492 resultados para COINCIDENCE


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A reconstruction of Milankovitch to millennial-scale variability of sea-surface temperature (SST) and sea-surface productivity in the Pleistocene mid-latitude North Atlantic Ocean (MIS 16-9) and its relationship to ice sheet instability was carried out on sediments from IODP Site U1313. This reconstruction is based on alkenone and n-alkane concentrations, Uk37' index, total organic carbon (TOC) and carbonate contents, X-Ray diffraction (XRD) data, magnetic susceptibility, and accumulation rates. Increased input of ice-rafted debris (IRD) occurred during MIS 16, 12, and 10, characterized by high concentrations of dolomite, quartz, and feldspars and elevated accumulation rates of terrigenous matter. Minimum input values of terrigenous matter, on the other hand, were determined for MIS 13 and 11. Peak values of dolomite, coinciding with quartz, plagioclase, and kalifeldspar peaks and maxima in long-chain n-alkanes indicative for land plants, are interpreted as Heinrich-like Events related to sudden instability of the Laurentide Ice Sheet during early and late (deglacial) phases of the glacials. The coincidence of increased TOC values with elevated absolute concentrations of alkenones suggest increased glacial productivity, probably due to a more southern position of the Polar Front. Alkenone-based SST reached absolute maxima of about 19°C during MIS 11.3 and absolute minima of <10°C during MIS 12 and 10. Within MIS 11, prominent cooling events (MIS 11.22 and 11.24) occurred. The absolute SST minima recorded directly before and after the glacial maxima MIS 10.2 and 12.2, are related to Heinrich-like Event meltwater pulses, as supported by the coincidence of SST minima and maxima in C37:4 alkenones and dolomite. These sudden meltwater pulses - especially during Terminations IV and V - probably caused a collapse of phytoplankton productivity as indicated by the distinct drop in alkenone concentrations. Ice-sheet disintegration and subsequent surges and outbursts of icebergs and meltwater discharge may have been triggered by increased insolation in the Northern High Latitudes.

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It is commonly understood that the observed decline in precipitation in South-West Australia during the 20th century is caused by anthropogenic factors. Candidates therefore are changes to large-scale atmospheric circulations due to global warming, extensive deforestation and anthropogenic aerosol emissions - all of which are effective on different spatial and temporal scales. This contribution focusses on the role of rapidly rising aerosol emissions from anthropogenic sources in South-West Australia around 1970. An analysis of historical longterm rainfall data of the Bureau of Meteorology shows that South-West Australia as a whole experienced a gradual decline in precipitation over the 20th century. However, on smaller scales and for the particular example of the Perth catchment area, a sudden drop in precipitation around 1970 is apparent. Modelling experiments at a convection-resolving resolution of 3.3km using the Weather and Research Forecasting (WRF) model version 3.6.1 with the aerosol-aware Thompson-Eidhammer microphysics scheme are conducted for the period 1970-1974. A comparison of four runs with different prescribed aerosol emissions and without aerosol effects demonstrates that tripling the pre-1960s atmospheric CCN and IN concentrations can suppress precipitation by 2-9%, depending on the area and the season. This suggests that a combination of all three processes is required to account for the gradual decline in rainfall seen for greater South-West Australia and for the sudden drop observed in areas along the West Coast in the 1970s: changing atmospheric circulations, deforestation and anthropogenic aerosol emissions.

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Detailed information about the sediment properties and microstructure can be provided through the analysis of digital ultrasonic P wave seismograms recorded automatically during full waveform core logging. The physical parameter which predominantly affects the elastic wave propagation in water-saturated sediments is the P wave attenuation coefficient. The related sedimentological parameter is the grain size distribution. A set of high-resolution ultrasonic transmission seismograms (-50-500 kHz), which indicate downcore variations in the grain size by their signal shape and frequency content, are presented. Layers of coarse-grained foraminiferal ooze can be identified by highly attenuated P waves, whereas almost unattenuated waves are recorded in fine-grained areas of nannofossil ooze. Color -encoded pixel graphics of the seismograms and instantaneous frequencies present full waveform images of the lithology and attenuation. A modified spectral difference method is introduced to determine the attenuation coefficient and its power law a = kF. Applied to synthetic seismograms derived using a "constant Q" model, even low attenuation coefficients can be quantified. A downcore analysis gives an attenuation log which ranges from -700 dB/m at 400 kHz and a power of n=1-2 in coarse-grained sands to few decibels per meter and n :s; 0.5 in fine-grained clays. A least squares fit of a second degree polynomial describes the mutual relationship between the mean grain size and the attenuation coefficient. When it is used to predict the mean grain size, an almost perfect coincidence with the values derived from sedimentological measurements is achieved.

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Records of total organic carbon (TOC) and C37 alkenones were used as indicators for past primary productivity in the western and eastern Arabian Sea. Data from GeoB 3005, an open ocean site in the western Arabian Sea upwelling area, are compared with similar records of GeoB 3007 from the Owen Ridge, Ocean Drilling Program (ODP) Site 723 from the continental margin off Oman and MD 900963 from the eastern Arabian Sea. TOC/C37 alkenone records together with other proxies used to reconstruct upwelling intensity, indicate periods of high productivity in tune with precessional forcing all over the Arabian Sea. Based on their phase-relationship to variations in boreal summer insolation they can be divided into three groups. In the western Arabian Sea the precession-related phasing is different between productivity proxies and those for summer monsoon wind strength and upwelling intensity. TOC and C37 alkenone records from the western Arabian Sea lag the other monsoonal indicators by about 5 kyr, but lead productivity indicators from the eastern Arabian Sea by 3 kyr. Based on the differences in phase relationships associated with the precessional cycling between productivity and monsoonal proxies in the western Arabian Sea it is proposed that the TOC/C37 alkenone signal in the western Arabian Sea document a combined signal of moderate SW monsoon winds and of strengthened and prolonged NE monsoon winds. In the eastern Arabian Sea the phasing hints to coincidence between maximum productivity and stronger NE monsoon winds associated with precession-related maxima in ice volume. In contrast, variations in paleoproductivity at site GeoB 3007 from the Owen Ridge indicate productivity maxima during glacial substages 8.2, 6.2 and 2.2, whereas precessionrelated changes are of only minor importance at this location. The results of frequency analyses confirm that productivity at site GeoB 3007 responds predominantly to glacialinterglacial climate changes, while site GeoB 3005 from the open ocean upwelling region near the Gulf of Aden is dominated by precessional insolation. A possible explanation for the pattern revealed at the Owen Ridge is the periodic NW-SE displacement of the Findlater Jet axis, which separates the region of open ocean upwelling to the northwest from downwelling to the southeast ofthe jet. The carbon isotopes of planktic foraminifera reflect nutrient related d13C variations of dissolved inorganic carbon. The difference between the planktic foraminifera Globigerinoides ruber (w), living in the upper 50 m of the water column, and the deeper Iiving Neogloboquadrina dutertrei (Delta d13Cr-d) of core GeoB 3005 displays nutrient variations in the upwelling area near the Gulf of Aden. The results of cross-spectral analyses between Deltad13Cr-d of GeoB 3005 and proxies for SW monsoon intensity indicate, too, a dissociation of productivity from monsoonal upwelling intensity. Instead, productivity depends mainly on the availability of nutrients, while upwelling intensity of sub-surface water masses seems to be of only secondary importance. Additionally, sea surface temperatures (SSTs) were reconstructed using the unsaturation ratio of C37 alkenones. Alkenone SSTs reflect annual mean temperatures rather than explicitly the season of upwelling. This is evident from alkenone SSTs in a transect of surface sediments extending from the inner Gulf of Aden into the western Arabian Sea. The alkenone-derived SST records of GeoB 3005 from the open ocean upwelling region near the Gulf of Aden and GeoB 3007 from the Owen Ridge reveal similar variations with high SSTs during interglacial and low SSTs during glacial periods. The glacial marine oxygen isotope stage (MIS) 6 remains relatively warm and was not as cold as MIS 3 to 4 and 8 according to the alkenone SST. Similar variation-patterns were reconstructed in the coastal upwelling area off Oman for ODP Site 723 as weIl as in the eastern Arabian Sea for MD 900963, where upwelling is not as pronounced as in the western Arabian Sea. Spectral-analyses indicate that SST changes are in good agreement with the modulation of low-latitude precessional insolation changes by eccentricity. However, they do not show the pronounced cydicity in the precessional frequency band, which is characteristic for variations in paleoproductivity. Although the overall variation pattern is very similar, a dose comparison between the western (GeoB 3005) and the eastern Arabian Sea (MD 900963) shows larger differences between both sites during cold intervals than during periods of warm SSTs. This is attributed to a more effective cooling of surface waters in the western Arabian Sea by prolonged NE monsoon winds during times of expanded Northern Hemisphere ice-sheets, thereby lowering the annual mean SSTs stronger than in the eastern Arabian Sea.

