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We are living in a connected world, surrounded by interwoven technical systems. Since they pervade more and more aspects of our everyday lives, a thorough understanding of the structure and dynamics of these systems is becoming increasingly important. However - rather than being blueprinted and constructed at the drawing board - many technical infrastructures like for example the Internet's global router network, the World Wide Web, large scale Peer-to-Peer systems or the power grid - evolve in a distributed fashion, beyond the control of a central instance and influenced by various surrounding conditions and interdependencies. Hence, due to this increase in complexity, making statements about the structure and behavior of tomorrow's networked systems is becoming increasingly complicated. A number of failures has shown that complex structures can emerge unintentionally that resemble those which can be observed in biological, physical and social systems. In this dissertation, we investigate how such complex phenomena can be controlled and actively used. For this, we review methodologies stemming from the field of random and complex networks, which are being used for the study of natural, social and technical systems, thus delivering insights into their structure and dynamics. A particularly interesting finding is the fact that the efficiency, dependability and adaptivity of natural systems can be related to rather simple local interactions between a large number of elements. We review a number of interesting findings about the formation of complex structures and collective dynamics and investigate how these are applicable in the design and operation of large scale networked computing systems. A particular focus of this dissertation are applications of principles and methods stemming from the study of complex networks in distributed computing systems that are based on overlay networks. Here we argue how the fact that the (virtual) connectivity in such systems is alterable and widely independent from physical limitations facilitates a design that is based on analogies between complex network structures and phenomena studied in statistical physics. Based on results about the properties of scale-free networks, we present a simple membership protocol by which scale-free overlay networks with adjustable degree distribution exponent can be created in a distributed fashion. With this protocol we further exemplify how phase transition phenomena - as occurring frequently in the domain of statistical physics - can actively be used to quickly adapt macroscopic statistical network parameters which are known to massively influence the stability and performance of networked systems. In the case considered in this dissertation, the adaptation of the degree distribution exponent of a random, scale-free overlay allows - within critical regions - a change of relevant structural and dynamical properties. As such, the proposed scheme allows to make sound statements about the relation between the local behavior of individual nodes and large scale properties of the resulting complex network structures. For systems in which the degree distribution exponent cannot easily be derived for example from local protocol parameters, we further present a distributed, probabilistic mechanism which can be used to monitor a network's degree distribution exponent and thus to reason about important structural qualities. Finally, the dissertation shifts its focus towards the study of complex, non-linear dynamics in networked systems. We consider a message-based protocol which - based on the Kuramoto model for coupled oscillators - achieves a stable, global synchronization of periodic heartbeat events. The protocol's performance and stability is evaluated in different network topologies. We further argue that - based on existing findings about the interrelation between spectral network properties and the dynamics of coupled oscillators - the proposed protocol allows to monitor structural properties of networked computing systems. An important aspect of this dissertation is its interdisciplinary approach towards a sensible and constructive handling of complex structures and collective dynamics in networked systems. The associated investigation of distributed systems from the perspective of non-linear dynamics and statistical physics highlights interesting parallels both to biological and physical systems. This foreshadows systems whose structures and dynamics can be analyzed and understood in the conceptual frameworks of statistical physics and complex systems.
