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  • 1
    Call number: M 93.0202
    In: Memoir
    Type of Medium: Monograph available for loan
    Pages: VII, 139 S. : Ill., Kt.
    Series Statement: Memoir / The Geological Society of America 28
    Language: English
    Location: Upper compact magazine
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  • 2
    Call number: G 5400/1 ; M 93.0072/1
    In: Gesteine und Minerallagerstätten
    Type of Medium: Monograph available for loan
    Pages: 540 S. : Ill., graph. Darst.
    Series Statement: Lehrbücher und Monographien aus dem Gebiete der exakten Wissenschaften 16 : Mineralogisch-Geotechnische Reihe 3
    Language: German
    Location: Upper compact magazine
    Location: Upper compact magazine
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  • 3
    Call number: AWI G5-10-0074 ; M 11.0047
    In: Developments in paleoenvironmental research
    Description / Table of Contents: Chapter 1: High-resolution Paleoclimatology - R. Bradley What is high-resolution paleoclimatology? What are its major achievements? What opportunities and challenges does it now face? What should dendroclimatology's role be in this? Chapter 2: Dendroclimatology in high-resolution Paleoclimatology - M. K. Hughes, H. F. Diaz and Th. W. Swetnam An overview of the development of dendroclimatology and an introduction to the questions posed in this book. Scientific bases of dendroclimatology Chapter 3: How well understood are the processes that create tree-ring records? - G. Vaganov Starting at the most basic level of the environmental control of tree-ring formation, do we have the necessary biological and ecophysiological understanding of this to support inferences about climate variability from tree rings? What are the weak points of this understanding and how might they be strengthened? Chapter 4: The state of the art of quantitative methods in dendroclimatology - E. Cook How sound are the quantitative techniques commonly used in dendroclimatology, in chronology building, identification and reconstruction of climate variables and the checking of these reconstructions? Are they appropriate to the material being analyzed and to the climatological problems being addressed? How might they be improved? Chapter 5: Detecting low-frequency change using tree rings - K. Briffa What limits the ability of tree-ring records to faithfully record climate variability at low frequencies (multi-centennial to millennial)? How might those limitations be overcome, if at all? What are the advantages and limitations of older and more novel approaches? What are the implications of these limitations? Reconstruction of climate patterns and values relative to today's climate Chapter 6: Dendroclimatology at regional and continental scales - R. Villalba What have been the major contributions of dendroclimatology to climatology so far? In what regions and for which climate problems is exciting progress now being made? What next? Chapter 7: Dendroclimatology at hemispheric and global scales - M. K. Hughes and M. Mann What are the achievements of dendroclimatology as applied at hemispheric and global scales climate patterns, circulation indices and large-scale means? What are the limitations of this approach? How might they be overcome? How might dendroclimatology contribute to the study of central pressing problems such as "How big is climate sensitivity? How has the last century, and especially recent decades, compared with earlier centuries? How faithful a representation of variability in recent centuries does the 20th century instrumental record give? Particular attention will be given to: a) identifying the most robust findings; and b) the most serious limitations. Chapter 8: Dendroclimatology, dendrohydrology and water resources management - C. Woodhouse and D. Meko How may dendroclimatology contribute to the study of water resources? How may it be used to inform modern public and decision-maker expectations of climate variability? Chapter 9: Dendroclimatology and the ecosystem impacts of climate - Th. W. SwetnamHow has dendroclimatology contributed to disturbance ecology? What is the significance of the recent changes in tree-growth-climate relationships observed in some regions, not only for dendroclimatology, but also for the understanding of the impacts of climate variability and change on ecosystems? Chapter 10: Dendroclimatology and the understanding of the interactions between climate variability and ancient human societies - D. Stahle and J. DeanHow has dendroclimatology contributed to understanding of the relationships between climate variability and societies in ancient times? Chapter 11: Tree rings and climate- sharpening the focus - M. K. Hughes, H. F. Diaz and Th. W. Swetnam What has been learned, using tree rings, about natural climate variability and its environmental and social impacts? What are the most significant strengths and weaknesses of dendroclimatology and the needs of, and opportunities for, future work.
    Description / Table of Contents: This volume presents an overview of the current state of dendroclimatology, its contributions over the last 30 years, and its future potential. The material included is useful not only to those who generate tree-ring records of past climate-dendroclimatologists, but also to users of their results - climatologists, hydrologists, ecologists and archeologists.