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We have analyzed the performance of a PET demonstrator formed by two sectors of four monolithic detector blocks placed face-to-face. Both front-end and read-out electronics have been evaluated by means of coincidence measurements using a rotating 22Na source placed at the center of the sectors in order to emulate the behavior of a complete full ring. A continuous training method based on neural network (NN) algorithms has been carried out to determine the entrance points over the surface of the detectors. Reconstructed images from 1 MBq 22Na point source and 22Na Derenzo phantom have been obtained using both filtered back projection (FBP) analytic methods and the OSEM 3D iterative algorithm available in the STIR software package [1]. Preliminary data on image reconstruction from a 22Na point source with Ø = 0.25 mm show spatial resolutions from 1.7 to 2.1 mm FWHM in the transverse plane. The results confirm the viability of this design for the development of a full-ring brain PET scanner compatible with magnetic resonance imaging for human studies.

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We have developed a new projector model specifically tailored for fast list-mode tomographic reconstructions in Positron emission tomography (PET) scanners with parallel planar detectors. The model provides an accurate estimation of the probability distribution of coincidence events defined by pairs of scintillating crystals. This distribution is parameterized with 2D elliptical Gaussian functions defined in planes perpendicular to the main axis of the tube of response (TOR). The parameters of these Gaussian functions have been obtained by fitting Monte Carlo simulations that include positron range, acolinearity of gamma rays, as well as detector attenuation and scatter effects. The proposed model has been applied efficiently to list-mode reconstruction algorithms. Evaluation with Monte Carlo simulations over a rotating high resolution PET scanner indicates that this model allows to obtain better recovery to noise ratio in OSEM (ordered-subsets, expectation-maximization) reconstruction, if compared to list-mode reconstruction with symmetric circular Gaussian TOR model, and histogram-based OSEM with precalculated system matrix using Monte Carlo simulated models and symmetries.

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Oxygen 1s excitation and ionization processes in the CO2 molecule have been studied with dispersed and non-dispersed fluorescence spectroscopy as well as with the vacuum ultraviolet (VUV) photon?photoion coincidence technique. The intensity of the neutral O emission line at 845 nm shows particular sensitivity to core-to-Rydberg excitations and core?valence double excitations, while shape resonances are suppressed. In contrast, the partial fluorescence yield in the wavelength window 300?650 nm and the excitation functions of selected O+ and C+ emission lines in the wavelength range 400?500 nm display all of the absorption features. The relative intensity of ionic emission in the visible range increases towards higher photon energies, which is attributed to O 1s shake-off photoionization. VUV photon?photoion coincidence spectra reveal major contributions from the C+ and O+ ions and a minor contribution from C2+. No conclusive changes in the intensity ratios among the different ions are observed above the O 1s threshold. The line shape of the VUV?O+ coincidence peak in the mass spectrum carries some information on the initial core excitation

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This paper presents a theoretical analysis of possible jitter impact in application of numeric criterion for fastmeasurement of frequency by coincidence principle. The primary goal is the generation of a signal containing a known amount of each jitter components. This signal was used for testing signals with regular pulse trains. Initially, jitter components are analyzed and modeled individually. Next, sequences for combining different kinds of jitter are modeled, simulated and evaluated. Jitter model simulation in Matlab is utilized to show the independence of frequencymeasurement results on the total jitter present in the reference and desired pulse trains independently. A good agreement between previously introduced theory of fastmeasurement of frequency and simulation in jitter presence is verified; these results allows to engineers use the numeric criterion for fastmeasurement of frequency in spite to interactions among jitter components in various applications for frequency domain sensors.

