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Emergent Histories

For generations, artefacts and information of all kinds have been assembled in diverse collections across the UK. Museum objects, archives, pictures, moving images and media, records of historical places, even datasets derived from state, commercial and individual activity, all have been catalogued and stored. Yet in most museums and galleries, only a tiny proportion of physical collections are shown in public displays, with vast stores kept in reserve for research, although researchers rarely come. Great repositories of cultural capital, the knowledge they hold has been largely untapped – until now.

For nearly half a century, heritage organisations have created digital inventories of their collections. Inspired by the prospect of combining these records so they may be explored together, the Congruence Engine research project set out to build digital bridges and pathways between collections dedicated to the UK’s industrial history for textiles, energy and communications. Launched in 2021, Congruence Engine navigated the generative AI revolution that commenced a year later. As a result, Emergent Histories is by turns a reflection on the historical and curatorial possibilities arising from collections, a digital history how-to manual, and a narrative of the tribulations of AI early adopters. It will be of interest to historians, curators, students – and to anyone who cares for the industrial aspects of our past.

Imperial Science, the Organic Movement and the Path to Shangri-La, 1900-1969

Imperial Science, the Organic Movement and the Path to Shangri-La, 1900-1969 investigates scientific studies undertaken in British India by Robert McCarrison and Albert Howard in the 1920s, and how this research was later adapted in Britain and the USA. It examines how imperial agendas and colonial stereotyping shaped McCarrison’s dietary laboratory experiments and Howard’s development of the Indore Composting Process. Ashok Malhotra reveals how Indian scientists and Indian Princes contributed to the research culture in the institutes that were founded by these two British scientists, and in so doing, he draws attention to figures whose contributions have previously been overlooked by scholars. Malhotra demonstrates how McCarrison’s and Howard’s research was interpreted by British and US-based organic farming advocates to advocate for agricultural methods which returned organic matter to the soil and rejected chemical fertilisers.

It discusses how organic advocates on both sides of the Atlantic deployed the Hunzas, a community in British India (later Pakistan), as an example of a ‘tribe’ whose vigour could be ascribed to their farming techniques and diets. The narrative concludes by demonstrating how US travel writers in the 1950s and 1960s represented Hunza as a Shangri-La – a paradise whose inhabitants lived prolonged lives in blissful contentment.

The Royal Observatory, Greenwich, 1881–1939

Between the late nineteenth century and the outbreak of the Second World War, astronomy underwent a radical change, from a science centred on the positional measurement of stars to the study of astrophysics and the universe. This book tells the story of the Royal Observatory at Greenwich from 1881 to 1939, charting a hitherto under-researched period of its history and bringing its management to life.

Using a wealth of primary-source research in the Royal Observatory’s archives and elsewhere, Lee T. Macdonald describes and analyses how the Observatory, originally founded in 1675 to tackle the problem of finding longitude at sea, branched out into areas at the cutting edge of astronomical research, including photographic mapping of the sky and the study of solar eclipses. He shows how the Observatory remained committed to the traditional missions in navigational and positional astronomy, and how its work became increasingly challenged by the growth of London, culminating in relocation. The story is a valuable exemplar of how a working observatory gradually transformed into a heritage institution, which thrives to this day.

The Royal Observatory, Greenwich, 1881–1939 will be essential reading for astronomers and historians of science, and important for heritage professionals, particularly those working in historic scientific institutions.

The Poetry of John Tyndall

John Tyndall (1822–1893) is best known as a leading natural philosopher and trenchant public intellectual of the Victorian age. He discovered the physical basis of the greenhouse effect, explained why the sky is blue, and spoke and wrote controversially on the relationship between science and religion. Few people were aware that he also wrote poetry. The Poetry of John Tyndall contains his 76 extant poems, the majority of which have not been transcribed or published before, and are succinctly annotated in a style similar to that used for the letters published in The Correspondence of John Tyndall.

The poems are complemented by an extended introduction, which was written by the three editors together as a multidisciplinary analysis. The essay aims to facilitate readings by a range of people interested in the history of Victorian science and of Victorian science and literature. It explores what the poems can tell us about Tyndall’s self-fashioning, his values and beliefs, and the role of poetry for him and his circle. More broadly, the essay addresses the relationship between the scientific and poetic imaginations, and wider questions of the nature and purpose of poetry in relation to science and religion in the nineteenth century.

Palaeontology in Public

The image depicts the cover of a book titled 'Palaeontology in Public: Popular Science, Deep Time, Creatures and Lost Worlds' which is edited by Chris Manias. It features an illustration of a large green sauropod dinosaur in a modern city park surrounded by people, with a cityscape and tall buildings, including one resembling the Empire State Building, in the background.

Since the establishment of concepts of deep time in the late eighteenth and early nineteenth centuries, palaeontology has been one of the most high-profile sciences. Dinosaurs, mammoths, human ancestors and other lost creatures from Earth’s history are some of the most prominent icons of science, and are essential for our understanding of nature and time. Palaeontology and its practitioners have had a huge impact on public understandings of science, despite their often precarious and unsteady position within scientific institutions and networks.

