contemporary psychodynamic practice. Early chapters describe the psychodynamic stance and illustrate effective means of identifying and understanding clinical problems. Later, the book describes how to question, clarify, confront, and interpret patient material as well as assess the clinical impacts of interventions. With these foundational tools in place, the book supplements the classic psychodynamic therapy techniques with six sets of supportive interventions helpful for lower-functioning patients or those in acute crisis. Complete with step-by-step instructions on how to prepare techniques as well as numerous clinical vignettes to illustrate their use in clinical settings, Psychodynamic Therapy Techniques effectively demystifies this important approach to therapy and helps practitioners more effectively apply them to a wide range of patients and problems. |
definition of interpretation in science: Interpretation Sam Ham, 2016-04-04 In the new edition of the international bestseller Environmental Interpretation, Sam H. Ham captures what has changed in our understanding of interpretation during the past two decades. Ham draws on recent advances in communication research to unveil a fresh and invigorating perspective that will lead interpreters to new and insightful pathways for making a difference on purpose through their work. |
definition of interpretation in science: Aesthetics, Problems in the Philosophy of Criticism Monroe C. Beardsley, 1981-01-01 This second edition features a new 48-page Afterword--1980 updating Professor Beardsley's classic work. |
definition of interpretation in science: The Limits of Interpretation Umberto Eco, 1994 Presents four theories describing the limits of literary interpretation, challenging the cancer of uncontrolled interpretation that diminishes the meaning and the basis of communication. -- Back cover. |
definition of interpretation in science: Interpretation and Understanding Marcelo Dascal, 2003-10-31 Our species has been hunting for meaning ever since we departed from our cousins in the evolutionary tree. We developed sophisticated forms of communication. Yet, as much as they can convey meaning and foster understanding, they can also hide meaning and prevent comprehension. Indeed, we can never be sure that a yes conveys assent or that a smile reveals pleasure. In order to ascertain what communicative behavior means, we have to go through an elaborate cognitive process of interpretation. This book deals with how we achieve the daily miracle of understanding each other. Based on the author ’s contributions to pragmatics, the book articulates his perspective using the insights of linguistics, the philosophy of language and rhetoric, and confronting alternatives to it. Theory formation is shaped by application to fields of human activity – such as legal practice, artificial intelligence, psychoanalysis, the media, literature, aesthetics, ethics and politics – where interpretation and understanding are paramount. Using an accessible language, this is a book addressed to specialists as well as to anyone interested in interpreting understanding and understanding the potentialities and limits of interpretation. |
definition of interpretation in science: Legal Interpretation and Scientific Knowledge David Duarte, Pedro Moniz Lopes, Jorge Silva Sampaio, 2019-09-25 This book discusses the question of whether legal interpretation is a scientific activity. The law’s dependency on language, at least for the usual communication purposes, not only makes legal interpretation the main task performed by those whose work involves the law, but also an unavoidable step in the process of resolving a legal case. This task of decoding the words and sentences used by normative authorities while enacting norms, carried out in compliance with the principles and rules of the natural language adopted, is prone to all of the difficulties stemming from the uncertainty intrinsic to all linguistic conventions. In this context, seeking to determine whether legal interpretation can be scientific or, in other words, can comply with the requirements for scientific knowledge, becomes a central question. In fact, the coherent application of the law depends on a knowledge regarding the meaning of normative sentences that can be classified (at least) as being structured, systematically organized and tendentially objective. Accordingly, this book focuses on analyzing precisely these problems; its respective contributions offer a range of revealing perspectives on both the problems and their ramifications. |
definition of interpretation in science: Interpretation Peter D. Juhl, 2014-07-14 This book provides and defends an analysis of our concept of the meaning of a literary work. P. D. Juhl challenges a number of widely held views concerning the role of an author's intention: the distinction between the real and the implied author; and the question of whether a work has not one correct, but many acceptable interpretations. Originally published in 1981. The Princeton Legacy Library uses the latest print-on-demand technology to again make available previously out-of-print books from the distinguished backlist of Princeton University Press. These editions preserve the original texts of these important books while presenting them in durable paperback and hardcover editions. The goal of the Princeton Legacy Library is to vastly increase access to the rich scholarly heritage found in the thousands of books published by Princeton University Press since its founding in 1905. |