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La tesis revela paralelismos y conexiones entre las arquitectas/diseñadoras Charlotte Perriand (1903-1999) y Kazuyo Sejima (n. 1956), reflejados en una serie de proyectos de pequeña escala que denomino arquitectura petite—mobiliario tecnológico habitable—, resultado de momentos semejantes de cambio social, cultural, económico, industrial y transnacional en Francia en la década de 1920 y en Japón en la década de 1980. Este trabajo dirige su atención a la arquitectura doméstica concebida desde el interior por arquitectos con una formación complementaria en diseño de mobiliario. A su vez, profundiza en la relación que se establece entre el diseño de una casa y el diseño de un mueble, una máquina o un vestido. Los pequeños proyectos, próximos al mobiliario, diseñados por Sejima, no han sido suficientemente estudiados, al igual que los proyectos de arquitectura experimental proyectados por Perriand. Ambas trayectorias analizadas desde estos renovados puntos de vista se encuentran en lo que denominamos arquitectura petite. Surge así un nuevo paradigma espacial en un contexto de poder de lo femenino—en los medios de comunicación—y de intercambio cultural transnacional. Cuando el mobiliario crece y se equipa tecnológicamente para hacerse habitable por un grupo de personas, con cualidades suficientes de confort sensorial, es arquitectura petite. En 2009, Toyo Ito mostró en una conferencia en Madrid, una imagen de Sejima posando en su proyecto Pao I. Justo ochenta años antes, en 1929, Le Corbusier presentó en Buenos Aires la imagen de Perriand posando para su Chaise Longue. La coincidencia de ambas fotografías, junto con la lectura de dos inspiradores artículos de Toyo Ito, “Adèle’s dream” (1984)—cuyo enigmático título utiliza un nombre francés femenino para describir una casa japonesa—y “Simple lines for Le Corbusier” (1994), dieron origen a la hipótesis central de una investigación: la comparación de dos arquitectas, sus maestros y dos objetos pertenecientes a dos momentos y lugares distantes. Perriand y Sejima fueron emblemas del concepto de Nueva Feminidad, ambas tenían éxito en la prensa generalista del momento antes de ser contratadas por Le Corbusier y Toyo Ito respectivamente. Junto a sus maestros de entonces, concibieron dos iconos de la era de la maquina y de la electrónica respectivamente, la Chaise Longue (1928) y Pao I (1985), diseñados para ellas mismas. Perriand y Sejima usaron su propio cuerpo como unidad de medida y su imagen como reclamo publicitario para la promoción de los dos objetos respectivamente. La precisión técnica, materiales de lujo y enfoque de la relajación que compartieron la Chaise Longue y Pao I sugirió un nomadismo lúdico que anticipó el desarrollo posterior de lo que denominamos de arquitectura petite por parte de Perriand y Sejima. Ambos prototipos son los antecedentes de una arquitectura de talla precisa o petite (objetos híbridos entre casa, mueble y máquina con la sensualidad como característica distintiva) que ambas arquitectas han proyectado a lo largo de su carrera, y que aúnan su interés mutuo por las propiedades físicas de los materiales, así como su formación en diseño de mobiliario y su fascinación por la moda. La tesis concluye que la arquitectura petite es la depositaria de los manifiestos de una época, la que sigue a la era de la máquina enunciada por Le Corbusier y a la era de la electrónica descrita por Toyo Ito. En este sentido, la tesis evidencia la forma en la que importantes arquitectos han concentrado ideas ambiciosas en pequeños proyectos. Las características de petite se resumen en el hecho de ser una arquitectura de límites precisos, desmontable y por tanto temporal, que explora el potencial técnico y formal de nuevos materiales importados de otras industrias, incorpora condiciones sensuales propias de su escala antropométrica, y está destinada al ocio de un grupo de personas. A modo de colofón, la tesis descubre la existencia de una historia de ficción que vincula a Charlotte Perriand y Kazuyo Sejima a través de Toyo Ito: “El diario de Adèle”. ABSTRACT This dissertation reveals parallels between the architects/designers Charlotte Perriand (1903- 1999) and Kazuyo Sejima (b. 1956), reflected in a series of small projects I call petite architecture—habitable technological furniture—, which formed during similar periods of social, cultural, economic, industrial and transnational change in France in the 1920s and in Japan in the 1980s. This research focuses on domestic architecture conceived from the inside by architects with additional training in furniture design. At the same time, it explores the relationships established between the design of a house, a piece of furniture, a machine, or a dress. Small architectural projects, close to the furniture, designed by Sejima have not been sufficiently studied, as well as the experimental architectural projects designed by Perriand. Both of their experimental trajectories analyzed from this renovated point of view converge on what we call petite architecture. Thus, it raises a new spatial paradigm in the context of feminine power within the media, as direct consumers, and transnational cultural exchange. When furniture expands and is technologically equipped to the point where it becomes habitable by a group, or groups of people, providing its occupants with sensorial comfort, it is petite architecture. In 2009, at a conference in Madrid, Ito showed a picture of Sejima posing at his Pao I (1985). Just eighty years earlier, in 1929, Le Corbusier exhibited in a conference in Buenos Aires an image of Perriand posing for his Chaise Longue (1928). The coincidence of the two photographs, along with two inspiring articles by Toyo Ito "Adèle's dream" (1984) — whose enigmatic title uses a French female name to describe a Japanese house — and "Simple lines for Le Corbusier" (1994) led to a hypothesis and an investigation comparing the two architects, their mentors, and two objects, each belonging to two distant times and places. Perriand and Sejima were emblems of the concept of New Femininity, both had success in the media of their time before being hired by Le Corbusier and Toyo Ito respectively. Together with their mentors they designed two objects that became icons of the Machine Age and the Electronic Age respectively: the Chaise Longue (1928) and Pao I (1985). Designed "for themselves," Perriand and Sejima used their own bodies as a measuring unit and their image as a publicity stunt to promote the two objects respectively. Both objects are the embryonic capsules of the architecture that pampers the scale or petite (objects that conflate residence, machine and furniture, and have sensuality as a distinctive feature). From the technical precision, luxurious materials, and approach towards relaxation, emerged a playful nomadism, which anticipated the further development of what we call petite architecture. Perriand and Sejima would develop these ideas throughout their career, pooling their interests on the physical properties of materials, formation in furniture design, and their intense interest in fashion. The dissertation concludes that petite architecture is the manifestation of an age, which follows the Machine Age defined by Le Corbusier and the Electronic Age described by Toyo Ito. In this sense, the dissertation demonstrates the way in which important architects have focused their ambitious ideas on small projects. petite characteristics are summarized as being: architecture that pampers the scale, is (de)mountable and therefore temporary, explores the formal and technical potential of novel materials and techniques imported from other industries, incorporates sensual conditions according with its anthropometric scale, and is conceived for the leisure of a group of people. In addition, by way of colophon, the dissertation discovers the existence of a fictional story that links Charlotte Perriand and Kazuyo Sejima through Toyo Ito: "Adèle's Diary".

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A PET imaging system demonstrator based on LYSO crystal arrays coupled to SiPM matrices is under construction at the University and INFN of Pisa. Two SiPM matrices, composed of 8×8 SiPM pixels, and 1,5 mm pitch, have been coupled one to one to a LYSO crystals array and read out by a custom electronics system. front-end ASICs were used to read 8 channels of each matrix. Data from each front-end were multiplexed and sent to a DAQ board for the digital conversion; a motherboard collects the data and communicates with a host computer through a USB port for the storage and off-line data processing. In this paper we show the first preliminary tomographic image of a point-like radioactive source acquired with part of the two detection heads in time coincidence.