Aggression is one of the most researched topics in psychology. This is understandable, since aggression behavior does a lot of harm to individuals and groups. A lot is known already about the biology of aggression, but one system that seems to be of vital importance in animals has largely been overlooked: the hypothalamic-pituitary-adrenal (HPA) axis. Menno Kruk and Jószef Haller and their research teams developed rodent models of adaptive, normal, and abnormal aggressive behavior. They found the acute HPA axis (re)activity, but also chronic basal levels to be causally relevant in the elicitation and escalation of aggressive behavior. As a mediating variable, changes in the processing of relevant social information is proposed, although this could not be tested in animals. In humans, not a lot of research has been done, but there is evidence for both the association between acute and basal cortisol levels in (abnormal) aggression. However, not many of these studies have been experimental of nature. rnrnOur aim was to add to the understanding of both basal chronic levels of HPA axis activity, as well as acute levels in the formation of aggressive behavior. Therefore, we did two experiments, both with healthy student samples. In both studies we induced aggression with a well validated paradigm from social psychology: the Taylor Aggression Paradigm. Half of the subjects, however, only went through a non-provoking control condition. We measured trait basal levels of HPA axis activity on three days prior. We took several cortisol samples before, during, and after the task. After the induction of aggression, we measured the behavioral and electrophysiological brain response to relevant social stimuli, i.e., emotional facial expressions embedded in an emotional Stroop task. In the second study, we pharmacologically manipulated cortisol levels 60min before the beginning of the experiment. To do that, half of the subjects were administered 20mg of hydrocortisone, which elevates circulating cortisol levels (cortisol group), the other half was administered a placebo (placebo group). Results showed that acute HPA axis activity is indeed relevant for aggressive behavior. We found in Study 1 a difference in cortisol levels after the aggression induction in the provoked group compared to the non-provoked group (i.e., a heightened reactivity of the HPA axis). However, this could not be replicated in Study 2. Furthermore, the pharmacological elevation of cortisol levels led to an increase in aggressive behavior in women compared to the placebo group. There were no effects in men, so that while men were significantly more aggressive than women in the placebo group, they were equally aggressive in the cortisol group. Furthermore, there was an interaction of cortisol treatment with block of the Taylor Aggression Paradigm, in that the cortisol group was significantly more aggressive in the third block of the task. Concerning basal HPA axis activity, we found an effect on aggressive behavior in both studies, albeit more consistently in women and in the provoked and non-provoked groups. However, the effect was not apparent in the cortisol group. After the aggressive encounter, information processing patterns were changed in the provoked compared to the non-provoked group for all facial expressions, especially anger. These results indicate that the HPA axis plays an important role in the formation of aggressive behavior in humans, as well. Importantly, different changes within the system, be it basal or acute, are associated with the same outcome in this task. More studies are needed, however, to better understand the role that each plays in different kinds of aggressive behavior, and the role information processing plays as a possible mediating variable. This extensive knowledge is necessary for better behavioral interventions.
Recently, optimization has become an integral part of the aerodynamic design process chain. However, because of uncertainties with respect to the flight conditions and geometrical uncertainties, a design optimized by a traditional design optimization method seeking only optimality may not achieve its expected performance. Robust optimization deals with optimal designs, which are robust with respect to small (or even large) perturbations of the optimization setpoint conditions. The resulting optimization tasks become much more complex than the usual single setpoint case, so that efficient and fast algorithms need to be developed in order to identify, quantize and include the uncertainties in the overall optimization procedure. In this thesis, a novel approach towards stochastic distributed aleatory uncertainties for the specific application of optimal aerodynamic design under uncertainties is presented. In order to include the uncertainties in the optimization, robust formulations of the general aerodynamic design optimization problem based on probabilistic models of the uncertainties are discussed. Three classes of formulations, the worst-case, the chance-constrained and the semi-infinite formulation, of the aerodynamic shape optimization problem are identified. Since the worst-case formulation may lead to overly conservative designs, the focus of this thesis is on the chance-constrained and semi-infinite formulation. A key issue is then to propagate the input uncertainties through the systems to obtain statistics of quantities of interest, which are used as a measure of robustness in both robust counterparts of the deterministic optimization problem. Due to the highly nonlinear underlying design problem, uncertainty quantification methods are used in order to approximate and consequently simplify the problem to a solvable optimization task. Computationally demanding evaluations of high dimensional integrals resulting from the direct approximation of statistics as well as from uncertainty quantification approximations arise. To overcome the curse of dimensionality, sparse grid methods in combination with adaptive refinement strategies are applied. The reduction of the number of discretization points is an important issue in the context of robust design, since the computational effort of the numerical quadrature comes up in every iteration of the optimization algorithm. In order to efficiently solve the resulting optimization problems, algorithmic approaches based on multiple-setpoint ideas in combination with one-shot methods are presented. A parallelization approach is provided to overcome the amount of additional computational effort involved by multiple-setpoint optimization problems. Finally, the developed methods are applied to 2D and 3D Euler and Navier-Stokes test cases verifying their industrial usability and reliability. Numerical results of robust aerodynamic shape optimization under uncertain flight conditions as well as geometrical uncertainties are presented. Further, uncertainty quantification methods are used to investigate the influence of geometrical uncertainties on quantities of interest in a 3D test case. The results demonstrate the significant effect of uncertainties in the context of aerodynamic design and thus the need for robust design to ensure a good performance in real life conditions. The thesis proposes a general framework for robust aerodynamic design attacking the additional computational complexity of the treatment of uncertainties, thus making robust design in this sense possible.
