Livres sur le sujet « Metal density »

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1

Cumpson, Stephen Rodney. High density magnetic recording on metal evaporated tape. Manchester : University of Manchester, 1996.

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2

Saravanan, R. Metal and alloy bonding : An experimental analysis ; charge density in metals and alloys. London : Springer, 2012.

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3

Duen, Ho Fat, et United States. National Aeronautics and Space Administration., dir. Modeling of metal-ferroelectric-semiconductor field effect transistors. [Washington, D.C : National Aeronautics and Space Administration, 1998.

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4

Duen, Ho Fat, et United States. National Aeronautics and Space Administration., dir. Modeling of metal-ferroelectric-semiconductor field effect transistors. [Washington, D.C : National Aeronautics and Space Administration, 1998.

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5

United States. National Aeronautics and Space Administration., dir. Advanced chemical propulsion at NASA Lewis : Metallized and high energy density propellants. [Washington, DC] : National Aeronautics and Space Administration, 1991.

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6

Sialm, Gion. VCSEL modeling and CMOS transmitters up to 40 Gb/s for high-density optical links. Konstanz : Hartung-Gorre, 2007.

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7

Wüthrich, Rolf. Aqueous electrolysis under extreme current densities : Application to micro and nano-systems fabrication. Hauppauge, N.Y : Nova Science Publisher's, 2010.

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8

Edelberg, Drew Adam. Systems of Transition Metal Dichalcogenides : Controlling Applied Strain and Defect Density With Direct Impact on Material Properties. [New York, N.Y.?] : [publisher not identified], 2019.

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9

Gy, Hutiray, et Sólyom J, dir. Charge density waves in solids : Proceedings of the international conference held in Budapest, Hungary, September 3-7, 1984. Berlin : Springer-Verlag, 1985.

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10

1936-1984, McMillan William L., Hutiray Gy, So lyom J et International Conference on Charge Density Waves in Solids (1984 : Budapest, Hungary)., dir. Charge density waves in solids : Proceedings of the International Conference held in Budapest, Hungary, September 3-7, 1984. Berlin : Springer-Verlag, 1985.

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11

Jeffrey, George A. The Application of Charge Density Research to Chemistry and Drug Design. Boston, MA : Springer US, 1991.

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12

A, Shaw B., Buchheit R. G, Moran J. P, Electrochemical Society Corrosion Division, Electrochemical Society Meeting et Symposium on Corrosion of Light Metals (2000 : Phoenix, Ariz.), dir. Corrosion and corrosion prevention of low density metals and alloys : Proceedings of the international symposium. Pennington, NJ : Electrochemical Society, Inc., 2001.

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13

NATO Advanced Study Institute on the Application of Charge Density Research to Chemistry and Drug Design (1990 San Felíu de Guixols, Spain). The application of charge density research to chemistry and drug design. New York : Plenum Press, 1991.

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14

Satdarova, Faina. DIFFRACTION ANALYSIS OF DEFORMED METALS : Theory, Methods, Programs. xxu : Academus Publishing, 2019. http://dx.doi.org/10.31519/monography_1598.

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General analysis of the distribution of crystals orientation and dislocation density in the polycrystalline system is presented. Recovered information in diffraction of X-rays adopting is new to structure states of polycrystal. Shear phase transformations in metals — at the macroscopic and microscopic levels — become a clear process. Visualizing the advances is produced by program included in package delivered. Mathematical models developing, experimental design, optimal statistical estimation, simulation the system under study and evolution process on loading serves as instrumentation. To reduce advanced methods to research and studies problem-oriented software will promote when installed. Automation programs passed a testing in the National University of Science and Technology “MISIS” (The Russian Federation, Moscow). You score an advantage in theoretical and experimental research in the field of physics of metals.
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15

Boswell, Frank W. Advances in the Crystallographic and Microstructural Analysis of Charge Density Wave Modulated Crystals. Dordrecht : Springer Netherlands, 1999.

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16

Zhang, Xin-bo. High Energy Density Metal-Air Batteries. Wiley & Sons, Incorporated, John, 2018.

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17

Simulated Tip Rub Testing of Low-Density Metal Foam. Independently Published, 2020.