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El espacio geográfico, entendido como territorio que da soporte a la vida y a la civilización, ha estado siempre fuertemente supeditado a la presencia de agua. Desde la Prehistoria el hombre otorgó al agua, junto a otros elementos que aseguraban o protegían su vida, un valor superior, por encima de lo humano. Paralelamente y de manera natural, el jardín, en sus inicios en estrecha relación con la agricultura y con el paisaje, fue el ámbito idóneo para la creación de nuevas formas acuáticas artificiales. Este proceso dio lugar a un extenso repertorio de formas compositivas que parece que tuvo en el Renacimiento un punto de inflexión, en el que se observa como la mayoría de recursos y configuraciones básicas del agua estaban ya plenamente establecidas. Esta evolución y sus resultados ha sido el objeto de la primera parte de la tesis: su objetivo ha sido analizar cómo el agua configura, cualifica o puede llegar a construir el jardín y el territorio en el que se inserta, así como establecer las posibles relaciones entre estos dos ámbitos de estudio. Aunque la historia es su fundamento, el planteamiento aquí ha sido más bien conceptual; estudiando los componentes acuáticos desde un punto de vista fundamentalmente compositivo. Esta indagación previa ha sido indispensable para llegar a entender en profundidad los modos en los que el agua se muestra en el jardín y en el paisaje renacentista y manierista, momentos en que se insertan los dos casos de estudio que constituyen la segunda parte de la tesis. Sin caer en un determinismo geográfico extremo, puede admitirse que el jardín, como manifestación cultural intrínsecamente ligada al entorno, depende fuertemente del territorio en el que se asienta; hecho particularmente evidente en aquellas regiones en las que su especial geografía ha sido un claro factor condicionante de su historia. Por ello, Holanda y España han sido las dos localizaciones elegidas para profundizar en este estudio; no tanto por su estrecha relación política y cultural, sino por su profundo y sugerente contraste de medio físico y climático. La Península Ibérica, geográficamente el término del mundo conocido en Occidente hasta el final de la Edad Media, y por esta circunstancia convertida en destino, en territorio de permanencia y fusión, estará además supeditada en la mayoría de su territorio a la falta de agua, siendo a la vez heredera directa del universo y la tradición del jardín meridional originario de Oriente. En el extremo opuesto, Holanda, espacio de transición entre el mar y la tierra firme “real”, es un territorio permeado de humedad y surcado con generosidad por grandes ríos. El país, con una relación ambivalente con el agua, unas veces como amenaza y otras como fuente de nuevas oportunidades, será por el contrario especialmente favorable para el desarrollo de un modelo de jardín septentrional. Un jardín del norte, que no obstante, no surgirá de despejar los bosques, como en el arquetipo nórdico, sino que crecerá sobre planicies antes saturadas de agua o directamente anegadas. El marco temporal de los dos casos concretos ha considerado como fecha inicial 1548, momento en el que Felipe II, aún príncipe, realizó su primer viaje a los Países Bajos, y entró en contacto con el modelo holandés. La extensa producción posterior de jardines de Felipe II, siempre con el agua como protagonista, tuvo como destacado referente la adaptación al suelo y la geografía hispánicos de dicho modelo. Como fecha final se fija 1648, justo un siglo después, fecha coincidente con la firma de la Paz de Westfalia, tratado que supone la total reorganización política del territorio europeo y la pérdida de la hegemonía española en Europa. En Holanda sólo dos años después nacerá Guillermo III de Orange, estatúder de las Provincias Unidas, también futuro rey de Inglaterra, Escocia e Irlanda. Para entonces en Holanda ya se había asistido al desarrollo de un arte propio de jardín, íntimamente ligado al agua, sorprendentemente no demasiado bien conocido y que será uno de los temas de esta investigación. Finalmente, se propone una lectura conjunta de toda esta serie de intervenciones que tienen como argumento el agua, en la que se integra la información procedente de distintos campos de estudio, cada una con su metodología particular. El resultado es una tesis en la que el jardín y el territorio son tratados desde un nuevo y enriquecedor punto de vista. ABSTRACT Geographical space, understood as the territory that provides support to human life and civilization, has always been strongly subjected to the presence of water. From Prehistory man gave to water, along with other elements that ensured or protected life, a higher value than the merely human. At the same time and in a natural way, the garden, in its beginnings with a close relationship with agriculture and landscape, soon developed as the appropriate ground for the creation of new artificial aquatic forms, in a process that seems to have a turning point in the Renaissance, when most of the basic waterworks and resources were already fully established. This development and its outcomes are the subjects of the first part of the thesis: its scope has been to analyse how water configures, qualifies and might even help to construct the garden or landscape attached to it; and to establish the possible links between these two fields of study. Although history based, the point of view here is mainly conceptual, studying the water components understood as composite elements. This exploratory research has been essential to deeply understand the water patterns shown in the Renaissance and Mannerist garden and landscape, periods in which the two case studies are inserted. Without falling in extreme determinism, it can be accepted however, that garden, as a cultural expression linked to environment, is strongly dependant on territorial setting; something particularly evident in those areas where specific geography has been a clear history conditioning factor. This is the reason that leads to choose the Netherlands and Spain to deepen this study, no so much for their interesting cultural and politics relations as for the suggestive and profound contrast of their physical environment and climate. The Iberian Peninsula, geographically the limit of the known world in Occident until the end of the Medium Age, and by this circumstance understood as endpoint, more a destination than a crossroad, a territory of permanence and fusion, but also subjected to water shortage; is thus associated with the universe and tradition of the meridional garden imported from Orient. In the opposite, the Netherlands, a transitional space between the sea and the “real” firm land, is a territory permeated by water and crossed by big rivers. Always with an ambivalent relationship with water, sometimes seen as a threat and sometimes as a source of new opportunities, it was in the other hand the adequate land for the development of a special model of Northern garden. A garden that will not arise, however, from the clearing of woods as in the Nordic archetype, but that will grow on plains originally saturated of water or directly waterlogged. The timeframe of the two cases has 1548 as the initial year, moment in which Philip II, yet prince, made his first trip to the Low Lands and imbibed the Dutch garden model. The later and bountiful garden works of the king, always with the water as the main focus, adapted the imported model to the Spanish ground and geography. The final date is fixed in 1648, just a century after, in coincidence with the Westfalia Peace; a treaty that implied the total political reorganization of the European territory and the end of the Spanish hegemony in the continent. In Holland, only two years later, William III of Orange, Stadtholder of the United Provinces and also future king of England, Scotland and Ireland, was born. But by then the Netherlands had developed an own garden art, closely linked to water. This type garden, surprisingly not very well known, and its relationship with water, will be other of the addressing questions of this work. Finally, the investigation merges the different interventions that have water as an argument, integrating all the fields considered with their particular methodological approaches. The final result is a thesis in which garden and territory are treated from a new and enriching perspective.