    Type of Medium: Monograph available for loan
    Pages: xii, 365 S. : Ill., graph. Darst.
    ISBN: 9781402040108
    Series Statement: Developments in paleoenvironmental research 11
    Classification:
    Historical Geology
    Language: English
    Note: Contents: Part I Introductory Section. - 1 High-Resolution Paleoclimatology / Raymond S. Bradley. - 2 Dendroclimatology in High-Resolution Paleoclimatology / Malcolm K. Hughes. - Part II Scientific Bases of Dendroclimatology. - 3 How Well Understood Are the Processes that Create Dendroclimatic Records? A Mechanistic Model of the Climatic Control on Conifer Tree-Ring Growth Dynamics / Eugene A. Vaganov, Kevin J. Anchukaitis, and Michael N. Evans. - 4 Uncertainty, Emergence, and Statistics in Dendrochronology / Edward R. Cook and Neil Pederson. - 5 A Closer Look at Regional Curve Standardization of Tree-Ring Records: Justification of the Need, a Warning of Some Pitfalls, and Suggested Improvements in Its Application / Keith R. Briffa and Thomas M. Melvin. - 6 Stable Isotopes in Dendroclimatology: Moving Beyond ‘Potential’ / Mary Gagen, Danny McCarroll, Neil J. Loader, and Iain Robertson. - Part III Reconstruction of Climate Patterns and Values Relative to Today’s Climate. - 7 Dendroclimatology from Regional to Continental Scales: Understanding Regional Processes to Reconstruct Large-Scale Climatic Variations Across the Western Americas / Ricardo Villalba, Brian H. Luckman, Jose Boninsegna,Rosanne D. D’Arrigo, Antonio Lara, Jose Villanueva-Diaz, Mariano Masiokas, Jaime Argollo, Claudia Soliz, Carlos LeQuesne, David W. Stahle, Fidel Roig, Juan Carlos Aravena, Malcolm K. Hughes, Gregory Wiles, Gordon Jacoby, Peter Hartsough, Robert J.S. Wilson, Emma Watson, Edward R. Cook, Julian Cerano-Paredes, Matthew Therrell, Malcolm Cleaveland, Mariano S. Morales, Nicholas E. Graham, Jorge Moya, Jeanette Pacajes, Guillermina Massacchesi, Franco Biondi, Rocio Urrutia, and Guillermo Martinez Pastur. - Part IV Applications of Dendroclimatology. - 8 Application of Streamflow Reconstruction to Water Resources Management / David M. Meko and Connie A. Woodhouse. - 9 Climatic Inferences from Dendroecological Reconstructions / Thomas W. Swetnam and Peter M. Brown. - 10 North American Tree Rings, Climatic Extremes, and Social Disasters / David W. Stahle and Jeffrey S. Dean. - Part V Overview. - 11 Tree Rings and Climate: Sharpening the Focus / Malcolm K. Hughes, Henry F. Diaz, and Thomas W. Swetnam. - Index.
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  • 4
    Monograph available for loan
    Monograph available for loan
    New York [u.a.] : McGraw-Hill
    Call number: MR 90.0030
    Type of Medium: Monograph available for loan
    Pages: 922 S.
    Series Statement: International series in pure and applied physics
    Language: German
    Location: Upper compact magazine
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  • 5
    Call number: SR 90.0009(252)
    In: Memoir
    Type of Medium: Series available for loan
    Pages: X, 210 S. + 1 Kt.-Beil.
    Series Statement: Memoir / Geological Survey of Canada 252
    Language: English
    Location: Lower compact magazine
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  • 6
    Call number: SR 93.0768(501)
    In: Sveriges Geologiska Undersökning
    Type of Medium: Series available for loan
    Pages: 15 S.
    Series Statement: Sveriges geologiska undersökning : Ser. C, Avhandlingar och uppsatser 501
    Language: English
    Location: Lower compact magazine
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  • 7
    Series available for loan
    Series available for loan
    Berlin : Akad.-Verl.
    Associated volumes
    Call number: SR 90.0074(1)
    In: Abhandlungen zur Geotektonik
    In: Abhandlungen der Deutschen Akademie der Wissenschaften, Mathematisch-Naturwissenschaftliche Klasse
    Type of Medium: Series available for loan
    Pages: 38 S.