Einen literarischen Text entlang eines figürlichen Körperleibs zu lesen und zu deuten, lenkt die Lektüre zwangsläufig auf unwiderrufliche und unabänderliche Grunddispositionen des menschlichen Daseins wie Sterblichkeit, Verletzlichkeit, Verwundbarkeit, Bedürftigkeit und wechselseitige Angewiesenheit. Eine der korporalen Entsprechungen für die eigene Bedürftigkeit äußert sich in den Stücken der deutschsprachgigen Gegenwartsdramatik häufig als Suche nach oder Bitte um Beistand. Die eigene Schwäche bedarf der fremden Kraft, um aufgefangen zu werden. In der Korrespondenzfigur des fallenden und haltenden Körpers wird das Phänomen der Fürsorge entfaltet. Die Verweigerung von Fürsorge wird in der Zweifachfigur eines abwehrenden und eines zurückgewiesenen Körpers zugespitzt. Mit der leiblichen Präsenz der Figuren wird ein solidarisches Potenzial angeboten. Die Rücknahme des eigenen Körperleibs aus dem Blickfeld des Anderen suspendiert jedoch die Möglichkeit, dass die potenziell vorhandene Solidaritätsfähigkeit tatsächlich in Anspruch genommen werden kann. Im Rückzug der Figuren deutet sich meist die Entscheidung an, den eigenen Körperleib nicht als möglichen Halt oder Anhaltspunkt für den Anderen zu erkennen zu geben.
Diese Arbeit beschäftigt sich mit (frequent) universellen Funktionen bezüglich Differentialoperatoren und gewichteten Shiftoperatoren. Hierbei wird ein Charakteristikum von Funktionen vom Exponentialtyp untersucht, das bisher im Rahmen der Universalität noch nicht betrachtet wurde: Das konjugierte Indikatordiagramm. Dabei handelt es sich um eine kompakte und konvexe Menge, die einer Funktion vom Exponentialtyp zugeordnet ist und gewisse Rückschlüsse über das Wachstum und die mögliche Nullstellenverteilung zulässt. Mittels einer speziellen Transformation werden (frequent) universelle Funktionen vom Exponentialtyp bezüglich verschiedener Differentialoperatoren ineinander überführt. Hierdurch ist eine genaue Lokalisation der konjugierten Indikatordiagramme möglicher (frequent) universeller Funktionen für diese Operatoren ableitbar. Durch Konjugation der Differentiation mit gewichteten Shiftoperatoren über das Hadamardprodukt, wird auch für diese Operatoren eine Lokalisation möglicher konjugierter Indikatordiagramme ihrer (frequent) universellen Funktionen erreicht.