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Esta tesis recoje un trabajo experimental centrado en profundizar sobre el conocimiento de los bloques detectores monolíticos como alternativa a los detectores segmentados para tomografía por emisión de positrones (Positron Emission Tomography, PET). El trabajo llevado a cabo incluye el desarrollo, la caracterización, la puesta a punto y la evaluación de prototipos demostradores PET utilizando bloques monolíticos de ortosilicato de lutecio ytrio dopado con cerio (Cerium-Doped Lutetium Yttrium Orthosilicate, LYSO:Ce) usando sensores compatibles con altos campos magnéticos, tanto fotodiodos de avalancha (Avalanche Photodiodes, APDs) como fotomultiplicadores de silicio (Silicon Photomultipliers, SiPMs). Los prototipos implementados con APDs se construyeron para estudiar la viabilidad de un prototipo PET de alta sensibilidad previamente simulado, denominado BrainPET. En esta memoria se describe y caracteriza la electrónica frontal integrada utilizada en estos prototipos junto con la electrónica de lectura desarrollada específicamente para los mismos. Se muestran los montajes experimentales para la obtención de las imágenes tomográficas PET y para el entrenamiento de los algoritmos de red neuronal utilizados para la estimación de las posiciones de incidencia de los fotones γ sobre la superficie de los bloques monolíticos. Con el prototipo BrainPET se obtuvieron resultados satisfactorios de resolución energética (13 % FWHM), precisión espacial de los bloques monolíticos (~ 2 mm FWHM) y resolución espacial de la imagen PET de 1,5 - 1,7 mm FWHM. Además se demostró una capacidad resolutiva en la imagen PET de ~ 2 mm al adquirir simultáneamente imágenes de fuentes radiactivas separadas a distancias conocidas. Sin embargo, con este prototipo se detectaron también dos limitaciones importantes. En primer lugar, se constató una falta de flexibilidad a la hora de trabajar con un circuito integrado de aplicación específica (Application Specific Integrated Circuit, ASIC) cuyo diseño electrónico no era propio sino comercial, unido al elevado coste que requieren las modificaciones del diseño de un ASIC con tales características. Por otra parte, la caracterización final de la electrónica integrada del BrainPET mostró una resolución temporal con amplio margen de mejora (~ 13 ns FWHM). Tomando en cuenta estas limitaciones obtenidas con los prototipos BrainPET, junto con la evolución tecnológica hacia matrices de SiPM, el conocimiento adquirido con los bloques monolíticos se trasladó a la nueva tecnología de sensores disponible, los SiPMs. A su vez se inició una nueva estrategia para la electrónica frontal, con el ASIC FlexToT, un ASIC de diseño propio basado en un esquema de medida del tiempo sobre umbral (Time over Threshold, ToT), en donde la duración del pulso de salida es proporcional a la energía depositada. Una de las características más interesantes de este esquema es la posibilidad de manejar directamente señales de pulsos digitales, en lugar de procesar la amplitud de las señales analógicas. Con esta arquitectura electrónica se sustituyen los conversores analógicos digitales (Analog to Digital Converter, ADCs) por conversores de tiempo digitales (Time to Digital Converter, TDCs), pudiendo implementar éstos de forma sencilla en matrices de puertas programmable ‘in situ’ (Field Programmable Gate Array, FPGA), reduciendo con ello el consumo y la complejidad del diseño. Se construyó un nuevo prototipo demostrador FlexToT para validar dicho ASIC para bloques monolíticos o segmentados. Se ha llevado a cabo el diseño y caracterización de la electrónica frontal necesaria para la lectura del ASIC FlexToT, evaluando su linealidad y rango dinámico, el comportamiento frente a ruido así como la no linealidad diferencial obtenida con los TDCs implementados en la FPGA. Además, la electrónica presentada en este trabajo es capaz de trabajar con altas tasas de actividad y de discriminar diferentes centelleadores para aplicaciones phoswich. El ASIC FlexToT proporciona una excelente resolución temporal en coincidencia para los eventos correspondientes con el fotopico de 511 keV (128 ps FWHM), solventando las limitaciones de resolución temporal del prototipo BrainPET. Por otra parte, la resolución energética con bloques monolíticos leidos por ASICs FlexToT proporciona una resolución energética de 15,4 % FWHM a 511 keV. Finalmente, se obtuvieron buenos resultados en la calidad de la imagen PET y en la capacidad resolutiva del demostrador FlexToT, proporcionando resoluciones espaciales en el centro del FoV en torno a 1,4 mm FWHM. ABSTRACT This thesis is focused on the development of experimental activities used to deepen the knowledge of monolithic detector blocks as an alternative to segmented detectors for Positron Emission Tomography (PET). It includes the development, characterization, setting up, running and evaluation of PET demonstrator prototypes with monolithic detector blocks of Cerium-doped Lutetium Yttrium Orthosilicate (LYSO:Ce) using magnetically compatible sensors such as Avalanche Photodiodes (APDs) and Silicon Photomultipliers (SiPMs). The prototypes implemented with APDs were constructed to validate the viability of a high-sensitivity PET prototype that had previously been simulated, denominated BrainPET. This work describes and characterizes the integrated front-end electronics used in these prototypes, as well as the electronic readout system developed especially for them. It shows the experimental set-ups to obtain the tomographic PET images and to train neural networks algorithms used for position estimation of photons impinging on the surface of monolithic blocks. Using the BrainPET prototype, satisfactory energy resolution (13 % FWHM), spatial precision of monolithic blocks (~ 2 mm FWHM) and spatial resolution of the PET image (1.5 – 1.7 mm FWHM) in the center of the Field of View (FoV) were obtained. Moreover, we proved the imaging capabilities of this demonstrator with extended sources, considering the acquisition of two simultaneous sources of 1 mm diameter placed at known distances. However, some important limitations were also detected with the BrainPET prototype. In the first place, it was confirmed that there was a lack of flexibility working with an Application Specific Integrated Circuit (ASIC) whose electronic design was not own but commercial, along with the high cost required to modify an ASIC design with such features. Furthermore, the final characterization of the BrainPET ASIC showed a timing resolution with room for improvement (~ 13 ns FWHM). Taking into consideration the limitations obtained with the BrainPET prototype, along with the technological evolution in magnetically compatible devices, the knowledge acquired with the monolithic blocks were transferred to the new technology available, the SiPMs. Moreover, we opted for a new strategy in the front-end electronics, the FlexToT ASIC, an own design ASIC based on a Time over Threshold (ToT) scheme. One of the most interesting features underlying a ToT architecture is the encoding of the analog input signal amplitude information into the duration of the output signals, delivering directly digital pulses. The electronic architecture helps substitute the Analog to Digital Converters (ADCs) for Time to Digital Converters (TDCs), and they are easily implemented in Field Programmable Gate Arrays (FPGA), reducing the consumption and the complexity of the design. A new prototype demonstrator based on SiPMs was implemented to validate the FlexToT ASIC for monolithic or segmented blocks. The design and characterization of the necessary front-end electronic to read-out the signals from the ASIC was carried out by evaluating its linearity and dynamic range, its performance with an external noise signal, as well as the differential nonlinearity obtained with the TDCs implemented in the FPGA. Furthermore, the electronic presented in this work is capable of working at high count rates and discriminates different phoswich scintillators. The FlexToT ASIC provides an excellent coincidence time resolution for events that correspond to 511 keV photopeak (128 ps FWHM), resolving the limitations of the poor timing resolution of the BrainPET prototype. Furthermore, the energy resolution with monolithic blocks read by FlexToT ASICs provides an energy resolution of 15.4 % FWHM at 511 keV. Finally, good results were obtained in the quality of the PET image and the resolving power of the FlexToT demonstrator, providing spatial resolutions in the centre of the FoV at about 1.4 mm FWHM.

