Making Scientific Instruments in the Industrial Revolution


Book Description

At the start of the Industrial Revolution, it appeared that most scientific instruments were made and sold in London, but by the time of the Great Exhibition in 1851, a number of provincial firms had the self-confidence to exhibit their products in London to an international audience. How had this change come about, and why? This book looks at the four main, and two lesser, English centres known for instrument production outside the capital: Birmingham, Liverpool, Manchester and Sheffield, along with the older population centres in Bristol and York. Making wide use of new sources, Dr Morrison-Low, curator of history of science at the National Museums of Scotland, charts the growth of these centres and provides a characterisation of their products. New information is provided on aspects of the trade, especially marketing techniques, sources of materials, tools and customer relationships. From contemporary evidence, she argues that the principal output of the provincial trade (with some notable exceptions) must have been into the London marketplace, anonymously, and at the cheaper end of the market. She also discusses the structure and organization of the provincial trade, and looks at the impact of new technology imported from other closely-allied trades. By virtue of its approach and subject matter the book considers aspects of economic and business history, gender and the family, the history of science and technology, material culture, and patterns of migration. It contains a myriad of stories of families and firms, of entrepreneurs and customers, and of organizations and arms of government. In bringing together this wide range of interests, Dr Morrison-Low enables us to appreciate how central the making, selling and distribution of scientific instruments was for the Industrial Revolution.




Rhythm Made Easy Vol. 1


Book Description

Rhythm Made Easy takes rhythm and turns it into simple, digestible clapping exercises that can be executed by anyone looking to learn how to count rhythm. Each exercise builds on the last, and Ross the Music Teacher has a video example for each and every exercise, totaling 100! Isolate rhythm and master it, so that you can count flawlessly on your instrument.





Book Description




Making Instruments Count


Book Description

The university has very different priorities from the salesroom, the museum from the antiques fair, but the challenge of instrument history is to integrate connoisseurship, technical insight and historical sensitivity, while not neglecting the trade institutions and practices of the makers and remaining familiar with instrument populations in both the captivity of museums and the relative freedom of the market-place. This volume is presented to Gerard Turner, who has been at the forefront of promoting instrument studies in recent years. After a twenty-five-year association with the Museum of the History of Science at Oxford, a Visiting Professorship in the History of Scientific Instruments was established for him at the Imperial College, London, in 1988, from where he has been able to increase his research in this field.




Instruments of Science


Book Description

With over 300 entries from the ancient abacus to X-ray diffraction, as represented by a ca. 1900 photo of an X- ray machine as well as the latest research into filmless x- ray systems, this tour of the history of scientific instruments in multiple disciplines provides context and a bibliography for each entry. Newer conceptions of "instrument" include organisms widely used in research: e.g. the mouse, drosophila, and E. coli. Bandw photographs and diagrams showcase more traditional instruments from The Science Museum, London, and the Smithsonian's National Museum of American History. Annotation copyrighted by Book News, Inc., Portland, OR




Enlightened Oxford


Book Description

Enlightened Oxford aims to discern, establish, and clarify the multiplicity of connections between the University of Oxford, its members, and the world outside; to offer readers a fresh, contextualised sense of the University's role in the state, in society, and in relation to other institutions between the Williamite Revolution and the first decade of the nineteenth century, the era loosely describable (though not without much qualification) as England's ancien regime. Nigel Aston asks where Oxford fitted in to the broader social and cultural picture of the time, locating the University's importance in Church and state, and pondering its place as an institution that upheld religious entitlement in an ever-shifting intellectual world where national and confessional boundaries were under scrutiny. Enlightened Oxford is less an inside history than a consideration of an institutional presence and its place in the life of the country and further afield. While admitting the degree of corporate inertia to be found in the University, there was internal scope for members so inclined to be creative in their teaching, open new research lines, and be unapologetic Whigs rather than unrepentant Tories. For if Oxford was a seat of learning rooted in its past - and with an increasing antiquarian awareness of its inheritance - yet it had a surprising capacity for adaptation, a scope for intellectual and political pluralism that was not incompatible with enlightened values.




Cabinets of Experimental Philosophy in Eighteenth-Century Europe


Book Description

Cabinets of Experimental Philosophy in Eighteenth-Century Europe is an ambitious contribution to the growing interest in how science came to engage the attention of a public outside the academic and professional spheres and how collections of instruments played a formative role in this development. Collections of physical instruments for research and demonstration appeared throughout Europe in the eighteenth century and the coverage of the book is correspondingly broad. While collections in different cultural and geographical locations had much in common, there were significant local modifications. The essays in this book illustrate how science, sometimes thought to be monolithic and universal, can maintain core intellectual characteristics and practical techniques while adapting to particular sites and circumstances. Contributors include: Jim Bennett, Sofia Talas, Huib J. Zuidervaart, Hans Hooijmaijers, Ad Maas, Tiemen Cocquyt, Inga Elmqvist Söderlund, Paola Bertucci, Marta C. Lourenço, David Felismino, Ivano Dal Prete, Ewa Wyka, Martin Weiss, and Paolo Brenni.




Materials and Expertise in Early Modern Europe


Book Description

It is often assumed that natural philosophy was the forerunner of early modern natural sciences. But where did these sciences’ systematic observation and experimentation get their starts? In Materials and Expertise in Early Modern Europe, the laboratories, workshops, and marketplaces emerge as arenas where hands-on experience united with higher learning. In an age when chemistry, mineralogy, geology, and botany intersected with mining, metallurgy, pharmacy, and gardening, materials were objects that crossed disciplines. Here, the contributors tell the stories of metals, clay, gunpowder, pigments, and foods, and thereby demonstrate the innovative practices of technical experts, the development of the consumer market, and the formation of the observational and experimental sciences in the early modern period. Materials and Expertise in Early Modern Europe showcases a broad variety of forms of knowledge, from ineffable bodily skills and technical competence to articulated know-how and connoisseurship, from methods of measuring, data gathering, and classification to analytical and theoretical knowledge. By exploring the hybrid expertise involved in the making, consumption, and promotion of various materials, and the fluid boundaries they traversed, the book offers an original perspective on important issues in the history of science, medicine, and technology.







Sextants at Greenwich


Book Description

This book describes the history and development of navigating instruments. Before satellites these were used to measure the altitude of the sun and stars above the horizon, to determine the ship's position at sea. The book also contains a catalogue of 347 mariner's astrolabes, cross-staffs, backstaffs, and octants, sextants and artificial horizons.