971 resultados para Munich. Bayerische staatsbibliotek.


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Eye-safety requirements in important applications like LIDAR or Free Space Optical Communications make specifically interesting the generation of high power, short optical pulses at 1.5 um. Moreover, high repetition rates allow reducing the error and/or the measurement time in applications involving pulsed time-of-flight measurements, as range finders, 3D scanners or traffic velocity controls. The Master Oscillator Power Amplifier (MOPA) architecture is an interesting source for these applications since large changes in output power can be obtained at GHz rates with a relatively small modulation of the current in the Master Oscillator (MO). We have recently demonstrated short optical pulses (100 ps) with high peak power (2.7 W) by gain switching the MO of a monolithically integrated 1.5 um MOPA. Although in an integrated MOPA the laser and the amplifier are ideally independent devices, compound cavity effects due to the residual reflectance at the different interfaces are often observed, leading to modal instabilities such as self-pulsations.

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It is known that a green wall brings some advantages to a building. It constitutes a barrier against solar radiation, thus decreasing and delaying the incoming heat flux. The aim of this study is to quantify such advantages through analytical comparison between two facades, a vegetal facade and a conventional facade. Both were highly insulated (U-value = 0.3 W/m2K) and installed facing south on the same building in the central territory of Spain. In order to compare their thermal trend, a series of sensors were used to register superficial and indoor air temperature. The work was carried out between 17th August 2012 and 1st October 2012, with a temperature range of 12°C-36°C and a maximum horizontal radiation of 1020 W/m2. Results show that the indoor temperature of the green wall module was lower than the other. Besides, comparing superficial outdoor and indoor temperatures of the two walls to outdoor air temperatures, it was noticed that, due to the shading plants, the green wall superficial temperature was 5 °C lower on the facade, while the bare wall temperature was 15 °C higher. The living wall module temperature was 1.6 °C lower than the outdoor, while the values of the conventional one were similar to the outdoor air temperature.

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New concepts in air navigation have been introduced recently. Among others, are the concepts of trajectory optimization, 4D trajectories, RBT (Reference Business Trajectory), TBO (trajectory based operations), CDA (Continuous Descent Approach) and ACDA (Advanced CDA), conflict resolution, arrival time (AMAN), introduction of new aircraft (UAVs, UASs) in air space, etc. Although some of these concepts are new, the future Air Traffic Management will maintain the four ATM key performance areas such as Safety, Capacity, Efficiency, and Environmental impact. So much, the performance of the ATM system is directly related to the accuracy with which the future evolution of the traffic can be predicted. In this sense, future air traffic management will require a variety of support tools to provide suitable help to users and engineers involved in the air space management. Most of these tools are based on an appropriate trajectory prediction module as main component. Therefore, the purposes of these tools are related with testing and evaluation of any air navigation concept before they become fully operative. The aim of this paper is to provide an overview to the design of a software tool useful to estimate aircraft trajectories adapted to air navigation concepts. Other usage of the tool, like controller design, vertical navigation assessment, procedures validation and hardware and software in the loop are available in the software tool. The paper will show the process followed to design the tool, the software modules needed to perform accurately and the process followed to validate the output data.

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Crystallization and grain growth technique of thin film silicon are among the most promising methods for improving efficiency and lowering cost of solar cells. A major advantage of laser crystallization and annealing over conventional heating methods is its ability to limit rapid heating and cooling to thin surface layers. Laser energy is used to heat the amorphous silicon thin film, melting it and changing the microstructure to polycrystalline silicon (poly-Si) as it cools. Depending on the laser density, the vaporization temperature can be reached at the center of the irradiated area. In these cases ablation effects are expected and the annealing process becomes ineffective. The heating process in the a-Si thin film is governed by the general heat transfer equation. The two dimensional non-linear heat transfer equation with a moving heat source is solve numerically using the finite element method (FEM), particularly COMSOL Multiphysics. The numerical model help to establish the density and the process speed range needed to assure the melting and crystallization without damage or ablation of the silicon surface. The samples of a-Si obtained by physical vapour deposition were irradiated with a cw-green laser source (Millennia Prime from Newport-Spectra) that delivers up to 15 W of average power. The morphology of the irradiated area was characterized by confocal laser scanning microscopy (Leica DCM3D) and Scanning Electron Microscopy (SEM Hitachi 3000N). The structural properties were studied by micro-Raman spectroscopy (Renishaw, inVia Raman microscope).