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La frecuencia con la que se producen explosiones sobre edificios, ya sean accidentales o intencionadas, es reducida, pero sus efectos pueden ser catastróficos. Es deseable poder predecir de forma suficientemente precisa las consecuencias de estas acciones dinámicas sobre edificaciones civiles, entre las cuales las estructuras reticuladas de hormigón armado son una tipología habitual. En esta tesis doctoral se exploran distintas opciones prácticas para el modelado y cálculo numérico por ordenador de estructuras de hormigón armado sometidas a explosiones. Se emplean modelos numéricos de elementos finitos con integración explícita en el tiempo, que demuestran su capacidad efectiva para simular los fenómenos físicos y estructurales de dinámica rápida y altamente no lineales que suceden, pudiendo predecir los daños ocasionados tanto por la propia explosión como por el posible colapso progresivo de la estructura. El trabajo se ha llevado a cabo empleando el código comercial de elementos finitos LS-DYNA (Hallquist, 2006), desarrollando en el mismo distintos tipos de modelos de cálculo que se pueden clasificar en dos tipos principales: 1) modelos basados en elementos finitos de continuo, en los que se discretiza directamente el medio continuo mediante grados de libertad nodales de desplazamientos; 2) modelos basados en elementos finitos estructurales, mediante vigas y láminas, que incluyen hipótesis cinemáticas para elementos lineales o superficiales. Estos modelos se desarrollan y discuten a varios niveles distintos: 1) a nivel del comportamiento de los materiales, 2) a nivel de la respuesta de elementos estructurales tales como columnas, vigas o losas, y 3) a nivel de la respuesta de edificios completos o de partes significativas de los mismos. Se desarrollan modelos de elementos finitos de continuo 3D muy detallados que modelizan el hormigón en masa y el acero de armado de forma segregada. El hormigón se representa con un modelo constitutivo del hormigón CSCM (Murray et al., 2007), que tiene un comportamiento inelástico, con diferente respuesta a tracción y compresión, endurecimiento, daño por fisuración y compresión, y rotura. El acero se representa con un modelo constitutivo elastoplástico bilineal con rotura. Se modeliza la geometría precisa del hormigón mediante elementos finitos de continuo 3D y cada una de las barras de armado mediante elementos finitos tipo viga, con su posición exacta dentro de la masa de hormigón. La malla del modelo se construye mediante la superposición de los elementos de continuo de hormigón y los elementos tipo viga de las armaduras segregadas, que son obligadas a seguir la deformación del sólido en cada punto mediante un algoritmo de penalización, simulando así el comportamiento del hormigón armado. En este trabajo se denominarán a estos modelos simplificadamente como modelos de EF de continuo. Con estos modelos de EF de continuo se analiza la respuesta estructural de elementos constructivos (columnas, losas y pórticos) frente a acciones explosivas. Asimismo se han comparado con resultados experimentales, de ensayos sobre vigas y losas con distintas cargas de explosivo, verificándose una coincidencia aceptable y permitiendo una calibración de los parámetros de cálculo. Sin embargo estos modelos tan detallados no son recomendables para analizar edificios completos, ya que el elevado número de elementos finitos que serían necesarios eleva su coste computacional hasta hacerlos inviables para los recursos de cálculo actuales. Adicionalmente, se desarrollan modelos de elementos finitos estructurales (vigas y láminas) que, con un coste computacional reducido, son capaces de reproducir el comportamiento global de la estructura con una precisión similar. Se modelizan igualmente el hormigón en masa y el acero de armado de forma segregada. El hormigón se representa con el modelo constitutivo del hormigón EC2 (Hallquist et al., 2013), que también presenta un comportamiento inelástico, con diferente respuesta a tracción y compresión, endurecimiento, daño por fisuración y compresión, y rotura, y se usa en elementos finitos tipo lámina. El acero se representa de nuevo con un modelo constitutivo elastoplástico bilineal con rotura, usando elementos finitos tipo viga. Se modeliza una geometría equivalente del hormigón y del armado, y se tiene en cuenta la posición relativa del acero dentro de la masa de hormigón. Las mallas de ambos se unen mediante nodos comunes, produciendo una respuesta conjunta. En este trabajo se denominarán a estos modelos simplificadamente como modelos de EF estructurales. Con estos modelos de EF estructurales se simulan los mismos elementos constructivos que con los modelos de EF de continuo, y comparando sus respuestas estructurales frente a explosión se realiza la calibración de los primeros, de forma que se obtiene un comportamiento estructural similar con un coste computacional reducido. Se comprueba que estos mismos modelos, tanto los modelos de EF de continuo como los modelos de EF estructurales, son precisos también para el análisis del fenómeno de colapso progresivo en una estructura, y que se pueden utilizar para el estudio simultáneo de los daños de una explosión y el posterior colapso. Para ello se incluyen formulaciones que permiten considerar las fuerzas debidas al peso propio, sobrecargas y los contactos de unas partes de la estructura sobre otras. Se validan ambos modelos con un ensayo a escala real en el que un módulo con seis columnas y dos plantas colapsa al eliminar una de sus columnas. El coste computacional del modelo de EF de continuo para la simulación de este ensayo es mucho mayor que el del modelo de EF estructurales, lo cual hace inviable su aplicación en edificios completos, mientras que el modelo de EF estructurales presenta una respuesta global suficientemente precisa con un coste asumible. Por último se utilizan los modelos de EF estructurales para analizar explosiones sobre edificios de varias plantas, y se simulan dos escenarios con cargas explosivas para un edificio completo, con un coste computacional moderado. The frequency of explosions on buildings whether they are intended or accidental is small, but they can have catastrophic effects. Being able to predict in a accurate enough manner the consequences of these dynamic actions on civil buildings, among which frame-type reinforced concrete buildings are a frequent typology is desirable. In this doctoral thesis different practical options for the modeling and computer assisted numerical calculation of reinforced concrete structures submitted to explosions are explored. Numerical finite elements models with explicit time-based integration are employed, demonstrating their effective capacity in the simulation of the occurring fast dynamic and highly nonlinear physical and structural phenomena, allowing to predict the damage caused by the explosion itself as well as by the possible progressive collapse of the structure. The work has been carried out with the commercial finite elements code LS-DYNA (Hallquist, 2006), developing several types of calculation model classified in two main types: 1) Models based in continuum finite elements in which the continuous medium is discretized directly by means of nodal displacement degrees of freedom; 2) Models based on structural finite elements, with beams and shells, including kinematic hypothesis for linear and superficial elements. These models are developed and discussed at different levels: 1) material behaviour, 2) response of structural elements such as columns, beams and slabs, and 3) response of complete buildings or significative parts of them. Very detailed 3D continuum finite element models are developed, modeling mass concrete and reinforcement steel in a segregated manner. Concrete is represented with a constitutive concrete model CSCM (Murray et al., 2007), that has an inelastic behaviour, with different tension and compression response, hardening, cracking and compression damage and failure. The steel is represented with an elastic-plastic bilinear model with failure. The actual geometry of the concrete is modeled with 3D continuum finite elements and every and each of the reinforcing bars with beam-type finite elements, with their exact position in the concrete mass. The mesh of the model is generated by the superposition of the concrete continuum elements and the beam-type elements of the segregated reinforcement, which are made to follow the deformation of the solid in each point by means of a penalty algorithm, reproducing the behaviour of reinforced concrete. In this work these models will be called continuum FE models as a simplification. With these continuum FE models the response of construction elements (columns, slabs and frames) under explosive actions are analysed. They have also been compared with experimental results of tests on beams and slabs with various explosive charges, verifying an acceptable coincidence and allowing a calibration of the calculation parameters. These detailed models are however not advised for the analysis of complete buildings, as the high number of finite elements necessary raises its computational cost, making them unreliable for the current calculation resources. In addition to that, structural finite elements (beams and shells) models are developed, which, while having a reduced computational cost, are able to reproduce the global behaviour of the structure with a similar accuracy. Mass concrete and reinforcing steel are also modeled segregated. Concrete is represented with the concrete constitutive model EC2 (Hallquist et al., 2013), which also presents an inelastic behaviour, with a different tension and compression response, hardening, compression and cracking damage and failure, and is used in shell-type finite elements. Steel is represented once again with an elastic-plastic bilineal with failure constitutive model, using beam-type finite elements. An equivalent geometry of the concrete and the steel is modeled, considering the relative position of the steel inside the concrete mass. The meshes of both sets of elements are bound with common nodes, therefore producing a joint response. These models will be called structural FE models as a simplification. With these structural FE models the same construction elements as with the continuum FE models are simulated, and by comparing their response under explosive actions a calibration of the former is carried out, resulting in a similar response with a reduced computational cost. It is verified that both the continuum FE models and the structural FE models are also accurate for the analysis of the phenomenon of progressive collapse of a structure, and that they can be employed for the simultaneous study of an explosion damage and the resulting collapse. Both models are validated with an experimental full-scale test in which a six column, two floors module collapses after the removal of one of its columns. The computational cost of the continuum FE model for the simulation of this test is a lot higher than that of the structural FE model, making it non-viable for its application to full buildings, while the structural FE model presents a global response accurate enough with an admissible cost. Finally, structural FE models are used to analyze explosions on several story buildings, and two scenarios are simulated with explosive charges for a full building, with a moderate computational cost.