Large scale non-parametric applied shape optimization for computational fluid dynamics is considered. Treating a shape optimization problem as a standard optimal control problem by means of a parameterization, the Lagrangian usually requires knowledge of the partial derivative of the shape parameterization and deformation chain with respect to input parameters. For a variety of reasons, this mesh sensitivity Jacobian is usually quite problematic. For a sufficiently smooth boundary, the Hadamard theorem provides a gradient expression that exists on the surface alone, completely bypassing the mesh sensitivity Jacobian. Building upon this, the gradient computation becomes independent of the number of design parameters and all surface mesh nodes are used as design unknown in this work, effectively allowing a free morphing of shapes during optimization. Contrary to a parameterized shape optimization problem, where a smooth surface is usually created independently of the input parameters by construction, regularity is not preserved automatically in the non-parametric case. As part of this work, the shape Hessian is used in an approximative Newton method, also known as Sobolev method or gradient smoothing, to ensure a certain regularity of the updates, and thus a smooth shape is preserved while at the same time the one-shot optimization method is also accelerated considerably. For PDE constrained shape optimization, the Hessian usually is a pseudo-differential operator. Fourier analysis is used to identify the operator symbol both analytically and discretely. Preconditioning the one-shot optimization by an appropriate Hessian symbol is shown to greatly accelerate the optimization. As the correct discretization of the Hadamard form usually requires evaluating certain surface quantities such as tangential divergence and curvature, special attention is also given to discrete differential geometry on triangulated surfaces for evaluating shape gradients and Hessians. The Hadamard formula and Hessian approximations are applied to a variety of flow situations. In addition to shape optimization of internal and external flows, major focus lies on aerodynamic design such as optimizing two dimensional airfoils and three dimensional wings. Shock waves form when the local speed of sound is reached, and the gradient must be evaluated correctly at discontinuous states. To ensure proper shock resolution, an adaptive multi-level optimization of the Onera M6 wing is conducted using more than 36, 000 shape unknowns on a standard office workstation, demonstrating the applicability of the shape-one-shot method to industry size problems.
Im Fokus dieser Untersuchung steht die Evaluation allgemeinpsychiatrischer tagesklinischer Behandlung, einerseits zur Überprüfung der Wirksamkeit der teilstationären Intervention bzgl. der Symptomatik, andererseits unter der speziellen Berücksichtigung von generalisierten Vertrauensaspekten (Vertrauenstrias) auf dem theoretischen Hintergrund des Handlungstheoretischen Partialmodells der Persönlichkeit (Krampen, 1987) und ihren Zusammenhängen zu psychischen Erkrankungen. Dem wurde in einer Fragebogenstudie mit 200 tagesklinischen Patienten im Alter von 16 bis 80 Jahren, die im Zeitraum von Oktober 2002 bis Februar 2004 in einer südwestdeutschen Kleinstadt teilstationär aufgenommen worden waren, nachgegangen. Die Patienten unterscheiden sich sowohl in den soziodemographischen Variablen als auch in Diagnosen und Behandlungszeiträumen. Wie in den Hypothesen angenommen, kann in dieser Studie gezeigt werden, dass die teilstationäre Behandlung eine deutliche Verringerung der psychischen Belastung mit sich bringt und Vertrauen " mit Ausnahme von interpersonalem " gesteigert wird. Weiterhin wurden negative Zusammenhänge zwischen Vertrauen und psychischer Krankheit/Gesundheit und Unterschiede bezüglich einzelner Störungsbilder angenommen. Die einzelnen Hypothesen hierzu werden ebenfalls durch diese Studie größtenteils bestätigt.
