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- 2009 (45) (remove)
Schwerpunkt Angst
(2009)
Nach einem Jahrhundert ihres relativ soliden, fraglosen Bestehens sind die modernen Geisteswissenschaften seit etwa 25 Jahren einer tiefgreifenden Herausforderung ausgesetzt. Diese Herausforderung ist so epochal wie die Entstehung der Geisteswissenschaften selbst. Sie wurde und wird weiterhin weder von den exaktwissenschaftlichen Fakultäten noch von den Ökonomisierungsanfällen der Politik vorgetragen, sondern vielmehr vom Aufkommen eines ganz neuen Wissenstyps aus dem Herzen der philosophischen Fächer selbst.
Die Herausbildung und anschließende Institutionalisierung dieses neuen Wissenstyps geschah zunächst disparat und ist heute bei weitem noch nicht abgeschlossen. Aber er hat sich unter verschiedenen Bezeichnungen und in verschiedenen Verfassungen doch inzwischen nachdrücklich etabliert. Seine gewiss wirksamste Form hat dieser neue Wissenstyp und hat diese Herausforderung unter der Bezeichnung der Medien- und Kulturwissenschaft erfahren. Medien- und Kulturwissenschaft muss sich heute, anders als vor gut zwanzig Jahren, kaum mehr eigens behaupten. Die Frage ist nur noch, ob sie sich innerhalb des Kanons der Fächer der philosophischen Fakultät als ein weiteres Paradigma der Geisteswissenschaften durchsetzt oder aber außerhalb Platz findet, als Kompensationsunternehmen.
This text proposes a genealogy of biopolitics based on Michel Foucault’s thought, and on an understanding of it as a philosophico-political notion. In order to elaborate this genealogy, the text takes as its starting point not only politics but also life, as the second component of the term. The hypothesis is the following: To understand what biopolitics means, we have to take seriously Foucault’s assertion of an indetermination of life, as the correlate of power and knowledge. This notion emerges in the epistemic break that takes place around 1800 and that entails the opening up of the notion of biopolitics under the name of governmentality, implying that life is not only the object of biopolitics but also serves as its model.
Identity management provides PET (privacy enhancing technology) tools for users to control privacy of their personal data. With the support of mobile location determination techniques based on GPS, WLAN, Bluetooth, etc., context-aware and location-aware mobile applications (e.g. restaurant finder, friend finder, indoor and outdoor navigation, etc.) have gained quite big interest in the business and IT world. Considering sensitive static personal information (e.g. name, address, phone number, etc.) and also dynamic personal information (e.g. current location, velocity in car, current status, etc.), mobile identity management is required to help mobile users to safeguard their personal data. In this paper, we evaluate certain required aspects and features (e.g. context-to-context dependence and relation, blurring in levels, trust management with p3p integration, extended privacy preferences, etc.) of mobile identity management
VHB-JOURQUAL represents the official journal ranking of the German Academic Association for Business Research. Since its introduction in 2003, the ranking has become the most influential journal evaluation approach in German-speaking countries, impacting several key managerial decisions of German, Austrian, and Swiss business schools. This article reports the methodological approach of the ranking’s second edition. It also presents the main results and additional analyses on the validity of the rating and the underlying decision processes of the respondents. Selected implications for researchers and higher-education institutions are discussed.
Spatial time domain reflectometry (spatial TDR) is a new measurement method for determining water content profiles along elongated probes (transmission lines). The method is based on the inverse modeling of TDR reflectograms using an optimization algorithm. By means of using flat ribbon cables it is possible to take two independent TDRmeasurements from both ends of the probe, which are used to improve the spatial information content of the optimization results and to consider effects caused by electrical conductivity. The method has been used for monitoring water content distributions on a full-scale levee model made of well-graded clean sand. Flood simulation tests, irrigation tests, and long-term observations were carried out on the model. The results show that spatial TDR is able to determine water content distributions with an accuracy of the spatial resolution of about ±3 cm compared to pore pressure measurements and an average deviation of ±2 vol % compared to measurements made using another independent TDR measurement system.