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Alison Margaret Gill y Peter Denham Smithson son, o eran, ambos murieron hace ya algunos años, dos arquitectos. Así dicho, esto suena a obviedad. Sin embargo no lo es, porque siempre han sido compactados en una unidad proyectual, bien bajo las siglas Alison y Peter Smithson, o bien, más puntualmente todavía, como los Smithson. Cuando Leibniz en 1696 le dice a la princesa electora Sofía que en algo tan puntual y homogéneo aparentemente como una gota de agua, vista al microscopio, resulta haber más de un millón de animales vivos, se puede empezar a vislumbrar el resultado de la Tesis. El resultado de este trabajo no se contempla un millón de partículas pero sí dos. La obra de Alison y Peter Smithson esta conformada desde su inicio probablemente por la particularidad de que en ella intervienen tanto Gill como Smithson, aunque cada uno sea en mayor o menor medida la o el responsable de un proyecto. Puesto al microscopio el proyecto del que se ocupa la Tesis, el concurso de 1953 para la ampliación de la Universidad de Sheffield, se estima que está compuesto de dos partes diferentes y que como Los Smithson o como una gota de agua, su unidad es una mera convención, una forma de designarlo y tratarlo, que falsea en algo su apreciación, aunque, como se verá, es lo que provoca el extraño efecto que como imagen ejerce. El Capítulo I descubre la duplicidad. Reyner Banham fijó en 1955, en el artículo The New Brutalism, el modo de encarar el proyecto de Sheffield cuando proyectó sobre él lo más novedoso que en el campo de la pintura ocurría en ese momento, el Art Autre. Michel Tapié ve en el informalismo presente en las obras que él engloba como un <> rasgos que puede presentar a la luz de conceptos que extrae de Riemann, matemático del s. XIX, introductor de una nueva geometría. La Tesis remonta por tanto hasta Riemann, a la búsqueda del concepto del que penden tanto Tapié como Banham. El concepto es la variedad continua; un conjunto, cuyos elementos pueden recorrer la extensión de la variedad mediante una deformación continua, como si dijéramos, diluyéndose unos en otros sin cortes entre sí. Los ejemplos del informalismo serían, por tanto, los puntos de la variedad, formas inestables o detenciones aleatorias en este transitar continuo de un mismo objeto. La visión de cuerpos en cortes aleatorios a la evolución otorga a sus formas cualesquiera la condición de extrañeza o perturbación, produciendo un impacto en la mente que lo graba instintivamente en la materia de la memoria. Así, es la memorabilidad, dada precisamente por el impacto que supone ver cuerpos en estado evolutivo, sin una forma precisa, la propiedad que gobierna a los objetos que caen bajo el Art Autre, y es la memorabilidad el rasgo distintivo de Sheffield para Banham. Este sentido evolutivo que se puede asociar a los elementos de una variedad entra en consonancia con una variedad de estados en evolución en el marco de las especies orgánicas. No sólo como individuo sino también como especie. La coincidencia no sólo es formal, también es temporal entre el descubrimiento de Riemann de la variedad continua y el de Darwin de la evolución de las especies. Ve Darwin que algunos ejemplares presentan en su cuerpo conformaciones normales de especies diferentes, que puede entenderse como una anormalidad o defecto evolutivo, lo que él llama <>. Un ejemplar monstruoso no es capaz de abrir una escisión de la variedad y en este sentido rompe su cadena evolutiva. Es un elemento, por tanto extraño a la variedad. Lo peculiar que expone Darwin, es que la monstruosidad puede ser provocada artificialmente por motivos estéticos, como ocurre en determinados animales o plantas ornamentales. Bien, esto es exactamente lo que descubre la Tesis en el proyecto de Sheffield. La unión en un solo proyecto de dos conformaciones de naturaleza diferente. El Capítulo II indaga en la naturaleza dual de Sheffield. Y la descubre en la aplicación de dos principios que tienen múltiples derivas, pero interesante en una en particular, referida al espacio. Uno es el Principio de Posición. Bajo él se contempla la situación del concurso dada en su globalidad, en una visión totalizadora que permite buscar y destacar posiciones singulares y tener un control preciso del proyecto desde el inicio. Se dice que es la opción normal en arquitectura comprender el espacio en su conjunto y que el trazado de ejes y el reparto del espacio obedecen a este principio. Son así vistos la propuesta ganadora del equipo GMW y fundamentalmente el trazado de ejes en la obra de Le Corbusier. Una parte de Sheffield es un producto típico de este modo de proceder. Hay un segundo principio que es el Principio de Transición Continua. En los términos expuestos para la variedad de Riemann, sería como si en lugar de ver cuerpos en estados concretos, por deformados que pudieran ser, nos introdujéramos dentro de la propia variedad acoplándonos al curso de la evolución misma, en un acto de unión interior con la marcha de la evolución. Para ejercer esta acción se toma como punto inicial el extremo del edificio universitario existente, el Firth Court, y se lleva cabo un estiramiento continuo. En esto radica lo que la Tesis distingue como la ampliación, el cuerpo que se enrosca paulatinamente. Para exponer este concepto, la Tesis se apoya en un ejercicio llevado a cabo por Raymond Unwin en Hampstead, el close, o estiramiento lateral del borde de un viario para hacer surgir el espacio útil residencial. A partir del concepto de close, se deriva en la urbanística americana de principios del s. XX el concepto de cluster, que pasa a ser uno de los argumentos principales de la teoría de Alison y de Peter Smithson en los años 50. El Capítulo III plantea la dificultad de mantener la dualidad de Sheffield a primeros de los 50, sometido el proyecto de arquitectura a la unicidad que impone el criterio hegemónico de Rudolf Wittkower desde “Los Fundamentos de la Arquitectura en la Edad del Humanismo”. Como en el Capítulo I, la obligación que se traza la Tesis es remontar los orígenes de las cosas que se tratan, y en este caso, entrar en las fuentes del principio proporcional. Se descubren así los fundamentos de la proporción aritmética y geométrica en