Im Rahmen der vorliegenden Dissertation wurden aus den umfassenden Daten der Umweltprobenbank des Bundes relative Vergleichsstandards abgeleitet, welche als Referenzsystem die allgemeine Belastungssituation und deren zeitliche Entwicklung in der Bundesrepublik widerspiegeln, eine Bewertung von gemessenen Schadstoffkonzentrationen in biologischen Matrizes sowie biometrischer Parameter der eingesetzten Bioindikatoren ermöglichen. Anhand der biometrischen Daten des Brassen und der rückstandsanalytischen Daten der Brassenmuskulatur wurde dieses Referenzsystem für die limnischen Systeme in der Bundesrepublik konzeptioniert und umgesetzt. Es handelt sich um ein Fünf-Klassen-System, bei dem die fünf Referenzbereiche durch vier Referenzwerte voneinander abgegrenzt werden. Die Referenzwerte sind aufgrund der repräsentativen Datenbasis in der Lage, die allgemeine Belastungssituation in der Bundesrepublik abzubilden. Da sie sich nur auf einen zweijährigen Bezugszeitraum beziehen und ständig fortgeschrieben werden, kann die zeitliche Entwicklung der allgemeinen Belastungssituation hervorragend dargestellt werden. Aufgrund ihrer rein naturwissenschaftlichen Basis sind Referenzwerte als Umweltqualitätskriterien zu verstehen. Mit den rückstandsanalytischen Umweltqualitätkriterien kann der stoffbezogene Gewässerzustand anhand von Bioindikatoren qualitativ bewertet werden, was eine deutliche Optimierung im stoffbezogenen Gewässerschutz darstellt. Zudem können die Referenzwerte als eine Basis für die Ableitung von hoheitlichen Umweltqualitätsstandards in Rechtsnormen herangezogen werden. Ergänzt werden die stoffbezogenen Umweltqualitätskriterien durch biometrischen Kenngrößen, die eine qualitative Bewertung der Lebensbedingungen des Bioindikators Brassen erlauben.
This work addresses the algorithmic tractability of hard combinatorial problems. Basically, we are considering \NP-hard problems. For those problems we can not find a polynomial time algorithm. Several algorithmic approaches already exist which deal with this dilemma. Among them we find (randomized) approximation algorithms and heuristics. Even though in practice they often work in reasonable time they usually do not return an optimal solution. If we constrain optimality then there are only two methods which suffice for this purpose: exponential time algorithms and parameterized algorithms. In the first approach we seek to design algorithms consuming exponentially many steps who are more clever than some trivial algorithm (who simply enumerates all solution candidates). Typically, the naive enumerative approach yields an algorithm with run time $\Oh^*(2^n)$. So, the general task is to construct algorithms obeying a run time of the form $\Oh^*(c^n)$ where $c<2$. The second approach considers an additional parameter $k$ besides the input size $n$. This parameter should provide more information about the problem and cover a typical characteristic. The standard parameterization is to see $k$ as an upper (lower, resp.) bound on the solution size in case of a minimization (maximization, resp.) problem. Then a parameterized algorithm should solve the problem in time $f(k)\cdot n^\beta$ where $\beta$ is a constant and $f$ is independent of $n$. In principle this method aims to restrict the combinatorial difficulty of the problem to the parameter $k$ (if possible). The basic hypothesis is that $k$ is small with respect to the overall input size. In both fields a frequent standard technique is the design of branching algorithms. These algorithms solve the problem by traversing the solution space in a clever way. They frequently select an entity of the input and create two new subproblems, one where this entity is considered as part of the future solution and another one where it is excluded from it. Then in both cases by fixing this entity possibly other entities will be fixed. If so then the traversed number of possible solution is smaller than the whole solution space. The visited solutions can be arranged like a search tree. To estimate the run time of such algorithms there is need for a method to obtain tight upper bounds on the size of the search trees. In the field of exponential time algorithms a powerful technique called Measure&Conquer has been developed for this purpose. It has been applied successfully to many problems, especially to problems where other algorithmic attacks could not break the trivial run time upper bound. On the other hand in the field of parameterized algorithms Measure&Conquer is almost not known. This piece of work will present examples where this technique can be used in this field. It also will point out what differences have to be made in order to successfully apply the technique. Further, exponential time algorithms for hard problems where Measure&Conquer is applied are presented. Another aspect is that a formalization (and generalization) of the notion of a search tree is given. It is shown that for certain problems such a formalization is extremely useful.