    Series Statement: Abhandlungen zur Geotektonik 1
    Language: German
    Location: Lower compact magazine
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  • 8
    Series available for loan
    Series available for loan
    [Zürich] : IAHS (ICSI)
    Associated volumes
    Call number: AWI G7-14-0007
    In: Glacier mass balance bulletin
    Type of Medium: Series available for loan
    Pages: 106 S. : Ill., graph. Darst., Kt.
    Language: English
    Location: AWI Reading room
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  • 9
    Monograph available for loan
    Monograph available for loan
    Berlin [u.a.] : Springer Spektrum
    Call number: AWI A5-13-0151
    Description / Table of Contents: Mit der Dynamik von Wind und Wellen, mit dem Haushalt von Wärme und Wasser befasst sich die theoretische Meteorologie. Viele Studierende haben eine Scheu vor dem Fach, weil sie die Mathematik fürchten. Aber jeder, der sich für Meteorologie und Wetter interessiert, weiß im Grunde: ohne Mathematik (und ein bisschen theoretische Physik) geht es nicht. Etliche Formeln muss man sich merken, und man muss mit ihnen arbeiten können. Michael Hantel führt interessierte LeserInnen hin zu den eigentlichen Begriffen, die hinter den Formeln stehen. Diese Begriffswelt in neuer Frische darzustellen ist sein Anliegen. Statt Übungsaufgaben bietet der Autor vorgerechnete Abschätzungen, die das Verstehen des Faches erleichtern. Das Buch ist gegliedert in die Abschnitte Strahlung, Thermodynamik, Hydrodynamik, barotrope Prozesse, Grenzschicht, barokline Prozesse und globale Haushalte. Es bietet ein Gesamtbild der theoretischen Meteorologie auf dem Niveau des Bachelor-Studienganges, und es kann auch als Grundlage für eine vertiefte Beschäftigung mit der Atmosphäre und dem Klima dienen.
    Type of Medium: Monograph available for loan
    Pages: XVIII, 430 S. : graph. Darst., Kt.
    ISBN: 9783827430557
    Language: German
    Note: Inhaltsverzeichnis: I STRAHLUNG. - 1 Allgemeine Strahlungsgesetze. - 1.1 Grundbegriffe. - 1.1.1 Strahlungsfluss und Strahldichte. - 1.1.2 Das Lambertsche Gesetz. - 1.1.3 Vektor der Strahlungsflussdichte. - 1.1.4 Energiedichte. - 1.1.5 Strahlungsheizung und -kühlung. - 1.1.6 Das Spektrum. - 1.2 Gesetze der thermischen Strahlung. - 1.2.1 Kirchhoffsches Gesetz. - 1.2.2 Das Stefan-Boltzmannsche Strahlungsgesetz. - 1.2.3 Das Plancksche Strahlungsgesetz. - 1.2.4 Solare und terrestrische Strahlung. - 1.2.5 Treibhauseffekt. - 1.3 Wechselwirkung von Strahlung und Materie. - 1.3.1 Der optische Weg. - 1.3.2 Das Beersche Gesetz. - 1.3.3 Absorption und Streuung. - 1.4 Die Strahlungsübertragungsgleichung (SÜG). - 1.4.1 SÜG im Weltraum. - 1.4.2 SÜG im Medium ,aber ohne Strahlungsquelle. - 1.4.3 SÜG im Medium mit konstanter Strahlungsquelle. - 1.4.4 Allgemeine SÜG mit variabler Quelle. - 1.4.5 Optisch dichtes Medium. - 1.4.6 Die Strahlungsheizung. - 2 Terrestrische Strahlung. - 2.1 Die planparallele Atmosphäre. - 2.2 Berechnung des optischen Weges. - 2.3 Berechnung der Strahldichte. - 2.4 Berechnung des Flusses. - 2.5 Mathematischer Exkurs: Das Exponentialintegral. - 2.6 Das Konzept der Transmissionsfunktion. - 2.7 Das Konzept der Absorbermasse. - 2.8 Die Goodyschen Flussformeln. - 3 Solare Strahlung. - 3.1 Die SÜG mit Streuung. - 3.2 Die Phasenfunktion. - 3.3 Rayleigh-Streuung. - 3.4 Mikroprozesse. - 4 Die Strahlung als Komponente der atmosphärischen Dynamik. - 4.1 Fernerkundung. - 4.2 Das strahlungskonvektive