Physicochemical forces are responsible for the swelling pressure development in saturated bentonites. In this paper, the swelling pressures of several compacted bentonite specimens for a range of dry density of 1.10–1.73 Mg/m3 were measured experimentally. The clay used was a divalent-rich Ca-Mg-bentonite with 12% exchangeable Na+ ions. The theoretical swelling pressure–dry density relationship for the bentonite was determined from the Gouy-Chapman diffuse double-layer theory. A comparison of experimental and theoretical results showed that the experimental swelling pressures are either smaller or greater than their theoretical counterparts within different dry density ranges. It is shown that for dry density of the clay less than about 1.55 Mg/m3, a possible dissociation of ions from the surface of the clay platelets contributed to the diffuse double-layer repulsion. At higher dry densities, the adsorptive forces due to surface and ion hydration dominated the swelling pressures of the clay. A comparison of the modified diffuse double-layer theory equations proposed in the literature to determine the swelling pressures of compacted bentonites and the experimental results for the clay in this study showed that the agreement between the calculated and experimental swelling pressure results is very good for dry densities less than 1.55 Mg/m3, whereas at higher dry densities the use of the equations was found to be limited.
Flow velocity is generally presumed to influence flood damage. However, this influence is hardly quantified and virtually no damage models take it into account. Therefore, the influences of flow velocity, water depth and combinations of these two impact parameters on various types of flood damage were investigated in five communities affected by the Elbe catchment flood in Germany in 2002. 2-D hydraulic models with high to medium spatial resolutions were used to calculate the impact parameters at the sites in which damage occurred. A significant influence of flow velocity on structural damage, particularly on roads, could be shown in contrast to a minor influence on monetary losses and business interruption. Forecasts of structural damage to road infrastructure should be based on flow velocity alone. The energy head is suggested as a suitable flood impact parameter for reliable forecasting of structural damage to residential buildings above a critical impact level of 2m of energy head or water depth. However, general consideration of flow velocity in flood damage modelling, particularly for estimating monetary loss, cannot be recommended.
Previous models for the explanation of settlement processes pay little attention to the interactions between settlement spreading and road networks. On the basis of a dielectric breakdown model in combination with cellular automata, we present a method to steer precisely the generation of settlement structures with regard to their global and local density as well as the size and number of forming clusters. The resulting structures depend on the logic of how the dependence of the settlements and the road network is implemented to the simulation model. After analysing the state of the art we begin with a discussion of the mutual dependence of roads and land development. Next, we elaborate a model that permits the precise control of permeability in the developing structure as well as the settlement density, using the fewest necessary control parameters. On the basis of different characteristic values, possible settlement structures are analysed and compared with each other. Finally, we reflect on the theoretical contribution of the model with regard to the context of urban dynamics.
The structure and development of cities can be seen and evaluated from different points of view. By replicating the growth or shrinkage of a city using historical maps depicting different time states, we can obtain momentary snapshots of the dynamic mechanisms of the city. An examination of how these snapshots change over the course of time and a comparison of the different static time states reveals the various interdependencies of population density, technical infrastructure and the availability of public transport facilities. Urban infrastructure and facilities are not distributed evenly across the city – rather they are subject to different patterns and speeds of spread over the course of time and follow different spatial and temporal regularities. The reasons and underlying processes that cause the transition from one state to another result from the same recurring but varyingly pronounced hidden forces and their complex interactions. Such forces encompass a variety of economic, social, cultural and ecological conditions whose respective weighting defines the development of a city in general. Urban development is, however, not solely a product of the different spatial distribution of economic, legal or social indicators but also of the distribution of infrastructure. But to what extent is the development of a city affected by the changing provision of infrastructure? As
Die Planung komplexer Bauwerke erfolgt zunehmend mit rechnergestützten Planungswerkzeugen, die den Export von Bauwerksinformationen im STEP-Format auf Grundlage der Industry Foundation Classes (IFC) ermöglichen. Durch die Verfügbarkeit dieser Schnittstelle ist es möglich, Bauwerksinformationen für eine weiterführende applikationsübergreifende Verarbeitung bereitzustellen. Ein großer Teil der bereitgestellten Informationen bezieht sich auf die geometrische Beschreibung der einzelnen Bauteile. Um den am Bauprozess Beteiligten eine optimale Auswertung und Analyse der Bauwerksinformationen zu ermöglichen, ist deren Visualisierung unumgänglich. Das IFC-Modell stellt diese Daten mit Hilfe verschiedener Geometriemodelle bereit. Der vorliegende Beitrag beschreibt die Visualisierung von IFC-Objekten mittels Java3D. Er beschränkt sich dabei auf die Darstellung von Objekten, deren Geometrie mittels Boundary Representation (Brep) oder Surface-Model-Repräsentation beschrieben wird.