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In prokaryotes, nickel is an essential element participating in the structure of enzymes involved in multiple cellular processes. Nickel transport is a challenge for microorganisms since, although essential, high levels of this metal inside the cell are toxic. For this reason, bacteria have developed high-affinity nickel transporters as well as nickel-specific detoxification systems. Ultramafic soils, and soils contaminated with heavy metals are excellent sources of nickel resistant bacteria. Molecular analysis of strains isolated in the habitats has revealed novel genetic systems involved in adaptation to such hostile conditions.

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Building-integrated Photovoltaics (BIPV) is one of the most promising technologies enabling buildings to generate on-site part of their electricity needs while performing architectural functionalities. A clear example of BIPV products consists of semi-transparent photovoltaic modules (STPV), designed to replace the conventional glazing solutions in building façades. Accordingly, the active building envelope is required to perform multiple requirements such as provide solar shading to avoid overheating, supply solar gains and thermal insulation to reduce heat loads and improve daylight utilization. To date, various studies into STPV systems have focused on their energy performance based on existing simulation programs, or on the modelling, normally validated by limited experimental data, of the STPV modules thermal behaviour. Taking into account that very limited experimental research has been conducted on the energy performance of STPV elements and that the characterization in real operation conditions is necessary to promote an energetically efficient integration of this technology in the building envelope, an outdoor testing facility has been designed, developed and built at the Solar Energy Institute of the Technical University of Madrid. In this work, the methodology used in the definition of the testing facility, its capability and limitations are presented and discussed.

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In this paper we report some of the experimental results that can be obtained in the field of hybrid optical bistable devices when liquid crystals are employed as non linear materials. The advantages with respect to other materials are the very low voltages and power needed, compatibles with I.C.'s levels.

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Cyber-Physical Systems need to handle increasingly complex tasks, which additionally, may have variable operating conditions over time. Therefore, dynamic resource management to adapt the system to different needs is required. In this paper, a new bus-based architecture, called ARTICo3, which by means of Dynamic Partial Reconfiguration, allows the replication of hardware tasks to support module redundancy, multi-thread operation or dual-rail solutions for enhanced side-channel attack protection is presented. A configuration-aware data transaction unit permits data dispatching to more than one module in parallel, or provide coalesced data dispatching among different units to maximize the advantages of burst transactions. The selection of a given configuration is application independent but context-aware, which may be achieved by the combination of a multi-thread model similar to the CUDA kernel model specification, combined with a dynamic thread/task/kernel scheduler. A multi-kernel application for face recognition is used as an application example to show one scenario of the ARTICo3 architecture.

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El trabajo se ha centrado en la reconstrucción arquitectónica de Munich tras la Segunda Guerra Mundial, para estudiar la aceptación o no del pasado mediante una clasificación de varios ejemplos. Las ruinas de muchos lugares fueron debate fundamental en la reconstrucción, apareciendo distintas y contrarias soluciones. Este debate enfrentó a dos movimientos; la corriente tradicionalista y la modernista. La primera evidenció su rechazo absoluto hacia los acontecimientos recién sucedidos. Arquitectos como Karl Meitinger quisieron borrar el pasado, empleando la recuperación integral de la arquitectura en su estado anterior, sin continuidad temporal en la historia del edificio. La segunda, promovida por arquitectos de la Technische Universität München (TUM) como Hans Döllgast, buscó la lectura completa del edificio, atendiendo a sus diferentes etapas cronológicas, relatando distintos capítulos de la historia y permitiendo que el objeto de trabajo transmita por sí solo el recuerdo, respetando siempre los patrones compositivos del edificio original. Se produjo, por tanto, un borrado de huellas históricas en la recreación de muchos espacios destruidos, pero hubo otros cuyo objetivo fue dar a conocer la historia, aceptando las circunstancias del pasado, recuperándolo en la lectura de una fachada o en los paseos de los espacios públicos, haciendo que la ciudad de Munich se convirtiera en un buen ejemplo de reconstrucción arquitectónica que ha tenido en cuenta el recuerdo, defendiendo que el pasado traído al presente de la obra arquitectónica genera emoción en el espectador