el seno del pitagorismo, sus problemas y su evolución. La postura de los dos arquitectos frente a Wittkower es de admiración, pero también de libertad. Esta libertad suya es la que defiende la Tesis. Cotejando lo que da de sí la arquitectura basada en los principios proporcionales con otra arquitectura estancada en el paso del Renacimiento al Barroco como es la arquitectura perspectiva y proyectiva, la arquitectura oblicua, recuperada a la sazón por medio de la intervención en la Tesis de Panofsky, se dirimen aspectos colaterales pero fundamentales de una renovación de los planteamientos: hay planteamientos que se dicen esencialistas y objetivos y otros funcionales y que derivan en subjetivos y relacionales. Sobre estas dos marcos de categorías el propósito que persigue la Tesis es dar cuenta de los dos principios que rigen lo visto en el Capítulo II, el Principio de Posición y el Principio de Transición Continua, responsables ambos, al 50%, de la monstruosidad detectada en Sheffield, que no es negativa, sino, como decía Darwin, la combinación en un solo cuerpo de conformaciones normales en animales de especies diferentes, incluso con fines estéticos. En Sheffield existe, y esta dibujada, la figura de una cabeza escultural con un doble rostro. Todo el trabajo de la Tesis se encamina, en definitiva, a explicar, con toda la claridad y extensión que me ha sido posible, en qué consiste ese doble rostro. ABSTRACT Peter and Alison Smithson’s work is, is from its start, very influenced by both Alison Margaret Gill and Peter Denham Smithson. The matter of study of this Thesis, the 1953 competition for the expansion of the University of Sheffield, estimated after its exam, which is composed by two different parts, which, together produce a strange effect as an image. Reyner Banham in 1955 described the image in his article “The New Brutalism” as the key argument (most iconic) for the Sheffield’s project. The way his image powerfully influences sensitivity, by perturbation, makes this a singular and memorable image. This feature, only present in Sheffield, over any other building of the time, even from the same architects, allow Banham to associate the project to Art Autre, thought by Michel Tapié as a new artistic movement, to which Sheffield will belong, in the architecture part. Tapié sees in the informalism of works considered Art Autre some aspects that can bring concepts he extracts from Riemann, XIX Century mathematician, father of the new geometry. This Thesis discovers Riemann’s concept of continuous variety, a set whose elements are able to go through variety by a continuous deformation, diluting themselves without touching each other. Examples of informalism would be, points of that variety, unstable forms or random detentions in the continuous transit of the same object. Therefore, the condition of memorability comes precisely from the impact that seeing bodies in state of evolution creates. That evolutive sense that can be associated to elements of a variety, comes together with a variety of states of evolution in the world of organic species. Not only as an individual, but as well as a species. Coincidence between Riemann and Darwin’s discoveries is not only formal, but as well temporary. Darwin observes that some individuals of concrete species present on their bodies some features, typical of other species, which may be interpreted as evolutive failure. But the most peculiar part of what Darwin exposes is that monstrosity can indeed be artificially made for aesthetical purposes, like it happens in certain animals and plants. Well, this is what the Thesis discovers in Sheffield’s project. The union in a single project of two different nature forms, of which none on the parts is a deformation of the other, but they are both irreducible. Once both parts are collated, a new system which adapts well is discovered. It is a system created by Leibniz in the XVII Century, created to distinguish to principles that clear the difference between the equation methods and differential calculus. This principles are the Principle of Position and the Principle of Continuity. This two principles, translated to the spatial analysis field are key for the two parts of the project. On the one hand, the part developing in a lineal axis belongs to the Principle of Position. This means that that there is a global vision of space after which it is decided which operation to follow, which in this case consists of establishing an axis between two singular positions of the university area. The part which is being deformed while it goes is studied as a continuous action of stretching an existing building, the Firth Court, in which there is no previous spatial analysis. The only way to understand and to explain this action is by the Principle of Continuity. So, all in all, the Thesis changes the view of Sheffield from an Art Autre work to a “monstrosity”, without the negative meaning of it, just as a combination of two different nature formations, which, at the same time, justifies its power as iconic image. Finally, I would like to point out that in the Sheffield’s project there is (drawn and also physically) a sculptural head which has the feature of representing both, a man and a woman’s face. All the work of this Thesis leads to explaining the double nature of the project, taking this double expression head as inspiration.

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Identifying the factors that have promoted host shifts by phytophagous insects at a macroevolutionary scale is critical to understanding the associations between plants and insects. We used molecular phylogenies of the beetle genus Blepharida and its host genus Bursera to test whether these insects have been using hosts with widely overlapping ranges over evolutionary time. We also quantified the importance of host range coincidence relative to host chemistry and host phylogenetic relatedness. Overall, the evolution of host use of these insects has not been among hosts that are geographically similar. Host chemistry is the factor that best explains their macroevolutionary patterns of host use. Interestingly, one exceptional polyphagous species has shifted among geographically close chemically dissimilar plants.