definition of interpretation in science: Christian Science Sentinel , 1899 |
definition of interpretation in science: Semantics II: Interpretation and Truth M. Bunge, 2012-12-06 |
definition of interpretation in science: Problems of Science Federigo Enriques, 1914 |
definition of interpretation in science: Making Meaning David BORDWELL, David Bordwell, 2009-06-30 David Bordwell's new book is at once a history of film criticism, an analysis of how critics interpret film, and a proposal for an alternative program for film studies. It is an anatomy of film criticism meant to reset the agenda for film scholarship. As such Making Meaning should be a landmark book, a focus for debate from which future film study will evolve. Bordwell systematically maps different strategies for interpreting films and making meaning, illustrating his points with a vast array of examples from Western film criticism. Following an introductory chapter that sets out the terms and scope of the argument, Bordwell goes on to show how critical institutions constrain and contain the very practices they promote, and how the interpretation of texts has become a central preoccupation of the humanities. He gives lucid accounts of the development of film criticism in France, Britain, and the United States since World War II; analyzes this development through two important types of criticism, thematic-explicatory and symptomatic; and shows that both types, usually seen as antithetical, in fact have much in common. These diverse and even warring schools of criticism share conventional, rhetorical, and problem-solving techniques--a point that has broad-ranging implications for the way critics practice their art. The book concludes with a survey of the alternatives to criticism based on interpretation and, finally, with the proposal that a historical poetics of cinema offers the most fruitful framework for film analysis. |
definition of interpretation in science: Arguing about Science Alexander Bird, James Ladyman, 2013 This title offers a selection of thought-provoking articles that examine a broad range of issues, from the demarcation problem, induction and explanation to contemporary issues such as the relationship between science and race and gender, and science and religion |
definition of interpretation in science: Cognitive Techniques in Visual Data Interpretation Lidia Ogiela, 2009-07-21 The extremely rapid progress of science dealing with the design of new computer systems and the development of intelligent algorithmic solutions for solving c- plex problems has become apparent also in the field of computational intelligence and cognitive informatics methods. The progress of these new branches of inf- matics has only started a few years ago, but they are already making a very s- nificant contribution to the development of modern technologies, and also forming the foundations for future research on building an artificial brain and systems i- tating human thought processes. We are already able to build robots with basic machine intelligence, which can sometimes perform complex actions and also - erate by adapting to changing conditions of their surroundings. This very impr- sive development of intelligent systems is manifested in the creation of robotic devices which use artificial intelligence algorithms in their operations, mo- ments, when solving difficult problems or communicating with humans. It is also evidenced by the introduction of new methods of reasoning about and interpreting objects or events surrounding the system. One of the fields in which the need to deploy such modern solutions is obvious are cognitive vision systems used both in mobile robots and in computer systems which recognise or interpret the meaning of recorded signals or patterns. |
definition of interpretation in science: Meaning and the Dynamics of Interpretation Hans Kamp, 2013-10-17 This selection of research papers written by Hans Kamp presents the core of his scientific research on natural language semantics and its relation to logic, philosophy and linguistics. Arranged in six sections, the topics range from philosophical reflection on the foundational issues in the ancient Sorites Paradox with a formal account of its solution, to a detailed account of presuppositions in dynamic semantics. |