Die Architekten, Künstler und Designer des Bauhauses prägten mit neuem gestalterischen Geist eine unverwechselbare Bauhaus-Handschrift. Ausgehend von Weimar schrieben sie sich damit in die Weltkulturgeschichte ein. Nachdem das Bauhaus 1933 dem Nationalsozialismus in Deutschland zum Opfer gefallen war, lebten Idee und Praxis des Bauhauses mit den emigrierenden Lehrern und Schülern im Ausland weiter. Weltweit existieren noch heute Gebäude, Produkte und Kunstwerke, die durch das Bauhaus entstanden sind, von ihm inspiriert wurden oder darauf Bezug nehmen. Mit dem Projekt ImpulsBauhaus versuchen Jens Weber und Andreas Wolter, die weltweite Verbreitung und Einflussnahme des Bauhauses anhand der Beziehungen, Bewegungen und Werke seiner Vertreter bis in die Gegenwart nachvollziehbar zu machen. Das Projekt besteht aus zwei Teilen. Die ImpulsBauhaus-Forschungsplattform ist eine Datenbank, in der Informationen über Bauhaus-Vertreter gesammelt und mithilfe von Analysetools und Visualisierungsinstrumenten ausgewertet werden können. Der zweite Teil besteht aus einer räumlichen Inszenierung der Informationsbestände – der ImpulsBauhaus-Ausstellung. Ausgangspunkt des Projekts ImpulsBauhaus war neben dem kunstwissenschaftlichen Interesse die Frage, wie mit heutigen digitalen Mitteln große Informationsmengen verwaltet, analysiert und visualisiert werden können.
Weiterführende Informationen zum Projekt finden sich auf der Website http://impuls-bauhaus.de, wo auch interessierte Wissenschaftler und Autoren Zugang zur ImpulsBauhaus-Forschungsplattform erhalten.
This term paper presents a literature review and discusses concepts of the following point: 1- Factors affecting small-strain stiffness in soil; 2- Methods to determine small-strain shear stiffness in laboratory and in-situ; 3- Brief introduction into wave propagation and 4- Bender elements technique to determine shear wave velocity in soil.
The initial shear modulus, Gmax, of soil is an important parameter for a variety of geotechnical design applications. This modulus is typically associated with shear strain levels about 5*10^-3% and below. The critical role of soil stiffness at small-strains in the design and analysis of geotechnical infrastructure is now widely accepted.
Gmax is a key parameter in small-strain dynamic analyses such as those to predict soil behavior or soil-structure interaction during earthquake, explosions, machine or traffic vibration where it is necessary to know how the shear modulus degrades from its small-strain value as the level of shear strain increases. Gmax can be equally important for small-strain cyclic situations such as those caused by wind or wave loading and for small-strain static situations as well. Gmax may also be used as an indirect indication of various soil parameters, as it, in many cases, correlates well to other soil properties such as density and sample disturbance. In recent years, a technique using bender elements was developed to investigate the small-strain shear modulus Gmax.
The objective of this thesis is to study the initial shear stiffness for various sands with different void ratios, densities, grain size distribution under dry and saturated conditions, then to compare empirical equations to predict Gmax and results from other testing devices with results of bender elements from this study.
Superimposing Dynamic Range
(2009)
Replacing a uniform illumination by a high-frequent illumination enhances the contrast of observed and captured images. We modulate spatially and temporally multiplexed (projected) light with reflective or transmissive matter to achieve high dynamic range visualizations of radiological images on printed paper or ePaper, and to boost the optical contrast of images viewed or imaged with light microscopes.