Gleichgewicht der Atmosphäre. - II THERMODYNAMIK. - 5 Hydrostatik von Geofluiden. - 5.1 Zustandsgrößen. - 5.1.1 Masse, Menge, Teilchenzahl. - 5.1.2 Der Druck. - 5.1.3 Die Temperatur. - 5.2 Die Zustandsgleichung idealer Gase. - 5.2.1 Die universelle Gasgleichung. - 5.2.2 Individuelle Gasgleichungen. - 5.2.3 Gasgemische. - 5.2.4 Die virtuelle Temperatur. - 5.3 Zustandsgleichung für Flüssigkeiten und Festkörper. - 5.4 Das Geopotenzial. - 5.5 Die hydrostatische Gleichung. - 5.6 Die barometrische Höhenformel. - 5.6.1 Isotherme Atmosphäre. - 5.6.2 Polytrope Atmosphäre. - 5.7 Zustandsgrößen des Wassers in der Atmosphäre. - 6 Elementare Thermodynamik. - 6.1 Das Energieprinzip. - 6.2 Grundformen der Energie. - 6.2.1 Mechanische Energie. - 6.2.2 Chemische Energie. - 6.2.3 Der Übergang zur Thermodynamik: Wärme. - 6.3 Das Prinzip der Energieumwandlungen. - 6.3.1 Die Gibbssche Form. - 6.3.2 Prozesse und Zustandsänderungen. - 6.4 Homogene Systeme. - 6.4.1 Spezifische Größen. - 6.4.2 Homogenität der Energie. - 6.5 Thermodynamische Funktionen. - 6.5.1 Die Enthalpie. - 6.5.2 Thermodynamische Potenziale. - 6.6 Spezifische Wärmekapazitäten von Gasen. - 6.6.1 Spezifische Wärmekapazität bei konstantem Volumen. - 6.6.2 Spezifische Wärmekapazität bei konstantem Druck. - 6.6.3 Zusammenhang zwischen den Wärmekapazitäten. - 6.7 Zustandsänderungen von Gasen. - 6.8 Wärme und Entropie. - 6.8.1 Die potenzielle Temperatur. - 6.8.2 Der Föhneffekt. - 6.8.3 Die Poisson-Gleichung. - 6.8.4 Isentroper Temperaturgradient. - 6.8.5 Zustandsänderungen idealer Gase. - 6.8.6 Entropiezufuhr beim Heizen. - 6.8.7 Die Heizung der Atmosphäre. - 6.8.8 Isentrop, adiabatisch, reversibel. - 6.8.9 Entropiezunahme bei Temperaturausgleich. - 6.9 Chemische Energie. - 6.9.1 Das chemische Potenzial. - 6.9.2 Phasenübergänge im Gleichgewicht: Die Verdampfungsenthalpie. - 6.9.3 Die Clausius-Clapeyronsche Gleichung. - 6.10 Latente Wärme. - 6.10.1 Enthalpie feuchter Luft. - 6.10.2 Die äquivalentpotenzielle Temperatur. - III HYDRODYNAMIK. - 7 Erhaltung des Impulses. - 7.1 Die Kraft als Ursache der Bewegung. - 7.2 Der Geopotenzialgradient. - 7.3 Der Druckgradient. - 7.4 Reibungskräfte. - 7.4.1 Scherungskräfte. - 7.4.2 Normalkräfte. - 7.4.3 Gesamte Reibungskraft. - 7.5 Gesamte Kraftwirkung: Bewegungsgleichungen. - 7.5.1 Die Eulersche Gleichung. - 7.5.2 Die Navier-Stokessche Gleichung. - 8 Fluidkinematik. - 8.1 Trajektorien und Stromlinien. - 8.2 Die Bewegungsgleichungen bei starrer Rotation. - 8.2.1 Transformation der Zeitableitung bei starrer Rotation. - 8.2.2 Die Eulerschen Gleichungen im starr rotierenden System. - 8.3 Die hydrostatischen Bewegungsgleichungen. - 8.3.1 2D-Bewegungsgleichungen in z-Koordinaten. - 8.3.2 Vorgriff: Transformation auf Druckkoordinaten. - 8.3.3 2D-Bewegungsgleichungen in p-Koordinaten. - 8.3.4 Natürliche Horizontalkoordinaten. - 8.3.5 2D-Bewegungsgleichungen in natürlichen Koordinaten. - 8.4 Der geostrophische Wind. - 8.5 Der Gradientwind. - 8.6 Kinematische Größen des Strömungsfelds. - 8.6.1 Die Divergenz. - 8.6.2 Die Vorticity. - 8.6.3 Spezielle Strömungsfelder. - 8.7 f-Ebene und ß-Ebene. - 9 Die Kontinuitätsgleichung. - 9.1 Die Kontinuitätsgleichung. - 9.1.1 Fluidvolumen und Divergenz. - 9.1.2 Die Funktionaldeterminante. - 9.2 Generalisierte Koordinaten. - 9.2.1 Einführung in die generalisierten Koordinaten. - 9.2.2 Das Differenzial und die Zeitableitung. - 9.2.3 Der Operator der totalen Zeitableitung. - 9.2.4 Die advektive Zeitableitung. - 9.3 Die