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18

Saravanan, R., et M. Prema Rani. Metal and Alloy Bonding - an Experimental Analysis : Charge Density in Metals and Alloys. Springer London, Limited, 2011.

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19

Saravanan, R., et M. Prema Rani. Metal and Alloy Bonding - An Experimental Analysis : Charge Density in Metals and Alloys. Springer, 2011.

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20

Saravanan, R., et M. Prema Rani. Metal and Alloy Bonding - an Experimental Analysis : Charge Density in Metals and Alloys. Springer London, Limited, 2014.

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21

Buerke, Brian J. A determination of the temperature dependence of the density of Nab2 sinside an alkali metal vapor oven. 1989.

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22

Samantara, Aneeya Kumar, et Satyajit Ratha. Metal-Ion Hybrid Capacitors for Energy Storage : A Balancing Strategy Toward Energy-Power Density. Springer International Publishing AG, 2021.

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23

Iuliis, Marco Zimmer-De. Heterolytic dihydrogen splitting and pK(a) studies of transition metal hydrides : A density functional study. 2006.

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24

Study of proton and neutron activation of metal samples in low earth orbit : Final technical report. Richmond, Ky : Eastern Kentucky University, 1985.

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25

Ando, K., et E. Saitoh. Incoherent spin current. Oxford University Press, 2017. http://dx.doi.org/10.1093/oso/9780198787075.003.0002.

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This chapter introduces the concept of incoherent spin current. A diffusive spin current can be driven by spatial inhomogeneous spin density. Such spin flow is formulated using the spin diffusion equation with spin-dependent electrochemical potential. The chapter also proposes a solution to the problem known as the conductivity mismatch problem of spin injection into a semiconductor. A way to overcome the problem is by using a ferromagnetic semiconductor as a spin source; another is to insert a spin-dependent interface resistance at a metal–semiconductor interface.
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26

Felix, Emmanuel S. Bone mineral density in adult women with mental retardation. 1993.

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27

Cuevas, J. C., D. Roditchev, T. Cren et C. Brun. Proximity Effect A New Insight from In Situ Fabricated Hybrid Nanostructures. Sous la direction de A. V. Narlikar. Oxford University Press, 2017. http://dx.doi.org/10.1093/oxfordhb/9780198738169.013.4.

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This article investigates the proximity effect on small length and energy scales in novel low-dimensional systems using in situ fabricated superconducting nanostructures (SNSs) and scanning tunneling microscopy/spectroscopy (STM/STS) techniques. After a brief historical review of research on superconductivity and the proximity effect, the article describes how to build a variety of in situ superconducting hybrid nanostructures and how to investigate the proximity density of states with the help of STM/STS. It then considers the proximity effect in a correlated 2D disordered metal and in diffusive SNS junctions before discussing proximity Josephson vortices. It also examines the proximity effect between two dissimilar superconductors and concludes by highlighting several fundamental problems related to proximity effect in the framework of quasiclassical microscopic Usadel theory.
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28

Wright, A. G. Environmental considerations. Oxford University Press, 2017. http://dx.doi.org/10.1093/oso/9780199565092.003.0012.

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Magnetic fields, with a magnitude comparable with that of the earth (10−4 tesla), affect trajectories of electrons and hence gain and collection efficiency. The inclusion of a high-permeability shield usually offers sufficient protection. Photomultiplier (PMT) performance is affected by electric field gradients generated by the proximity of a metal housing. The design criteria of such housings are discussed. Strong magnetic fields of the order of a tesla require special devices. Operation in harsh environments such as those encountered in oil well logging requires performance at high temperature (200 °C) and in situations of high shock and vibration expressed in terms of power spectral density. Rugged PMTs can meet all these requirements. Applications at cryogenic temperatures, such as liquid argon, can also be met with special PMTs.
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29

Solymar, L., D. Walsh et R. R. A. Syms. The free electron theory of metals. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198829942.003.0006.