N-acetylation by N-acetyltransferase 1 (NAT1) is an important biotransformation pathway of the human skin and it is involved in the deactivation of the arylamine and well-known contact allergen para-phenylenediamine (PPD). Here, NAT1 expression and activity were analyzed in antigen presenting cells (monocyte-derived dendritic cells, MoDCs, a model for epidermal Langerhans cells) and human keratinocytes. The latter were used to study exogenous and endogenous NAT1 activity modulations. Within this thesis, MoDCs were found to express metabolically active NAT1. Activities were between 23.4 and 26.6 nmol/mg/min and thus comparable to peripheral blood mononuclear cells. These data suggest that epidermal Langerhans cells contribute to the cutaneous N-acetylation capacity. Keratinocytes, which are known for their efficient N-acetylation, were analyzed in a comparative study using primary keratinocytes (NHEK) and different shipments of the immortalized keratinocyte cell line HaCaT, in order to investigate the ability of the cell line to model epidermal biotransformation. N-acetylation of the substrate para-aminobenzoic acid (PABA) was 3.4-fold higher in HaCaT compared to NHEK and varied between the HaCaT shipments (range 12.0"44.5 nmol/mg/min). Since B[a]P induced cytochrome p450 1 (CYP1) activities were also higher in HaCaT compared to NHEK, the cell line can be considered as an in vitro tool to qualitatively model epidermal metabolism, regarding NAT1 and CYP1. The HaCaT shipment with the highest NAT1 activity showed only minimal reduction of cell viability after treatment with PPD and was subsequently used to study interactions between NAT1 and PPD in keratinocytes. Treatment with PPD induced expression of cyclooxygenases (COX) in HaCaT, but in parallel, PPD N-acetylation was found to saturate with increasing PPD concentration. This saturation explains the presence of the PPD induced COX induction despite the high N-acetylation capacities. A detailed analysis of the effect of PPD on NAT1 revealed that the saturation of PPD N-acetylation was caused by a PPD-induced decrease of NAT1 activity. This inhibition was found in HaCaT as well as in primary keratinocytes after treatment with PPD and PABA. Regarding the mechanism, reduced NAT1 protein level and unaffected NAT1 mRNA expression after PPD treatment adduced clear evidences for substrate-dependent NAT1 downregulation. These results expand the existing knowledge about substrate-dependent NAT1 downregulation to human epithelial skin cells and demonstrate that NAT1 activity in keratinocytes can be modulated by exogenous factors. Further analysis of HaCaT cells from different shipments revealed an accelerated progression through the cell cycle in HaCaT cells with high NAT1 activities. These findings suggest an association between NAT1 and proliferation in keratinocytes as it has been proposed earlier for tumor cells. In conclusion, N-acetylation capacity of MoDCs as well as keratinocytes contribute to the overall N-acetylation capacity of human skin. NAT1 activity of keratinocytes and consequently the detoxification capacities of human skin can be modulated by the presence of exogenous NAT1 substrates and endogenous by the cell proliferation status of keratinocytes.
In this thesis, three studies investigating the impact of stress on the protective startle eye blink reflex are reported. In the first study a decrease in prepulse inhibition of the startle reflex was observed after intravenous low dose cortisol application. In the second study a decrease in reflex magnitude of the startle reflex was observed after pharmacological suppression of endogenous cortisol production. In the third study, a higher reflex magnitude of the startle reflex was observed at reduced arterial and central venous blood pressure. These results can be interpreted in terms of an adaption to hostile environments.
Die sich entwickelnden mittelalterlichen Städte waren Triebfedern für vielfältige sprachliche Entwicklungen. Der in dieser Arbeit gewählte Untersuchungszeitraum von 1388 bis 1500 beleuchtet eine Zeit, in der sich in vielen Städten ein völlig neues System der Namengebung entwickelte. Dies wurde nötig, weil es in einer heterogenen Gesellschaft zunehmend schwieriger wurde, Individuen über ihren Rufnamen eindeutig zu identifizieren, was vor allem im Bereich des Rechts und der Verwaltung zu Problemen führte. Somit mussten neue Wege gefunden werden, um einen Namen in einem schriftlich verfassten und rechtsgültigen Dokument eindeutig einer Person zuordnen zu können. Basis dieser Untersuchung sind die Rechnungsbücher der Stadt Luxemburg, die in jährlichen Berichten penibel die Einnahmen und Ausgaben der Stadt verzeichnen. Tätigkeiten im Dienst der Stadtgemeinschaft wurde entlohnt und die Kosten für jeden einzelnen Arbeiter in den Büchern vermerkt. Somit sind Rechnungsbücher ein reicher Fundus für namenkundliche Analysen. Sie werfen ein Licht auf eine Zeit, in der sich im Bereich der Personennamen ein grundlegend neues System der Namengebung beginnt herauszubilden, dessen Auswirkungen uns bis heute prägen. Die Arbeit besteht aus einem nach verschiedenen Gesichtspunkten gegliederten und kommentierten Namenbuch sowie einer onomastischen Analyse des Bestands.
