Open Science: the Very Idea


Book Description

This open access book provides a broad context for the understanding of current problems of science and of the different movements aiming to improve the societal impact of science and research. The author offers insights with regard to ideas, old and new, about science, and their historical origins in philosophy and sociology of science, which is of interest to a broad readership. The book shows that scientifically grounded knowledge is required and helpful in understanding intellectual and political positions in various discussions on the grand challenges of our time and how science makes impact on society. The book reveals why interventions that look good or even obvious, are often met with resistance and are hard to realize in practice. Based on a thorough analysis, as well as personal experiences in aids research, university administration and as a science observer, the author provides - while being totally open regarding science's limitations- a realistic narrative about how research is conducted, and how reliable ‘objective’ knowledge is produced. His idea of science, which draws heavily on American pragmatism, fits in with the global Open Science movement. It is argued that Open Science is a truly and historically unique movement in that it translates the analysis of the problems of science into major institutional actions of system change in order to improve academic culture and the impact of science, engaging all actors in the field of science and academia.




Science in Translation


Book Description

Montgomery explores the roles that translation has played in the development of Western science from antiquity to the end of the 20th century. He presents case histories of science in translation from a variety of disciplines & cultural contexts.




The Very Idea of Modern Science


Book Description

This book is a study of the scientific revolution as a movement of amateur science. It describes the ideology of the amateur scientific societies as the philosophy of the Enlightenment Movement and their social structure and the way they made modern science such a magnificent institution. It also shows what was missing in the scientific organization of science and why it gave way to professional science in stages. In particular the book studies the contributions of Sir Francis Bacon and of the Hon. Robert Boyle to the rise of modern science. The philosophy of induction is notoriously problematic, yet its great asset is that it expressed the view of the Enlightenment Movement about science. This explains the ambivalence that we still exhibit towards Sir Francis Bacon whose radicalism and vision of pure and applied science still a major aspect of the fabric of society. Finally, the book discusses Boyle’s philosophy, his agreement with and dissent from Bacon and the way he single-handedly trained a crowd of poorly educated English aristocrats and rendered them into an army of able amateur researchers.




The Market in Mind


Book Description

A critical examination of translational medicine, when private risk is transferred to the public sector and university research teams become tech startups for global investors. A global shift has secretly transformed science and medicine. Starting in 2003, biomedical research in the West has been reshaped by the emergence of translational science and medicine—the idea that the aim of research is to translate findings as quickly as possible into medical products. In The Market in Mind, Mark Dennis Robinson charts this shift, arguing that the new research paradigm has turned university research teams into small biotechnology startups and their industry partners into early-stage investment firms. There is also a larger, surprising consequence from this shift: according to Robinson, translational science and medicine enable biopharmaceutical firms, as part of a broader financial strategy, to outsource the riskiest parts of research to nonprofit universities. Robinson examines the implications of this new configuration. What happens, for example, when universities absorb unknown levels of risk? Robinson argues that in the years since the global financial crisis translational science and medicine has brought about “the financialization of health.” Robinson explores such topics as shareholder anxiety and industry retreat from Alzheimer's and depression research; how laboratory research is understood as health innovation even when there is no product; the emergence of investor networking events as crucial for viewing science in a market context; and the place of patients in research decisions. Although translational medicine justifies itself by the goal of relieving patients' suffering, Robinson finds patients' voices largely marginalized in translational neuroscience.




Galileo's Finger


Book Description

Any literate person should be familiar with the central ideas of modern science. In his sparkling new book, Peter Atkins introduces his choice of the ten great ideas of science. With wit, charm, patience, and astonishing insights, he leads the reader through the emergence of the concepts, and then presents them in a strikingly effective manner. At the same time, he works into his engaging narrative an illustration of the scientific method and shows how simple ideas can have enormous consequences. His choice of the ten great ideas are: * Evolution occurs by natural selection, in which the early attempts at explaining the origin of species is followed by an account of the modern approach and some of its unsolved problems. * Inheritance is encoded in DNA, in which the story of the emergence of an understanding of inheritance is followed through to the mapping of the human genome. * Energy is conserved, in which we see how the central concept of energy gradually dawned on scientists as they mastered the motion of particles and the concept of heat. * All change is the consequence of the purposeless collapse of energy and matter into disorder, in which the extraordinarily simple concept of entropy is used to account for events in the world. * Matter is atomic, in which we see how the concept of atoms emerged and how the different personalities of the elements arise from the structures of their atoms. * Symmetry limits, guides, and drives, in which we see how concepts related to beauty can be extended to understand the nature of fundamental particles and the forces that act between them. * Waves behave like particles and particles behave like waves, in which we see how old familiar ideas gave way to the extraordinary insights of quantum theory and transformed our perception of matter. * The universe is expanding, in which we see how a combination of astronomy and a knowledge of elementary particles accounts for the origin of the universe and its long term future. * Spacetime is curved by matter, in which we see the emergence of the theories of special and general relativity and come to understand the nature of space and time. * If arithmetic is consistent, then it is incomplete, in which we learn the origin of numbers and arithmetic, see how the philosophy of mathematics lets us understand the nature of this most cerebral of subjects, and are brought to the limits of its power. C. P. Snow once said 'not knowing the second law of thermodynamics is like never having read a work by Shakespeare'. This is an extraordinary, exciting book that not only will make you literate in science but give you deep enjoyment on the way.




