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    1752 research outputs found

    Mitteilungsblatt der Universität Koblenz-Landau Nr. 4/2016

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    Erste Ordnung zur Änderung der Gemeinsamen Prüfungsordnung für die Bachelor- und Masterstudiengänge des Fachbereichs Informatik an der Universität Koblenz-Landau Masterprüfungsordnung für den weiterbildenden Fernstudiengang Angewandte Umweltwissenschaften des Fachbereiches 3: Mathematik / Naturwissenschaften der Universität Koblenz-Landau Ordnung zur Aufhebung der Diplomprüfungsordnung für den Weiterbildenden Fernstudiengang Angewandte Umweltwissenschaften an der Universität Koblenz-Landau Dritte Ordnung zur Änderung der Masterprüfungsordnung für den Weiterbildenden Fernstudiengang “Energiemanagement“ an der Universität Koblenz-Landau Erste Ordnung zur Änderung der Prüfungsordnung für Studierende des Bachelorstudiengangs „Pädagogik“ (B.A.) und des Masterstudiengangs „Erziehungswissenschaft mit dem Schwerpunkt Forschung und Entwicklung in Organisationen“ (M.A.) des Fachbereichs 1: Bildungswissenschaften an der Universität Koblenz-Landau, Campus Koblenz Masterprüfungsordnung für den weiterbildenden Fernstudiengang Inklusion und Schule des Fachbereiches 1: Bildungswissenschaften der Universität Koblenz-Landau Masterprüfungsordnung für den weiterbildenden Fernstudiengang Personal und Organisation des Fachbereiches 1: Bildungswissenschaften der Universität Koblenz-Landau Siebte Ordnung zur Änderung der Gemeinsamen Prüfungsordnung für den Bachelorstudiengang und den Masterstudiengang „Psychologie“ des Fachbereichs Psychologie der Universität Koblenz-Landau, Campus Landau Fünfzehnte Ordnung zur Änderung der Prüfungsordnung für die Prüfung im lehramtsbezogenen Bachelorstudiengang an der Universität Koblenz-Landau Vierzehnte Ordnung zur Änderung der Prüfungsordnung für die Prüfung in den Masterstudiengängen für das Lehramt an Grundschulen, das Lehramt an Realschulen plus, das Lehramt an Förderschulen sowie das Lehramt an Gymnasien an der Universität Koblenz-Landau Dreizehnte Ordnung zur Änderung der Ordnung für die Prüfung im lehramtsbezogenen Zertifikatsstudiengang (Erweiterungsprüfung) an der Universität Koblenz-Landau Zwölfte Ordnung zur Änderung der Prüfungsordnung für die Prüfung im Zwei-Fach-Bachelorstudiengang an der Universität Koblenz-Landau Satzung zur Festsetzung der Normwerte für den Ausbildungsaufwand (Curricularnormwerte) der Universität Koblenz-Landau Satzung zur Festsetzung von Zulassungszahlen an der Universität Koblenz-Landau für das Studienjahr 2016/2017 Satzung der örtlichen Studierendenschaft an der Universität Koblenz-Landau, Campus Koblenz Wahlordnung der örtlichen Studierendenschaft an der Universität Koblenz-Landau, Campus Koblen

    On the construction of optimal paths from flows and the analysis of evacuation scenarios

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    In Part I: "The flow-decomposition problem", we introduce and discuss the flow-decomposition problem. Given a flow F, this problem consists of decomposing the flow into a set of paths optimizing specific properties of those paths. We introduce different types of decompositions, such as integer decompositions and alpha-decompositions, and provide two formulations of the set of feasible decompositions. We show that the problem of minimizing the longest path in a decomposition is NP-hard, even for fractional solutions. Then we develop an algorithm based on column generation which is able to solve the problem. Tight upper bounds on the optimal objective value help to improve the performance. To find upper bounds on the optimal solution for the shortest longest path problem, we develop several heuristics and analyze their quality. On pearl graphs we prove a constant approximation ratio of 2 and 3 respectively for all heuristics. A numerical study on random pearl graphs shows that the solutions generated by the heuristics are usually much better than this worst-case bound. In Part II: "Construction and analysis of evacuation models using flows over time", we consider two optimization models in the context of evacuation planning. The first model is a parameter-based quickest flow model with time-dependent supply values. We give a detailed description of the network construction and of how different scenarios are modeled by scenario parameters. In a second step we analyze the effect of the scenario parameters on the evacuation time. Understanding how the different parameters influence the evacuation time allows us to provide better advice for evacuation planning and allows us to predict evacuation times without solving additional optimization problems. To understand the effect of the time-dependent supply values, we consider the quickest path problem with time-dependent supply values and provide a solution algorithm. The results from this consideration are generalized to approximate the behavior of the evacuation times in the context of quickest flow problems. The second model we consider is a path-based model for evacuation in the presence of a dynamic cost function. We discuss the challenges of this model and provide ideas for how to approach the problem from different angles. We relate the problem to the flow-decomposition problem and consider the computation of evacuation paths with dynamic costs for large capacities. For the latter method we provide heuristics to find paths and compare them to the optimal solutions by applying the methods to two evacuation scenarios. An analysis shows that the paths generated by the heuristic yield close to optimal solutions and in addition have several desirable properties for evacuation paths which are not given for the optimal solution