definition of interpretation in science: Fostering Integrity in Research National Academies of Sciences, Engineering, and Medicine, Policy and Global Affairs, Committee on Science, Engineering, Medicine, and Public Policy, Committee on Responsible Science, 2018-01-13 The integrity of knowledge that emerges from research is based on individual and collective adherence to core values of objectivity, honesty, openness, fairness, accountability, and stewardship. Integrity in science means that the organizations in which research is conducted encourage those involved to exemplify these values in every step of the research process. Understanding the dynamics that support †or distort †practices that uphold the integrity of research by all participants ensures that the research enterprise advances knowledge. The 1992 report Responsible Science: Ensuring the Integrity of the Research Process evaluated issues related to scientific responsibility and the conduct of research. It provided a valuable service in describing and analyzing a very complicated set of issues, and has served as a crucial basis for thinking about research integrity for more than two decades. However, as experience has accumulated with various forms of research misconduct, detrimental research practices, and other forms of misconduct, as subsequent empirical research has revealed more about the nature of scientific misconduct, and because technological and social changes have altered the environment in which science is conducted, it is clear that the framework established more than two decades ago needs to be updated. Responsible Science served as a valuable benchmark to set the context for this most recent analysis and to help guide the committee's thought process. Fostering Integrity in Research identifies best practices in research and recommends practical options for discouraging and addressing research misconduct and detrimental research practices. |
definition of interpretation in science: Research Methodology in Social Science Krishan Kumar Singh, 2022-01-15 Research Methodology in Social Science Research Methodology in Social Sciences is of great importance in disciplines and interested people on searching various knowledge or solution to a phenomenon. The main purpose of the book is to share scholarly knowledge about research and its complexity. This book can be used to train the basics and techniques involved on doing inquiries from different views. The experience shows that, no single cure for all diseases. So when comes to research, there is no single research methodology or technique which fits all circum-stances. Hence, the book tries to identify a family of approaches towards various research situations and distinguish their outcomes. |
definition of interpretation in science: Theory in Social and Cultural Anthropology R. Jon McGee, Richard L. Warms, 2013-08-28 Social and cultural anthropology and archaeology are rich subjects with deep connections in the social and physical sciences. Over the past 150 years, the subject matter and different theoretical perspectives have expanded so greatly that no single individual can command all of it. Consequently, both advanced students and professionals may be confronted with theoretical positions and names of theorists with whom they are only partially familiar, if they have heard of them at all. Students, in particular, are likely to turn to the web to find quick background information on theorists and theories. However, most web-based information is inaccurate and/or lacks depth. Students and professionals need a source to provide a quick overview of a particular theory and theorist with just the basics—the who, what, where, how, and why, if you will. In response, SAGE Reference plans to publish the two-volume Theory in Social and Cultural Anthropology: An Encyclopedia. Features & Benefits: Two volumes containing approximately 335 signed entries provide users with the most authoritative and thorough reference resource available on anthropology theory, both in terms of breadth and depth of coverage. To ease navigation between and among related entries, a Reader's Guide groups entries thematically and each entry is followed by Cross-References. In the electronic version, the Reader's Guide combines with the Cross-References and a detailed Index to provide robust search-and-browse capabilities. An appendix with a Chronology of Anthropology Theory allows students to easily chart directions and trends in thought and theory from early times to the present. Suggestions for Further Reading at the end of each entry and a Master Bibliography at the end guide readers to sources for more detailed research and discussion. |
definition of interpretation in science: Encyclopedia of Research Design Neil J. Salkind, 2010-06-22 Comprising more than 500 entries, the Encyclopedia of Research Design explains how to make decisions about research design, undertake research projects in an ethical manner, interpret and draw valid inferences from data, and evaluate experiment design strategies and results. Two additional features carry this encyclopedia far above other works in the field: bibliographic entries devoted to significant articles in the history of research design and reviews of contemporary tools, such as software and statistical procedures, used to analyze results. It covers the spectrum of research design strategies, from material presented in introductory classes to topics necessary in graduate research; it addresses cross- and multidisciplinary research needs, with many examples drawn from the social and behavioral sciences, neurosciences, and biomedical and life sciences; it provides summaries of advantages and disadvantages of often-used strategies; and it uses hundreds of sample tables, figures, and equations based on real-life cases.--Publisher's description. |