Palaeontology in Public considers the connections between palaeontology and public culture across the past two centuries. In so doing, it explores how these public dimensions have been crucial to the development of palaeontology, and indeed how they conditioned wider views of science, nature, the environment, time and the world. The book provides a history of vertebrate palaeontology through a series of compelling case studies. Dinosaurs feature, of course, including Spinosaurus, Winsor McCay’s ‘Gertie the Dinosaur’ and the creatures of Jurassic Park and The Lost World. But there are also the small mammals of the Mesozoic, South American Glyptodons, and human ancestors like Neanderthals and Australopithecines. This book shows how palaeontology is defined by its relationship with public audiences and how this connection is central to our vision of the past and future of the Earth and its inhabitants.

A History of Scientific Journals

Modern scientific research has changed so much since Isaac Newton’s day: it is more professional, collaborative and international, with more complicated equipment and a more diverse community of researchers. Yet the use of scientific journals to report, share and store results is a thread that runs through the history of science from Newton’s day to ours. Scientific journals are now central to academic research and careers. Their editorial and peer-review processes act as a check on new claims and findings, and researchers build their careers on the list of journal articles they have published. The journal that reported Newton’s optical experiments still exists. First published in 1665, and now fully digital, the Philosophical Transactions has carried papers by Charles Darwin, Dorothy Hodgkin and Stephen Hawking. It is now one of eleven journals published by the Royal Society of London.

Unrivalled insights from the Royal Society’s comprehensive archives have enabled the authors to investigate more than 350 years of scientific journal publishing. The editorial management, business practices and financial difficulties of the Philosophical Transactions and its sibling Proceedings reveal the meaning and purpose of journals in a changing scientific community. At a time when we are surrounded by calls to reform the academic publishing system, it has never been more urgent that we understand its history.

Women in the History of Science

Women in the History of Science brings together primary sources that highlight women’s involvement in scientific knowledge production around the world. Drawing on texts, images and objects, each primary source is accompanied by an explanatory text, questions to prompt discussion, and a bibliography to aid further research. Arranged by time period, covering 1200 BCE to the twenty-first century, and across 12 inclusive and far-reaching themes, this book is an invaluable companion to students and lecturers alike in exploring women’s history in the fields of science, technology, mathematics, medicine and culture.

While women are too often excluded from traditional narratives of the history of science, this book centres on the voices and experiences of women across a range of domains of knowledge. By questioning our understanding of what science is, where it happens, and who produces scientific knowledge, this book is an aid to liberating the curriculum within schools and universities.

Science Policy under Thatcher

Margaret Thatcher was prime minister from 1979 to 1990, during which time her Conservative administration transformed the political landscape of Britain. Science Policy under Thatcher is the first book to examine systematically the interplay of science and government under her leadership.

Thatcher was a working scientist before she became a professional politician, and she maintained a close watch on science matters as prime minister. Scientific knowledge and advice were important to many urgent issues of the 1980s, from late Cold War questions of defence to emerging environmental problems such as acid rain and climate change. Drawing on newly released primary sources, Jon Agar explores how Thatcher worked with and occasionally against the structures of scientific advice, as the scientific aspects of such issues were balanced or conflicted with other demands and values. To what extent, for example, was the freedom of the individual scientist to choose research projects balanced against the desire to secure more commercial applications? What was Thatcher’s stance towards European scientific collaboration and commitments? How did cuts in public expenditure affect the publicly funded research and teaching of universities?

In weaving together numerous topics, including AIDS and bioethics, the radioactivity industry and strategic defence, Agar adds to the picture we have of Thatcher and her radically Conservative agenda, and argues that the science policy devised under her leadership, not least in relation to industrial strategy, had a prolonged influence on the culture of British science.

The Science of Naples

Long neglected in the history of Renaissance and early modern Europe, in recent years scholars have revised received understanding of the political and economic significance of the city of Naples and its rich artistic, musical and political culture. Its importance in the history of science, however, has remained relatively unknown. * The Science of Naples* provides the first dedicated study of Neapolitan scientific culture in the English language. Drawing on contributions from leading experts in the field, this volume presents a series of studies that demonstrate Neapolitans’ manifold contributions to European scientific culture in the early modern period and considers the importance of the city, its institutions and surrounding territories for the production of new knowledge.

Individual chapters demonstrate the extent to which Neapolitan scholars and academies contributed to debates within the Republic of Letters that continued until deep into the nineteenth century. They also show how studies of Neapolitan natural disasters yielded unique insights that contributed to the development of fields such as medicine and earth sciences. Taken together, these studies resituate the city of Naples as an integral part of an increasingly globalised scientific culture, and present a rich and engaging portrait of the individuals who lived, worked and made scientific knowledge there.

Karl Popper, Science and Enlightenment

Here is an idea that just might save the world. It is that science, properly understood, provides us with the methodological key to the salvation of humanity. A version of this idea can be found in the works of Karl Popper. Famously, Popper argued that science cannot verify theories but can only refute them, and this is how science makes progress. Scientists are forced to think up something better, and it is this, according to Popper, that drives science forward.

But Nicholas Maxwell finds a flaw in this line of argument. Physicists only ever accept theories that are unified – theories that depict the same laws applying to the range of phenomena to which the theory applies – even though many other empirically more successful disunified theories are always available. This means that science makes a questionable assumption about the universe, namely that all disunified theories are false. Without some such presupposition as this, the whole empirical method of science breaks down.

By proposing a new conception of scientific methodology, which can be applied to all worthwhile human endeavours with problematic aims, Maxwell argues for a revolution in academic inquiry to help humanity make progress towards a better, more civilized and enlightened world.

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