Mechanical and Biological Treatment (MBT) generally aims to reduce the amount of solid waste and emissions in landfills and enhance the recoveries. MBT technology has been studied in various countries in Europe and Asia. Techniques of solid waste treatment are distinctly different in the study areas. A better understanding of MBT waste characteristics can lead to an optimization of the MBT technology. For a sustainable waste management, it is essential to determine the characteristics of the final MBT waste, the effectiveness of the treatment system as well as the potential application of the final material regarding future utilization. This study aims to define and compare the characteristics of the final MBT materials in the following countries: Luxembourg (using a high degree technology), Fridhaff in Diekirch/Erpeldange, Germany (using a well regulated technology), Singhofen in Rhein-Lahn district, Thailand (using a low cost technology): Phitsanulok in Phitsanulok province. The three countries were chosen for this comparative study due to their unique performance in the MBT implementation. The samples were taken from the composting heaps of the final treatment process prior to sending them to landfills, using a random sampling standard strategy from August 2008 onwards. The size of the sample was reduced to manageable sizes before characterization. The size reduction was achieved by the quartering method. The samples were first analyzed for the size fraction on the day of collection. They were screened into three fractions by the method of dry sieving: small size with a diameter of <10 mm, medium size with a diameter of 10-40 mm and large size with a diameter of >40 mm. These fractions were further analyzed for their physical and chemical parameters such as particle size distribution (total into 12 size fractions), particle shape, porosity, composition, water content, water retention capacity and respiratory activity. The extracted eluate was analyzed for pH-value, heavy metals (lead, cadmium and arsenic), chemical oxygen demand, ammonium, sulfate and chloride. In order to describe and evaluate the potential application of the small size material as a final cover of landfills, the fraction of small size samples were tested for the geotechnical properties as well. The geotechnical parameters were the compaction test, permeability test and shear strength test. The detailed description of the treatment facilities and methods of the study areas were included in the results. The samples from the three countries are visibly smaller than waste without pretreatment. Maximum particle size is found to be less than 100 mm. The samples are found to consist of dust to coarse fractions. The small size with a diameter of <10 mm was highest in the sample from Germany (average 60% by weight), secondly in the sample from Luxembourg (average 43% by weight) and lowest in the sample from Thailand (average 15% by weight). The content of biodegradable material generally increased with decreasing particle sizes. Primary components are organic, plastics, fibrous materials and inert materials (glass and ceramics). The percentage of each components greatly depends on the MBT process of each country. Other important characteristics are significantly reduced water content, reduced total organic carbon and reduced potential heavy metals. The geotechnical results show that the small fraction is highly compact, has a low permeability and lot of water adsorbed material. The utilization of MBT material in this study shows a good trend as it proved to be a safe material which contained very low amounts of loadings and concentrations of chemical oxygen demand, ammonium, and heavy metals. The organic part can be developed to be a soil conditioner. It is also suitably utilized as a bio-filter layer in the final cover of landfill or as a temporary cover during the MBT process. This study showed how to identify the most appropriate technology for municipal solid waste disposal through the study of waste characterization.