Science


Book Description

Science: A Four Thousand Year History rewrites science's past. Instead of focussing on difficult experiments and abstract theories, Patricia Fara shows how science has always belonged to the practical world of war, politics, and business. Rather than glorifying scientists as idealized heroes, she tells true stories about real people - men (and some women) who needed to earn their living, who made mistakes, and who trampled down their rivals in their quest for success. Fara sweeps through the centuries, from ancient Babylon right up to the latest hi-tech experiments in genetics and particle physics, illuminating the financial interests, imperial ambitions, and publishing enterprises that have made science the powerful global phenomenon that it is today. She also ranges internationally, illustrating the importance of scientific projects based around the world, from China to the Islamic empire, as well as the more familiar tale of science in Europe, from Copernicus to Charles Darwin and beyond. Above all, this four thousand year history challenges scientific supremacy, arguing controversially that science is successful not because it is always right - but because people have said that it is right.




Applied Science


Book Description

Robert Bud explores the rise and fall of 'applied science' as a class of scientific thought and practice. UK focussed, the study has international implications. Over two centuries, lay actors and scientists interacted through politics, stories and institutions to shape a category that would eventually fade in favour of 'technology'.




Science in Translation


Book Description

Despite the crucial role played by translation in the history of scientific ideas and the transmission of knowledge, historians of science have seldom been interested in the translation activity which enabled the spread of those ideas and exerted influence on structures and systems of knowledge. Translation scholars, too, have traditionally shown little interest in theorizing scientific translation. Recent conceptualizations of science as public culture, institution, narrative and rhetorical practice open the way for research on the translation of science to take conceptual and methodological inspiration from studies of discourse, rhetoric, the sociology of science, the history of science, the philosophy of science and other related fields. This special issue of The Translator foregrounds the work of researchers, within or on the periphery of translation studies, who have begun to interrogate the representation of scientific knowledge through translation. Drawing on a wide range of disciplines and models, contributors engage with different perspectives and approaches to help promote the visibility of scientific translation and shed light on its complex relationship with power and the construction of knowledge. Contributors: Brecht Algoet, Karen Bennett, Lidia Camara, Eva Espasa, Lieve Jooken, Monika Krein-Kühle, Min-Hsiu Liao, Ruselle Meade, Guy Rooryck, Dolores Sánchez, Hala Sharkas, Mark Shuttleworth, Richard Somerset, Liselotte Vandenbussche , Sonia Vandepitte




Translational Control in Biology and Medicine


Book Description

Updated and broadened 3rd edition. Since the last edition was published, the structures of the bacterial and eukaryotic ribosomes have been published, adding substantially to our knowledge of the basic mechanisms of translation. Understanding of how translation is regulated, by both protein and RNA regulators, has also advanced considerable. In addition, the current manifesttion of this volume has a significant focus on the role of translational control in human development and disease.




Towards Transcultural Awareness in Translation Pedagogy


Book Description

This volume gathers a wide range of voices in Translation Studies offering theoretical insights and practical ideas on how to tackle the cultural dimension in translation pedagogy. Issues range from curriculum planning to evaluation methods. The volume illustrates that the practice of 'translating culture' in the classroom goes beyond the translation of so-called realia. It also promotes the notion that translation teachers should foster transcultural awareness among their students, whereby intercultural differences and similarities may be negotiated and transcended in the act of translation. Julie Deconinck, Philippe Humble, Arvi Sepp and Helene Stengers are affiliated to the Applied Linguistics Department of the Vrije Universiteit Brussel, Belgium.