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The model of the free electron theory is presented. The density of states and the Fermi–Dirac distribution function are discussed, leading to the specific heat of the electrons, the work function, thermionic emission, and the Schottky effects. As examples of applications the field-emission microscope and quartz–halogen lamps are discussed. The photoelectric effect and the energy diagrams relating to the junction between two metals are also discussed.
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30

E, Frazier William, Koczak Michael J, Lee Peter W et Minerals, Metals and Materials Society. Fall Meeting, dir. Low density, high temperature powder metallurgy alloys. Warrendale, Pa : Minerals, Metals, & Materials Society, 1991.

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31

Lee, Peter W., W. E. Frazier et M. J. Koczak. Low Density, High Temperature Powder Metallurgy Alloys. Tms, 1990.

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32

Barthelmes, Jens, et Isabella Sudano. Cardiovascular response to mental stress. Sous la direction de Guido Grassi. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780198784906.003.0027.

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Mental stress, intrinsically subjective, lacks clear operationalization by any universally accepted gauge in routine clinical practice. There is not even an accepted single conceptualization of mental stress as opposed to the classic risk factors measured by, for example, resting blood pressure or low-density lipoprotein cholesterol among others. Yet, the link between psychosocial stress and cardiovascular events is a century-old intuition substantiated by many studies. Likely, mental stress affects cardiovascular health over the whole course of at-risk-stage up to cardiovascular events. This chapter discusses the major pathophysiologic effects of mental stress on cardiovascular pathogenesis.
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33

Wohlwill, Joachim F., et Willem VanVliet. Habitats for Children : The Impacts of Density. Taylor & Francis Group, 2013.

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34

Wohlwill, Joachim F., et Willem VanVliet. Habitats for Children : The Impacts of Density. Taylor & Francis Group, 2013.

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35

F, Wohlwill Joachim, Van Vliet Willem 1952- et Society for Research in Child Development., dir. Habitats for children : The impacts of density. Hillsdale, N.J : L. Erlbaum Associates, 1985.

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36

Wohlwill, Joachim F., et Willem VanVliet. Habitats for Children : The Impacts of Density. Taylor & Francis Group, 2013.

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37

Jeffrey, George A. The Application of Charge Density Research to Chemistry and Drug Design. Springer, 2013.

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38

International Conference on Gears 2017. VDI Verlag, 2017. http://dx.doi.org/10.51202/9783181022948.

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Talking about the design of modern high-performance power train applications, one of the essential components to focus on are the gears. Gears convert torque and speed in a very wide power range, at low cost and with minimal losses and noise emission. However, the demands regarding cost, power density, NVH-behavior and efficiency are steadily increasing. Demands, which can only be met using modern gearing technologies that allow combining individual materials, heat treatment and manufacturing processes. Particularly in the industrial sector, the requirements for the reliability and service life of the gear units have increased. Therefore, more and more accurate calculation methods are required for the load bearing capacity, life expectancy and failure probability as well as better test methods. This aspect is also becoming more important with regard to Industry 4.0 and Predictive Maintenance. In addition, the potentials of innovative production methods like powder metal sintering, plas...
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39

Wohlwill, Joachim F., et Willem VanVliet. Habitats for Children : The Impacts of Density. Taylor & Francis Group, 2013.

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40

(Editor), G. A. Jeffrey, et J. F. Piniella (Editor), dir. The Application of Charge Density Research to Chemistry and Drug Design (NATO Science Series : B:). Springer, 1991.

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41

Nitzan, Abraham. Chemical Dynamics in Condensed Phases. Oxford University Press, 2006. http://dx.doi.org/10.1093/oso/9780198529798.001.0001.