Die vorliegende Studie untersucht die Besonderheiten diskursiver Strategien, sowie struktureller und sprachlicher Merkmale der japanischsprachigen Textsorte Literatur-Rezension. Auf der Grundlage der herausgearbeiteten textlinguistischen Merkmale werden Didaktisierungsbeispiele für den Fachtext-Leseunterricht entworfen. Ziel ist somit der Entwurf einer textlinguistischen Fundierung der (Fach-)textlektüre am Beispiel der Textsorte Rezension.
Die Materialbasis der vorliegenden Studie bilden 45 Rezensionen literarischer Neuerscheinungen aus dem wöchentlich erscheinenden Rezensionsorgan Tosho shinbun (Die Bücherzeitung) des Jahres 1999.
Die Kriterien für die Analyse werden aus einem Modell des Textsortenwissens von Fix 2006 abgeleitet (Teil I). Bei der Analyse stehen daher Aspekte im Zentrum, die den Aufbau von Wissen (Schemata) über die Textsorte bzw. Textsortenkonventionen und deren struktureller und sprachlicher Realisationen dienen können. Übergeordnete Phänomene wie Tempusgebrauch oder Fachsprachlichkeit werden ebenfalls untersucht. Eine quantitative Auswertung der Ergebnisse ermöglicht Rückschlüsse auf die didaktische Relevanz eines beobachteten Phänomens (Teil II).
Kriterien zur Textauswahl und Progression bei der Didaktisierung ausgewählter Rezensionen liefert ein Ansatz von Sandig 2000, die eine Klassifizierung von Texten auf der Grundlage der Prototypentheorie vorschlägt. Danach verdichten sich bestimmte Kommunikationsmuster zu mentalen Textschemata mit unterschiedlichen Ausprägungen je nach Prototypikalität der Texteigenschaften.
Das konstruktivistische Leseprozessmodell von Wolff 1990 schließlich liefert die Vorgaben, nach denen die Ergebnisse der Textanalyse anhand ausgewählter Beispiele lesedidaktisch aufbereitet werden (Teil III).
Der Anhang (Teil IV) bietet eine Zusammenstellung von in den untersuchten Rezensionen verwendeten Ausdrücken, der sich auf die Darstellung, Interpretation, Analyse und Bewertung von literarischen Werken beziehen.
"In dem überaus prächtig illuminierten zweiten Band der Arnsteiner Riesenbibel (London, British Library, Harley Ms. 2799; 547 x 371 mm) ist eine Reihe von (Kreis-) Schemata und Zeichnungen überliefert, die, nach dem Eindruck der Schrift zu urteilen, in unmittelbarer zeitlicher Nachbarschaft zu dem Entstehungsdatum der Amsteiner Bibel selbst ( ca. 1172) noch in den siebziger Jahren des 12. Jahrhunderts entstanden sein könnten. […] Diese Federzeichnungen sind mit äußerster Sorgfalt gezeichnet, ja mit ästhetischer Qualität und alles andere als Fingerübungen oder Blattfüllsel. Dass sie in der Amsteiner Bibel dennoch auf den ersten Blick ein Fremdkörper sind, steht auf einem anderen Blatt. Das Miteinander von Bibelprachthandschrift und schematischen Zeichnungen zu Themen aus dem Bereich der Komputistik, Kosmologie, Astronomie und Universalkartographie ist ungewöhnlich, aufregend und fordert eine Erklärung."
Abbildungen der besprochenen vier Seiten 1r, 241v-243r online im Catalogue of Illuminated Manuscripts der British Library:
http://www.bl.uk/catalogues/illuminatedmanuscripts/ILLUMIN.ASP?Size=mid&IllID=32355
http://www.bl.uk/catalogues/illuminatedmanuscripts/ILLUMIN.ASP?Size=mid&IllID=20317
http://www.bl.uk/catalogues/illuminatedmanuscripts/ILLUMIN.ASP?Size=mid&IllID=20319
http://www.bl.uk/catalogues/illuminatedmanuscripts/ILLUMIN.ASP?Size=mid&IllID=20321