definition of interpretation in science: Dictionary of Biblical Criticism and Interpretation , |
definition of interpretation in science: The Science of Logic Peter Coffey, 1912 |
definition of interpretation in science: Law, Interpretation and Reality P.J. Nerhot, 2013-04-17 PATRICKNERHOT Since the two operations overlap each other so much, speaking about fact and interpretation in legal science separately would undoubtedly be highly artificial. To speak about fact in law already brings in the operation we call interpretation. EquaHy, to speak about interpretation is to deal with the method of identifying reality and therefore, in large part, to enter the area of the question of fact. By way of example, Bemard Jackson's text, which we have placed in section 11 of the first part of this volume, could no doubt just as weH have found a horne in section I. This work is aimed at analyzing this interpretation of the operation of identifying fact on the one hand and identifying the meaning of a text on the other. All philosophies of law recognize themselves in the analysis they propose for this interpretation, and we too shall seek in this volume to fumish a few elements of use for this analysis. We wish however to make it clear that our endeavour is addressed not only to legal philosophers: the nature of the interpretive act in legal science is a matter of interest to the legal practitioner too. He will find in these pages, we believe, elements that will serve hirn in rcflcction on his daily work. |
definition of interpretation in science: WISC-III Clinical Use and Interpretation Aurelio Prifitera, Donald H. Saklofske, 1998-01-09 The WISC-III is the most frequently used IQ assessment technique in the United States. This book discusses the clinical use of the WISC-III with respect to specific clinical populations, and covers research findings on the validity and reliability of the test. It also includes standardization data from the Psychological Corporation. Many of the contributors participated in the development of the WISC-III and are in a unique position to discuss the clinical uses of this measure. The book describes the WISC-III from scientist-practitioner perspectives. It provides methods to aid in understanding and interpreting the WISC-III results for various groups of exceptional children. The book also presents detailed descriptions of behavior and achievement as well as recommendations for test interpreting standards.WISC-III Clinical Use and Interpretation has immediate and practical relevance to professionals who administer, interpret, or use the results of the WISC-III. The solid writing by leading experts makes the contents of this book an essential reference for WISC-III users. - Leading experts discuss the clinical use of the WISC-III - Thorough coverage of the literature with many new findings - Covers wide range of exceptionalities from AD/HD to learning disabilities - Direct relevance to practitioners, researchers, and trainers |
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DEFINITION Definition & Meaning - Merriam-Webster
The meaning of DEFINITION is a statement of the meaning of a word or word group or a sign or symbol. How to use definition in a sentence.
DEFINITION Definition & Meaning - Dictionary.com
Definition definition: the act of defining, or of making something definite, distinct, or clear.. See examples of DEFINITION used in a sentence.
DEFINITION | English meaning - Cambridge Dictionary
DEFINITION definition: 1. a statement that explains the meaning of a word or phrase: 2. a description of the features and…. Learn more.
DEFINITION definition and meaning | Collins English Dictionary
A definition is a statement giving the meaning of a word or expression, especially in a dictionary.
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Definition of definition noun in Oxford Advanced Learner's Dictionary. Meaning, pronunciation, picture, example sentences, grammar, usage notes, synonyms and more.
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Jun 8, 2025 · definition (countable and uncountable, plural definitions) ( semantics , lexicography ) A statement of the meaning of a word , word group, sign , or symbol ; especially, a dictionary …
Definition Definition & Meaning | Britannica Dictionary
DEFINITION meaning: 1 : an explanation of the meaning of a word, phrase, etc. a statement that defines a word, phrase, etc.; 2 : a statement that describes what something is
Dictionary.com | Meanings & Definitions of English Words
3 days ago · The world's leading online dictionary: English definitions, synonyms, word origins, example sentences, word games, and more. A trusted authority for 25+ years!