In der vorliegenden Arbeit werden auf Basis des Tensegrity-Konzeptes Strukturen entwickelt und vorgestellt, welche durch einen signifikanten Steifigkeitszuwachs in der Lage sind, die Anforderungen an die Gebrauchstauglichkeit von Tragwerken zu erfüllen.
Selbstverankerte Strukturen mit aufgelösten Druckstäben werden als Seil-Stab-Systeme bezeichnet und sind alleiniger Gegenstand aller angestellten Betrachtungen.
Tensegrity-Strukturen sollen eine Untergruppe der Seil-Stab-Systeme darstellen, deren symptomatische Eigenschaft eine sich im Tensegrity-Zustand befindliche Geometrie ist.
Einer Definition des Tensegrity-Zustandes folgt ein Überblick über die zur Untersuchung von Seil-Stab-Systemen notwendigen Berechnungsalgorithmen.
Der Kern der Arbeit beschäftigt sich zunächst mit dem Einfluss der Geometrie auf die Empfindlichkeit von Seil-Stab-Systemen gegenüber unvermeidlichen Herstellungstoleranzen sowie dem Einfluss von Topologie, Vorspannung, lokaler Steifigkeit der Elemente und Geometrie auf die Steifigkeit dieser Systeme.
Darauf aufbauend wird eine Möglichkeit gezeigt, die Steifigkeit von beweglichen Seil-
Stab-Systemen merklich zu erhöhen, ohne die Strukturen durch zusätzliche Elemente oder Verbindungen optisch zu verändern.
Der zu erzielende Steifigkeitszuwachs wird mittels Vergleichrechnungen und durchgeführten Belastungsversuchen verifiziert.
In a historical perspective, the relationship between digital media and the museum environment is marked by the role of museums as example use cases for the appli- cation of digital media. Today, this exceptional use as an often technology oriented application has changed and instead digital media have turned into an integral part of mediation strategies in the museum environment. Alongside with this shift not only an increasing professionalization of application development but also a grow- ing demand for new content can be observed. Comparable to its role as the main cost factor in the media industry, the production of content rises to a challenge for museums. In particular small and medium scale european museums with limited funding and an often low level of staff coverage face this new demand and strive therefore for alternative production resources. While productive user contributions can be seen as such an alternative resource, user contributions are at the same time a manifestation for a different mode of in- teracting with content. In contrast to the dominantly passive role of audiences as re- ceivers of information, productive contributions emerge as a mode of content ex- ploration and become in this regard influential for museum mediation strategies. As applications of user contributions in museums and cultural heritage are currently rather seldom, a broader perspective towards user contributions becomes necessary to understand its specific challenges, opportunities and limitations. Productive user contributions can be found in a growing number of applications on the Internet where they either complement or fully substitute corporate content production processes. While the Wikipedia1, an online encyclopedia written entirely by a group of users and open to contributions by all its users, is one of the most prominent examples for this practice, several more applications emerged or are be- ing developed. In consequence user contributions are about to become a powerful source for the production of content in digital media environments.