fluiddynamische Kontinuitätsgleichung. - 9.4 Die Divergenz in verschiedenen Koordinatensystemen. - 9.4.1 Kugelkoordinaten. - 9.4.2 Rotierende Kugelkoordinaten. - 9.4.3 Geofluidkoordinaten. - 9.4.4 Hydrostatische Vertikalkoordinaten. - 10 Erhaltung der Masse. - 10.1 Globale Massenerhaltung. - 10.2 Massenerhaltung aus lokaler Sicht. - 10.2.1 Die Erhaltung von Autos, Bällen und Kugeln. - 10.2.2 Die Massenkontinuitätsgleichung. - 10.3 Die Massenflussdichte. - 10.4 Die generalisierte Massenkontinuitätsgleichung. - 10.5 Die Massenkontinuitätsgleichung für hydrostatische Koordinaten. - 11 Erhaltung der Energie. - 11.1 Globale Energieerhaltung. - 11.2 Ideale Fluide (mit Potenzial). - 11.2.1 Die Gleichung für die mechanische Energie. - 11.2.2 Die Gleichung für die innere Energie. - 11.2.3 Austausch zwischen mechanischer und innerer Energie. - 11.2.4 Der lokale Energiesatz für ideale Fluide. - 11.3 Reale Fluide. - 11.3.1 Innere Reibung. - 11.3.2 Der lokale Energiesatz für reale Fluide. - 11.4 Erzeugung von Entropie. - 11.4.1 Dissipation. - 11.4.2 Wärmeleitung. - 11.5 Haushaltsgleichungen von Energie und Entropie. - 11.6 Energie- und Entropiehaushalt feuchter Luft. - 12 Transformation der Bewegungsgleichungen. - 12.1 Die Euler-Lagrange-Gleichungen. - 12.2 Kugelkoordinaten A*, Phi*, R*. - 12.3 Rotierende Kugelkoordinaten. - 12.3.1 Zonale Bewegungsgleichung. - 12.3.2 Meridionale Bewegungsgleichung. - 12.3.3 Vertikale Bewegungsgleichung. - 12.3.4 Die Bewegungsgleichungen in Kugelkoordinaten. - 12.4 Was sind Scheinkräfte?. - 12.5 Flachgeofluide. - 12.6 Hydrostatische Koordinaten. - 12.6.1 Die Metrik in hydrostatischen Koordinaten. - 12.6.2 Spezialfall: Kartesische Koordinaten. - 12.6.3 Spezialfall: Druckkoordinaten. - 12.6.4 Spezialfall: Isentrope Koordinaten. - 12.6.5 Wahl der Gleichungen. - IV BAROTROPE PROZESSE. - 13 Elementare Wellentheorie. - 13.1 Schwingungen der ruhenden Atmosphäre. - 13.1.1 Potenzielle Temperatur und potenzielle Dichte. - 13.1.2 Auftriebsschwingungen und statische Stabilität. - 13.2 Darstellung harmonischer Wellen. - 13.2.1 Parameter einer harmonischen Welle. - 13.2.2 Die eindimensionale Wellengleichung. - 13.2.3 Die räumliche Welle. - 13.2.4 Instabilität. - 13.2.5 Dispersion. - 13.3 Oberflächenwellen. - 13.3.1 Gleichungen im Vertikalschnitt. - 13.3.2 Randbedingungen. - 13.3.3 Der horizontale Druckgradient. - 13.3.4 Linearisierung. - 13.3.5 Die Phasengeschwindigkeit von Oberflächenwellen. - 13.4 Interne Wellen. - 14 Das Flachwassermodell (FWM). - 14.1 Barotropie. - 14.1.1 Vertikale Konstanz der horizontalen Druckbeschleunigung. - 14.1.2 Vertikale Konstanz des Horizontalwindes. - 14.1.3 Isotherme und isentrope Atmosphäre. - 14.1.4 Barotropie und Zweidimensionalität. - 14.2 Das barotrope FWM. - 14.2.1 Hydrostasie. - 14.2.2 Horizontale Druckbeschleunigung. - 14.2.3 Horizontale Bewegungsgleichungen. - 14.2.4 Massenerhaltung. - 14.2.5 Die Gleichungen für das FWM. - 14.3 Die Vorticity-Gleichungen. - 14.3.1 Die dynamisch äquivalente Beta-Ebene
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  • 10
    Call number: 9/M 07.0421(375) ; https://doi.org/10.1144/SP375
    In: Geological Society special publication
