This book studies the Dutch mathematician Simon Stevin (1548-1620) as a new type of ‘man of knowledge’. Stevin exemplifies a wider trend of polymathy in the early modern period. Polymaths played a crucial role in the transformation of European learning.
In science and technology, the images used to depict ideas, data, and reactions can be as striking and explosive as the concepts and processes they embody—both works of art and generative forces in their own right. Drawing on a close dialogue between the histories of art, science, and technology, The Technical Image explores these images not as mere illustrations or examples, but as productive agents and distinctive, multilayered elements of the process of generating knowledge. Using beautifully reproduced visuals, this book not only reveals how scientific images play a constructive role in shaping the findings and insights they illustrate, but also—however mechanical or detached from individual researchers’ choices their appearances may be—how they come to embody the styles of a period, a mindset, a research collective, or a device. Opening with a set of key questions about artistic representation in science, technology, and medicine, The Technical Image then investigates historical case studies focusing on specific images, such as James Watson’s models of genes, drawings of Darwin’s finches, and images of early modern musical automata. These case studies in turn are used to illustrate broad themes ranging from “Digital Images” to “Objectivity and Evidence” and to define and elaborate upon fundamental terms in the field. Taken as a whole, this collection will provide analytical tools for the interpretation and application of scientific and technological imagery.
Winner of the 2017 John Thackray Medal awarded by the Society for the History of Natural History, U.K. Martin Lister (1639–1712) was a consummate virtuoso, the first arachnologist and conchologist, and a Royal physician. As one of the most prominent corresponding fellows of the Royal Society, many of Lister’s discoveries in natural history, archaeology, medicine, and chemistry were printed in the Philosophical Transactions. Lister corresponded extensively with explorers and other virtuosi such as John Ray, who provided him with specimens, observations, and locality records from Jamaica, America, Barbados, France, Italy, the Netherlands, and his native England. This volume of ca. 400 letters (one of three), consists of Lister’s correspondence dated from 1662 to 1677, including his time as a Cambridge Fellow, his medical training in Montpellier, and his years as a practicing physician in York.
'Bertoloni Meli reexamines such major texts as Galileo's Dialogues Concerning Two New Sciences, Descartes' Principles of Philosophy, and Newton's Principia, and in them finds a reliance on objects that has escaped proper understanding. From Pappus of Alexandria to Guidobaldo dal Monte, Bertoloni Meli sees significant developments in the history of mechanical experimentation, all of them crucial for understanding Galileo. Bertoloni Meli uses similarities and tensions between dal Monte and Galileo as a springboard for exploring the revolutionary nature of seventeenth-century mechanics.' (Back cover)
In The Golden Mean of Languages, Alisa van de Haar sheds new light on the debates regarding the form and status of the vernacular in the early modern Low Countries, where both Dutch and French were local tongues. The fascination with the history, grammar, spelling, and vocabulary of Dutch and French has been studied mainly from monolingual perspectives tracing the development towards modern Dutch or French. Van de Haar shows that the discussions on these languages were rooted in multilingual environments, in particular in French schools, Calvinist churches, printing houses, and chambers of rhetoric. The proposals that were formulated there to forge Dutch and French into useful forms were not directed solely at uniformization but were much more diverse.
This revised and greatly expanded edition of the Russian classic contains a wealth of new information about the lives of many great mathematicians and scientists, past and present. Written by a distinguished mathematician and featuring a unique mix of mathematics, physics, and history, this text combines original source material and provides careful explanations for some of the most significant discoveries in mathematics and physics. What emerges are intriguing, multifaceted biographies that will interest readers at all levels.
It is commonly assumed that the creation story of Genesis and its chronology were the only narratives openly available in medieval and early modern Europe and that the discovery of geological time in the eighteenth century came as a momentous breakthrough that shook the faith in the historical accuracy of the Bible. Historians of science, mainstream geologists, and Young Earth creationists alike all share the assumption that the notion of an ancient Earth was highly heterodox in the pre-modern era. The old age of the world is regarded as the offspring of a secularized science. In this book, Ivano Dal Prete radically revises the commonplace history of deep time in Western culture. He argues that the chronology of the Bible always coexisted with alternative approaches that placed the origin of the Earth into a far, undetermined (or even eternal) past. From the late Middle Ages, these notions spread freely not only in universities and among the learned, but even in popular works of meteorology, geology, literature, and art that made them easily accessible to a vernacular and scientifically illiterate public. Religious authorities did not regard these notions as particularly problematic, let alone heretical. Neither the authors nor their numerous readers thought that holding such views was incompatible with their Christian faith. While the appeal of theories centered on the biblical Flood and on a young Earth gained popularity over the course of the seventeenth century, their more secular alternatives remained vital and debated. Enlightenment thinkers, however, created a myth of a Christian tradition that uniformly rejected the antiquity of the world, as opposed to a new secular science ready to welcome it. Largely unchallenged for almost three centuries, that account solidified over time into a still dominant truism. Based on a wealth of mostly unexplored sources, On the Edge of Eternity offers an original and nuanced account of the history of deep time that illuminates the relationship between the history of science and Christianity in the medieval and early modern periods, with lasting implications for Western society.
Mathematics Across Cultures: A History of Non-Western Mathematics consists of essays dealing with the mathematical knowledge and beliefs of cultures outside the United States and Europe. In addition to articles surveying Islamic, Chinese, Native American, Aboriginal Australian, Inca, Egyptian, and African mathematics, among others, the book includes essays on Rationality, Logic and Mathematics, and the transfer of knowledge from East to West. The essays address the connections between science and culture and relate the mathematical practices to the cultures which produced them. Each essay is well illustrated and contains an extensive bibliography. Because the geographic range is global, the book fills a gap in both the history of science and in cultural studies. It should find a place on the bookshelves of advanced undergraduate students, graduate students, and scholars, as well as in libraries serving those groups.