    Uncertainty and inconsistency in knowledge representation

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    This habilitation thesis collects works addressing several challenges on handling uncertainty and inconsistency in knowledge representation. In particular, this thesis contains works which introduce quantitative uncertainty based on probability theory into abstract argumentation frameworks. The formal semantics of this extension is investigated and its application for strategic argumentation in agent dialogues is discussed. Moreover, both the computational as well as the meaningfulness of approaches to analyze inconsistencies, both in classical logics as well as logics for uncertain reasoning is investigated. Finally, this thesis addresses the implementation challenges for various kinds of knowledge representation formalisms employing any notion of inconsistency tolerance or uncertainty

    Impact of the invasive amphipod Dikerogammarus villosus on trophic interactions under field conditions

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    The establishment of aquatic alien species can strongly affect community and food web structure of the invaded systems and thus represents a major threat to native biodiversity. One of the most important aquatic invasive species in European rivers is the Ponto-Caspian amphipod Dikerogammarus villosus. The species invaded most of the major European waterways within two decades, often associated with a decline of many other macroinvertebrate species, including other amphipods. Based on laboratory results predation by the so called ‘killer shrimp’ is often regarded as the key driver for observed displacement effects, but recent studies indicated a minor relevance of predation by D. villosus in the field. To allow the determination of exact predator-prey interactions from field samples, I established 22 group-specific rDNA primers for freshwater taxa suitable for prey species identification in dietary samples (Chapter II) and an approach for the screening of D. villosus gut contents using 16 of these primers. Combining genetic gut content analyses, with one of these primers, and stable isotope analyses, I examined the importance of intraguild predation (IGP) by D. villosus, which is often assumed the key driver for the displacement of native amphipod species, at an invasion front of the species in Switzerland (Chapter III). The results of this study revealed a low importance of IGP during this particular D. villosus invasion and indicated an overall sparsely predacious feeding behaviour of the species. As the feeding behaviour of D. villosus is supposed to differ between habitats and this study was only conducted at a few sampling sites of one river, I also investigated the role of predation by D. villosus at multiple sites of the River Rhine system, covering a broad range of microhabitats (Chapter IV). In keeping with the results from the invasion front results of this study strongly indicated a sparsely predacious feeding but rather a flexible feeding behaviour of D. villosus even within the same microhabitat. However, established populations of D. villosus have changed aquatic food webs and can be expected to affect aquatic-terrestrial energy fluxes. In Chapter V of my thesis, I present a field study investigating the impact of D. villosus on the diet of two riparian spider taxa. The results of this study indicate an effect of D. villosus on the terrestrial food web via cross-ecosystem resource flow. In conclusion, D. villosus influences terrestrial food webs by altering cross-ecosystem resource fluxes, but it is rather an opportunistic omnivore than a predator in the field

    Evaluation of exposure modelling strategies in the context of environmental risk assessment for pesticides

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    The application of pesticides to agricultural areas can result in transport to adjacent non-target environments. In particular, surface water systems are likely to receive agricultural pesticide input. When pesticides enter aquatic environments, they may pose a substantial threat to the ecological integrity of surface water systems. To minimize the risk to non-target ecosystems the European Union prescribes an ecotoxicological risk assessment within the registration procedure of pesticides, which consists of an effect and an exposure assessment. This thesis focuses on the evaluation of the exposure assessment and the implications to the complete regulatory risk assessment, and is based on four scientific publications. The main part of the thesis focuses on evaluation of the FOCUS modelling approach, which is used in regulatory risk assessment to predict pesticide surface water concentrations. This was done by comparing measured field concentrations (MFC) of agricultural insecticides (n = 466) and fungicides (n = 417) in surface water to respective predicted environmental concentrations (PEC) calculated with FOCUS step 1 to step 4 at two different levels of field relevance. MFCs were extracted from the scientific literature and were measured in field studies conducted primarily in Europe (publications 1 and 3). In addition, an alternative fugacity-based multimedia mass-balance model, which needs fewer input parameters and less computing effort, was used to calculate PECs for the same insecticide MFC dataset and compared to the FOCUS predictions (publication 3). Furthermore, FOCUS predictions were also conducted for veterinary pharmaceuticals in runoff from an experimental plot study, to assess the FOCUS predictions for a different class of chemicals with a different relevant entry pathway (publication 2). In publication 4, the FOCUS step-3 approach was used to determine relevant insecticide exposure patterns. These patterns were analysed for different monitoring strategies and the implications for the environmental risk assessment (publication 4). The outcome of this thesis showed that the FOCUS modelling approach is neither protective nor appropriate in predicting insecticide and fungicide field concentrations. Up to one third of the MFCs were underpredicted by the model calculations, which means that the actual risk might be underestimated. Furthermore, the results show that a higher degree of realism even reduces the protectiveness of model results and that the model predictions are worse for highly hydrophobic and toxic pyrethroids. In addition, the absence of any relationship between measured and predicted concentrations questions the general model performance quality (publication 1 and 3). Further analyses revealed that deficiencies in protectiveness and predictiveness of the environmental exposure assessment might even be higher than shown in this thesis, because actual short-term peak concentrations are only detectable with an event-related sampling strategy (publication 4). However, it was shown that the PECs of a much simpler modelling approach are much more appropriate for the prediction of insecticide MFC, especially for calculations with a higher field relevance (publication 3). The FOCUS approach also failed to predict concentrations of veterinary pharmaceuticals in runoff water (publication 2). In conclusion, the findings of this thesis showed that there is an urgent need for the improvement of exposure predictions conducted in the environmental risk assessment of pesticides as a group of highly relevant environmental chemicals, to ensure that the increasing use of those chemicals does not lead to further harmful effects in aquatic ecosystems