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Rhizobium leguminosarum bv.viciae is able to establish nitrogen-fixing symbioses with legumes of the genera Pisum, Lens, Lathyrus and Vicia. Classic studies using trap plants (Laguerre et al., Young et al.) provided evidence that different plant hosts are able to select different rhizobial genotypes among those available in a given soil. However, these studies were necessarily limited by the paucity of relevant biodiversity markers. We have now reappraised this problem with the help of genomic tools. A well-characterized agricultural soil (INRA Bretennieres) was used as source of rhizobia. Plants of Pisum sativum, Lens culinaris, Vicia sativa and V. faba were used as traps. Isolates from 100 nodules were pooled, and DNA from each pool was sequenced (BGI-Hong Kong; Illumina Hiseq 2000, 500 bp PE libraries, 100 bp reads, 12 Mreads). Reads were quality filtered (FastQC, Trimmomatic), mapped against reference R. leguminosarum genomes (Bowtie2, Samtools), and visualized (IGV). An important fraction of the filtered reads were not recruited by reference genomes, suggesting that plant isolates contain genes that are not present in the reference genomes. For this study, we focused on three conserved genomic regions: 16S-23S rDNA, atpD and nodDABC, and a Single Nucleotide Polymorphism (SNP) analysis was carried out with meta / multigenomes from each plant. Although the level of polymorphism varied (lowest in the rRNA region), polymorphic sites could be identified that define the specific soil population vs. reference genomes. More importantly, a plant-specific SNP distribution was observed. This could be confirmed with many other regions extracted from the reference genomes (data not shown). Our results confirm at the genomic level previous observations regarding plant selection of specific genotypes. We expect that further, ongoing comparative studies on differential meta / multigenomic sequences will identify specific gene components of the plant-selected genotypes

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A comienzos de diciembre de 1996, Javier León, uno de los autores, impartió una conferencia en esta Escuela ante una inesperadamente grande e interesada audiencia de profesores y alumnos de todos los cursos. El tema central de aquella intervención era La construcción de un puente en el siglo XVIII, basado en el trabajo de J.R. Perronet, fundador de la Ecole des Ponts et Chaussées de Paris, precedente inmediato de nuestra Escuela de Caminos y Canales que fundara Agustín de Bediencourt en 1802. Los asistentes manifestaron un gran interés, que comparto, por las cuestiones históricas relacionadas con nuestra profesión, que comprende no sólo puentes, sino puertos, faros, canales y edificios como catedrales o torres. Su estudio debe contemplarse desde ángulos complementarios, es decir, técnicos, académicos y humanísticos, en la medida en que la obligación de mantener las joyas estructurales del pasado enseña mucho acerca del comportamiento de las de hoy. No podrían concebirse las grandes estructuras de estadios y palacios de congresos si no hubieran existido los teatros romanos o las catedrales medievales, ni se entenderían las estructuras metálicas de los siglos XIX y XX sin los precedentes de las estructuras de madera de la antigüedad. Su análisis en profundidad requiere la puesta al día de las técnicas de nuestros antepasados, que debemos conocer, como recuerda este libro que me honro en prologar. Esto comporta compilar, enseñar y practicar. Qué duda cabe que facilita enormemente las cosas (incluso las condiciona) el hecho de poseer una formación humanística que permita entender el momento histórico en que se ejecutaron tales estructuras. Ni siquiera estas cuestiones se circunscriben al ámbito local (regional o español), trascienden a nuestra vieja Europa en un sentimiento compartido de interés y de necesidad. En particular, es reseñable el enorme impulso que han dado algunas escuelas alemanas (Karlsruhe, Stuttgart, Munich, Aquisgrán, Dresde). Desde una sólida formación estructural y humanista, han conseguido estos equipos multidisciplinares poner a punto un conjunto de técnicas analíticas y constructivas que se han traducido en destacables ejemplos conocidos, como, por ejemplo, la reconstrucción y mantenimiento de edificios y estructuras tras la II Guerra Mundial. El conocimiento de los muchos textos disponibles, escritos mayoritariamente en alemán, no puede ser ignorado por los técnicos y, especialmente, por los alumnos de nuestras escuelas, cada vez más ávidos de intercambio con el exterior y, por fin, con mejor nivel de idiomas que la generación que les precede. (Merece una mención muy especial el creciente número de alumnos que, año tras año, eligen la asignatura de Alemán como idioma complementario. También crece el número de alumnos alemanes que, en virtud del programa Erasmus de intercambio, cursan sus últimos años de estudios en nuestra Escuela, con cuyo alto nivel de formación quedan satisfechos.) Por todas esas razones, contemplé con simpatía y creciente entusiasmo la iniciativa de los autores, quienes, sobre un texto en sí mismo interesante, han conseguido articular una sugerente propuesta de estudio ?tanto para el alumno como para el profesional en ejercicio? con un contenido humanista en el que idioma y lenguaje son, además, un hermoso componente práctico. Quisiera finalmente señalar que este libro es el primero de una colección que los autores están invitados a ir desarrollando, y ojala este ejemplo cunda y se siga ?entre profesores y alumnos? en otros campos. Nuestra Escuela, que posee unos fondos bibliográficos de enorme valor, verá encantada cómo éstos se difunden y cómo se configura una disciplina que la praxis, la profesión, exige ya en toda Europa.

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jahrg. 17, bd. 65 (1896)

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jahrg. 40, bd. 142 (1919)

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jahrg. 2, bd. 7 (1881)