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This text provides a uniform and consistent approach to diversified problems encountered in the study of dynamical processes in condensed phase molecular systems. Given the broad interdisciplinary aspect of this subject, the book focuses on three themes: coverage of needed background material, in-depth introduction of methodologies, and analysis of several key applications. The uniform approach and common language used in all discussions help to develop general understanding and insight on condensed phases chemical dynamics. The applications discussed are among the most fundamental processes that underlie physical, chemical and biological phenomena in complex systems. The first part of the book starts with a general review of basic mathematical and physical methods (Chapter 1) and a few introductory chapters on quantum dynamics (Chapter 2), interaction of radiation and matter (Chapter 3) and basic properties of solids (chapter 4) and liquids (Chapter 5). In the second part the text embarks on a broad coverage of the main methodological approaches. The central role of classical and quantum time correlation functions is emphasized in Chapter 6. The presentation of dynamical phenomena in complex systems as stochastic processes is discussed in Chapters 7 and 8. The basic theory of quantum relaxation phenomena is developed in Chapter 9, and carried on in Chapter 10 which introduces the density operator, its quantum evolution in Liouville space, and the concept of reduced equation of motions. The methodological part concludes with a discussion of linear response theory in Chapter 11, and of the spin-boson model in chapter 12. The third part of the book applies the methodologies introduced earlier to several fundamental processes that underlie much of the dynamical behaviour of condensed phase molecular systems. Vibrational relaxation and vibrational energy transfer (Chapter 13), Barrier crossing and diffusion controlled reactions (Chapter 14), solvation dynamics (Chapter 15), electron transfer in bulk solvents (Chapter 16) and at electrodes/electrolyte and metal/molecule/metal junctions (Chapter 17), and several processes pertaining to molecular spectroscopy in condensed phases (Chapter 18) are the main subjects discussed in this part.
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42

Castle, David J., Peter F. Buckley et Fiona P. Gaughran. The metabolic syndrome in schizophrenia. Oxford University Press, 2017. http://dx.doi.org/10.1093/med/9780198811688.003.0003.

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The metabolic syndrome (MS) is a constellation of risk factors including increased waist circumference, high blood pressure, and elevated fasting glucose and triglycerides in conjunction with low levels of high-density lipoprotein. MS is associated with an elevated risk of adverse cardiovascular and other events. The general population rate of MS is increasing, but people with schizophrenia have markedly elevated rates compared to people without a mental illness. Reasons for this excess are complex, but certain antipsychotic agents can exacerbate risk and due care needs to be taken in prescribing such medications, with awareness of longitudinal risk. Treatment needs to be provided following established guidelines, to address aspects of MS should they occur.
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43

Duncan, Dustin T., et Ichiro Kawachi. Neighborhoods and Health. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780190843496.003.0001.

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A large body of research in epidemiology and population health has investigated relationships between neighborhood characteristics (e.g., crime rate, density of fast food restaurants, distance to parks) and a myriad of health outcomes (e.g., obesity, mental health, substance use), with an explosion of research within the last decade, which spans a variety of disciplines, for example, anthropology, sociology, criminology, geography, demography, urban planning, medicine and epidemiology. This chapter provides a historical perspective to neighborhood health research. In addition, this chapter provides a systematic survey of new and notable developments in the field of neighborhoods and health as well as provides directions for future research. It also describes the motivation and rationale for this book and guides the reader through the structure of the rest of the book.
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44

Coppens, Philip. X-Ray Charge Densities and Chemical Bonding. Oxford University Press, 1997. http://dx.doi.org/10.1093/oso/9780195098235.001.0001.

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This book deals with the electron density distribution in molecules and solids as obtained experimentally by X-ray diffraction. It is a comprehensive treatment of the methods involved, and the interpretation of the experimental results in terms of chemical bonding and intermolecular interactions. Inorganic and organic solids, as well as metals, are covered in the chapters dealing with specific systems. As a whole, this monograph is especially appealing because of its broad interface with numerous disciplines. Accurate X-ray diffraction intensities contain fundamental information on the charge distribution in crystals, which can be compared directly with theoretical results, and used to derive other physical properties, such as electrostatic moments, the electrostatic potential and lattice energies, which are accessible by spectroscopic and thermodynamic measurements. Consequently, the work will be of great interest to a broad range of crystallographers and physical scientists.
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45

Soffer, Jocelyn, et Harold W. Goforth. Endocrine Comorbidities in Persons with HIV. Sous la direction de Mary Ann Cohen, Jack M. Gorman, Jeffrey M. Jacobson, Paul Volberding et Scott Letendre. Oxford University Press, 2017. http://dx.doi.org/10.1093/med/9780199392742.003.0045.