The present study analysis the environmental benefits of urban vegetation within the municipal boundary of a megacity through multi scale integrated modelling to estimate its benefits approximately. The advantages (and challenges) that Nature, inserted into cities, offers to the population are observed from different viewpoints. As geographical reference the profile of megacities located in low (tropical) latitudes was observed, in a case study on the city of São Paulo/ Brazil. Commonly, urban vegetation is overlooked by local people, governments and economical structures. Although sparse vegetation exists, it is hardly recognized. Along the brief history of rapid urbanization which is accompanied by massive environmental degradation, urban green becomes, in the dispute for space, a true luxury in cities like São Paulo. Not as retrogression but as advance, it demonstrates that the integration between nature and city would be desirable. The approximated quantification of the variations which occur between actual scenario and greened scenarios shows the need to rethink the urban biome as a man-dominated ecosystem. The benefits of the urban vegetation are diverse. This work details plants as agents of climatic and ecosystem balance and performance. It also approaches current issues like climate change, energy efficiency and thermal comfort, as well as the purification of natural resources, through the treatment of water, soil and air. Especially because at present no efficient technical solutions exist, that could substitute the environmental services of the vegetation. These benefits contribute to quality of life and increase socio-environmental equity especially important in high-contrast megacities. The vegetation assumes two important roles in cities. The functional dimension brings concrete and measurable benefits to the environment. From a symbolic vision, vegetation represents Nature in cities, approximating humans to their origins. Conclusively the study defends the importance of the valorization of Nature and of the united efforts for literally green cities because it proves that financial investment in urban vegetation has direct effects on the costs destined to the areas of health and infrastructure. The City of São Paulo, invested in 2008 about US$ 180 million (one hundred and eighty million dollars) in urban green (and environment) which tends to save US$ 980 million (nine hundred and eighty million dollars) of expenses annually. In other words, for each US$ 1 invested in planting and maintenance of urban green, the society saves at least US$ 5 of expenses in health, construction of French drains, energy etc.
Wayfinding Situations
(2009)
Wayfinding, which is the task of getting from some origin to a destination, is one of the primary spatial problems humans encounter in everyday life. When we wayfind, we act in the environment based on the structure and features of the environment, set against a background of knowledge which is generally understood as having visual characteristics. As mobile and wireless technologies proliferate in urban space it can be considered as having an existence in terms of several spaces, those of places that make up our direct perceptual experience and those of the digital devices and networks that facilitate communication, which are primarily non-visual in nature. This thesis will extend existing work on perception and action in urban space to investigate the role of mobile and ubiquitous technologies in wayfinding and environmental legibility, or more literally how we orientate and find our way in space when we experience it both with and through technology. In order to do this, the research takes the approach of considering wayfinding as a situated activity that takes place against a rich and articulated background of experiences and social connections. Through a series of empirical studies the concept of wayfinding situations is explored from two different perspectives. The first study investigates the relationship between an individual and technology as they act in environmental settings, by comparing learning for a spatial task depending on whether the individual accesses a map or a mobile map to make judgements. The second study seeks to understand the relationship between individual and environment as they act in technological settings, and focuses on the perception and action in space as affected by wireless technologies. The combined outcome of these two empirical studies provides the basis for the definition of a richer and more differentiated concept of wayfinding situations. This informs the final stage of the research in which an applied response is proposed to supporting wayfinding in a specific urban scenario, where the aim is to embed the technology into the spatial setting.
Container sind nicht nur das bei weitem wichtigste Transportmittel für die allermeisten Waren, mit denen wir tagtäglich zu tun haben. Container sind, vielleicht wegen ihrer schlichten, klaren Ausdruckskraft, zu dem Symbol der Globalisierung geworden und vieler Phänomene, die man mit dieser Entwicklung in Zusammenhang bringt. Dabei handelt es sich um ein durch und durch ambivalentes Symbol. Container stehen genauso für die beeindruckende Dynamik des modernen Kapitalismus und den ihm trotz aller Krisen zugrunde liegenden Optimismus wie für die Ängste und Einwände dagegen; gegen die Indifferenz eines rein auf Optimierung ausgelegten logistischen Organisationshandelns und gegen die zwangsweise Annäherung und Angleichung ehedem entfernter Weltgegenden durch die exponentielle Vermehrung der Transport- und Kommunikationsvorgänge. Der Schwerpunkt der Arbeit liegt im 20. Jahrhundert. Sie untersucht die (Vor)Geschichte und Theorie des Containers als moderner Kulturtechnik und zentralem Bestandteil eines weltumspannenden logistischen Systems. Und sie zeigt ihn als Element eines Denkens und Organisationshandelns in modularen, beweglichen Raumeinheiten, das sich auch auf viele andere Bereiche außerhalb des Warentransports übertragen lässt. Dafür beschreibt und analysiert sie "Containersituationen" in so unterschiedlichen Feldern wie Handel und Transport, Architektur, Wissenschaften, Kunst und den sozialen Realitäten von Migranten und Seeleuten.