    Description / Table of Contents: The historical links between geology and medicine are surprisingly numerous and diverse. This, the first ever volume dedicated to the subject, contains contributions from an international authorship of geologists, historians and medical professionals.Rocks, minerals, fossils and earths have been used therapeutically since earliest times and details recorded on ancient papyri, clay tablets, medieval manuscripts and early published sources. Pumice was used to clean teeth, antimony to heal wounds, clays as antidotes to poison, gold to cure haemorrhoids and warts, and gem pastes to treat syphilis and the plague, while mineral springs preserved health. Geology was crucial in the development of public health. Medical men who made important contributions to geology include Steno, Worm, Parkinson, Bigsby, William Hunter, Jenner, John Hulke, Conan Doyle, Gorini and various Antarctic explorers.
    Type of Medium: Monograph available for loan
    Pages: vi, 490 Seiten , Illustrationen, Diagramme, Karten
    ISBN: 9781862393561
    Series Statement: Geological Society special publication 375
    Classification:
    Geology
    Language: English
    Note: TABLE OF CONTENTS Geology as medicine and medics as geologists / Christopher J. Duffin / Geological Society, London, Special Publications, 375, 1-6, 23 August 2013, https://doi.org/10.1144/SP375.29 Lithotherapeutical research sources from antiquity to the mid-eighteenth century / Christopher J. Duffin / Geological Society, London, Special Publications, 375, 7-43, 4 September 2013, https://doi.org/10.1144/SP375.25 Cryptopalaeontology / Eladio Liñán, María Liñán and Joaquín Carrasco / Geological Society, London, Special Publications, 375, 45-64, 10 May 2013, https://doi.org/10.1144/SP375.14 The stomatological use of stones cited in the Kitab al-tasrif treatise (Abulcasis, 1000 CE) / Joaquín Carrasco and María Liñán / Geological Society, London, Special Publications, 375, 65-80, 11 December 2012, https://doi.org/10.1144/SP375.7 The gem electuary / Christopher J. Duffin / Geological Society, London, Special Publications, 375, 81-111, 17 December 2012, https://doi.org/10.1144/SP375.9 Medicinal terra sigillata: a historical, geographical and typological review / Arthur Macgregor / Geological Society, London, Special Publications, 375, 113-136, 15 November 2012, https://doi.org/10.1144/SP375.1 Materia medica in the seventeenth-century Paper Museum of Cassiano dal Pozzo / W. D. Ian Rolfe / Geological Society, London, Special Publications, 375, 137-156, 15 November 2012, https://doi.org/10.1144/SP375.3 History of the pharmaceutical use of pumice / Christopher J. Duffin / Geological Society, London, Special Publications, 375, 157-169, 17 December 2012, https://doi.org/10.1144/SP375.8 Pharmaceutical use of gold from antiquity to the seventeenth century / Renzo Console / Geological Society, London, Special Publications, 375, 171-191, 2 April 2013, https://doi.org/10.1144/SP375.12 Bezoar stones, magic, science and art / Maria Do Sameiro Barroso / Geological Society, London, Special Publications, 375, 193-207, 26 February 2013, https://doi.org/10.1144/SP375.11 Some early eighteenth century geological Materia Medica / Christopher J. Duffin / Geological Society, London, Special Publications, 375, 209-233, 2 April 2013, https://doi.org/10.1144/SP375.13 Religiosity and magic in some lithoiatric practices of European folk medicine / Massimo Aliverti / Geological Society, London, Special Publications, 375, 235-242, 23 August 2013, https://doi.org/10.1144/SP375.27 Britain’s spa heritage: a hydrogeological appraisal / John D. Mather / Geological Society, London, Special Publications, 375, 243-260, 2 April 2013, https://doi.org/10.1144/SP375.16 Groundwater – Medicine by the Glassful? / N. S. Robins and P. L. Smedley / Geological Society, London, Special Publications, 375, 261-267, 2 April 2013, https://doi.org/10.1144/SP375.17 Sunday Stone: an enduring metaphor of mining diseases and underground mining conditions / John H. Pearn and Christopher Gardner-Thorpe / Geological Society, London, Special Publications, 375, 269-278, 11 July 2013, https://doi.org/10.1144/SP375.22 The influence of geology in the development of public health / Beverly P. Bergman / Geological Society, London, Special Publications, 375, 279-287, 15 November 2012, https://doi.org/10.1144/SP375.6 From flesh to fossils – Nicolaus Steno’s anatomy of the Earth / Jakob Bek-Thomsen / Geological Society, London, Special Publications, 375, 289-305, 2 April 2013, https://doi.org/10.1144/SP375.15 Diagnosing fossilization in the Nordic Renaissance: an investigation into the correspondence of Ole Worm (1588–1654) / Ella Hoch / Geological Society, London, Special Publications, 375, 307-327, 17 September 2013, https://doi.org/10.1144/SP375.26 Education forms the tender mind / Christopher Gardner-Thorpe / Geological Society, London, Special Publications, 375, 329-337, 23 August 2013, https://doi.org/10.1144/SP375.28 James Parkinson’s ‘system of successive creations’ / Cherry Lewis / Geological Society, London, Special Publications, 375, 339-348, 15 May 2013, https://doi.org/10.1144/SP375.18 From obstetrics to oryctology: inside the mind of William Hunter (1718–1783) / J. J. Liston / Geological Society, London, Special Publications, 375, 349-373, 15 May 2013, https://doi.org/10.1144/SP375.21 John Jeremiah Bigsby, MD: British Army physician and pioneer North American geologist / Leonard G. Wilson / Geological Society, London, Special Publications, 375, 375-394, 15 May 2013, https://doi.org/10.1144/SP375.20 Five eighteenth-century medical polymaths / Gillian C. Hull / Geological Society, London, Special Publications, 375, 395-407, 15 November 2012, https://doi.org/10.1144/SP375.5 John Whitaker Hulke, surgeon and palaeontologist / Simon Wills / Geological Society, London, Special Publications, 375, 409-427, 22 February 2013, https://doi.org/10.1144/SP375.10 Dr Arthur Conan Doyle’s contribution to the popularity of pterodactyls / David M. Martill and Tony Pointon / Geological Society, London, Special Publications, 375, 429-443, 15 May 2013, https://doi.org/10.1144/SP375.19 Physicians and their contribution to the early history of earth sciences in Austria / Daniela Claudia Angetter, Bernhard Hubmann and Johannes Seidl / Geological Society, London, Special Publications, 375, 445-454, 15 November 2012, https://doi.org/10.1144/SP375.4 Medical geologists during the Heroic Age of Antarctic exploration / Henry Guly / Geological Society, London, Special Publications, 375, 455-462, 15 November 2012, https://doi.org/10.1144/SP375.2 Vomiting stones: mental illness and forensic medicine in 18th century Italy / Alessandro Porro, Carlo Cristini, Bruno Falconi, Antonia Francesca Franchini and Lorenzo Lorusso / Geological Society, London, Special Publications, 375, 463-468, 4 July 2013, https://doi.org/10.1144/SP375.23 Geology, conservation and dissolution of corpses by Paolo Gorini (1813–1881) / Lorenzo Lorusso, Bruno Falconi, Francesca Antonia Franchini and Alessandro Porro / Geological Society, London, Special Publications, 375, 469-474, 9 July 2013, https://doi.org/10.1144/SP375.24
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