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A wide range of endocrine abnormalities commonly accompany and complicate HIV infection, many of which have implications for psychiatrists and other mental health professionals working with this population. Such abnormalities include adrenal insufficiency, hypercortisolism, hyperthyroidism, hypothyroidism, hypogonadism, decreased bone mineral density, and bone disease. Endocrinopathies are great mimickers of psychiatric disorders, manifesting in some cases as disturbances of mood, sleep, appetite, thought process, energy level, or general sense of well-being. Understanding the intricate and complex relationships between immunological, endocrinological, and psychological systems is important to improve recognition and treatment of reversible endocrinopathies, diminish suffering, and enhance quality of life and longevity in persons with HIV and AIDS. This chapter will present an overview of HIV-associated changes in the function of the hypothalamic–pituitary axes, adrenal glands, thyroid gland, gonads, and bone and mineral metabolism, and consider the psychosocial implications of such endocrinopathies.
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46

Herrmann, Konrad, dir. Hardness Testing. ASM International, 2011. http://dx.doi.org/10.31399/asm.tb.htpa.9781627083461.

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Hardness Testing: Principles and Applications is an in-depth study of one of the most fundamental properties of materials and the tools and techniques that have been developed to measure it. Hardness, as defined in the first chapter, is a type of resistance to deformation, the roots of which lie in the packing density of atoms and the bonding forces that keep them in place. As subsequent chapters explain, the hardness of metals, plastics, rubber, and ceramics can be measured as a response to an applied stress (whether static or dynamic), via noncontact sensing, or through an instrumented indenter. Most of the hardness tests used in industry, including Rockwell, Vickers, Brinell, and Knoop methods, are based on static measurements that have become standardized over the years. The practices and procedures associated with these methods are described in detail along with relevant theory and practical considerations such as calibration requirements and uncertainty concerns. Other chapters provide similar information on dynamic tests, including Shore and Leeb methods, nondestructive tests, including electromagnetic, photothermal, and ultrasonic sensing, and indentation measurement techniques. The chapters also include application examples as well as guidelines and recommendations for selecting and implementing hardness tests. For information on the print version, ISBN 978-1-61503-832-9, follow this link.
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47

Wardhaugh, Benjamin. The Correspondence of Charles Hutton. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198805045.001.0001.

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This book contains complete transcriptions, with notes, of the 133 surviving letters of Charles Hutton (1737–1823). The letters span the period 1770–1823 and are drawn from nearly thirty different archives. Most have not been published before. Hutton was one of the most prominent British mathematicians of his generation. He played roles at the Royal Society, the Royal Military Academy, the Board of Longitude, the ‘philomath’ network, and elsewhere. He worked on the explosive force of gunpowder and the mean density of the earth, winning the Royal Society’s Copley Medal in 1778; he was also at the focus of a celebrated row at the Royal Society in 1784 over the place of mathematics there. He is of particular historical interest because of the variety of roles he played in British mathematics, the dexterity with which he navigated, exploited, and shaped personal and professional networks in mathematics and science, and the length and public profile of his career. Hutton corresponded nationally and internationally, and his correspondence illustrates the overlapping, intersection, and interaction of the different networks in which Hutton moved. It therefore provides new information about how Georgian mathematics was structured socially and how mathematical careers worked in that period. It provides a rare and valuable view of a mathematical culture that would substantially cease to exist when British mathematics embraced continental methods from the early nineteenth century onwards.
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48

Levinson, Marjorie. Conclusion. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198810315.003.0011.

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This chapter bridges the gap between historicism and formalism through a new model for lyric. Different kinds of explanation suit different levels of analysis: validity in interpretation is tied to analytic level. Proposed here is a theory of the middle range—Franco Moretti’s genre, Jonathan Culler’s poetics. “Lyric” indicates the kind of poem recognized since the eighteenth century as such—hence, as the extreme form of the literary. A process resembling thinking happens in such densely coded, layered, and self-reflexive poems. The model suggested, however, is not self-reflexivity but self-assembly through a transhistorical recursive process that equally applies beyond conventionally defined agents, subjects, and mental states. As a byproduct of recursion, lyric subjectivity is homologous with processes in the physical and biological sciences, as conceptualized in dynamic systems theory. Such systems spontaneously select for their own boundaries and identity, their own relevant contexts: entity and environment are co-created.
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