    Veranstaltungsverzeichnis Sommersemester 2016 - Koblenz

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    Veranstaltungsverzeichnis - Koblenz - Sommersemester 201

    A privacy aware mobile sensor application

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    In this article we analyze the privacy aspects of a mobile sensor application used for recording urban travel patterns as part of a travel-survey service. This service has been developed and field-tested within the Live+Gov EU Project. The privacy analysis follows a structured approach established in. Eight privacy recommendations are derived, and have already led to corresponding enhancements of the travel-survey service

    Mitteilungsblatt der Universität Koblenz-Landau Nr. 3/2016

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    Fünfte Satzung zur Änderung der Satzung der Universität Koblenz-Landau über das Auswahlverfahren in zulassungsbeschränkten Studiengängen Ordnung zur Änderung der Beitragsordnung des Studierendenwerks Koblenz Ordnung zur Aufhebung der Ordnung für die Magisterprüfung der Universität Koblenz-Landau Gebührensatzung des ZFUW gemäß „Landesverordnung über die Gebühren in den Bereichen Wissenschaft, Weiterbildung und Forschung“ des Landes Rheinland-Pfalz Beitragsordnung der Studierendenschaft der Universität Koblenz-Landau, Campus Landa

    Mixed reality embodiment platform – Visual coherence for volumetric mixed reality scenes - Recording and replay of volumetric characters

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    While Virtual Reality has been around for decades it gained new life in recent years. The release of the first consumer hardware devices allows fully immersive and affordable VR for the user at home. This availability lead to a new focus of research on technical problems as well as psychological effects. The concepts of presence, describing the feeling of being in the virtual place, body ownership and their impact are central topics in research for a long time and still not fully understood. To enable further research in the area of Mixed Reality, we want to introduce a framework that integrates the users body and surroundings inside a visual coherent virtual environment. As one of two main aspects we want to merge real and virtual objects to a shared environment in a way such that they are no longer visually distinguishable. To achieve this the main focus is not supposed to be on a high graphical fidelity but on a simplified representation of reality. The essential question is, what level of visual realism is necessary to create a believable mixed reality environment that induces a sense of presence in the user? The second aspect considers the integration of virtual persons. Can characters be recorded and replayed in a way such that they are perceived as believable entities of the world and therefore act as a part of the users environment? The purpose of this thesis was the development of a framework called Mixed Reality Embodiment Platform. This inital system implements fundamental functionalities to be used as a basis for future extensions to the framework. We also provide a first application that enables user studies to evaluate the framework and contribute to aforementioned research questions

    Die Persistenz chemischer und biologischer Effekte von saisonal appliziertem Olivenabwasser auf den Boden

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    During olive oil production, large amounts of olive mill wastewater (OMW) are generated within a short period of time. OMW has a high nutrient content and could serve as fertilizer when applied on land. However, its fatty and phenolic constituents have adverse effects on soil properties. It is still unknown how seasonal fluctuations in temperature and precipitation influence the fate and effect of OMW components on soil properties in a long-term perspective. An appropriate application season could mitigate negative consequences of OMW while preserving its beneficial effects. In order to investigate this, 14 L OMW m-2 were applied to different plots of an olive plantation in winter, spring, and summer respectively. Hydrological soil properties (water drop penetration time, hydraulic conductivity, dynamic contact angle), physicochemical parameters (pH, EC, soluble ions, phenolic compounds, organic matter), and biological degradation (bait-lamina test) were measured to assess the soil state after OMW application. After one rainy season following OMW application, the soil quality of summer treatments significantly decreased compared to the control. This was particularly apparent in a three-times lower biodegradation performance, ten-fold higher soil water repellency, and a four-fold higher content of phenolic compounds. The soil properties of winter treatments were comparable to the control, which demonstrated the recovery potential of the soil ecosystem. Spring treatments resulted in an intermediate response compared to summer and winter treatments, but without any precipitation following OMW application. Significant accumulation or leaching effects to deeper soil were not observed. Therefore, the direct application of legally restricted OMW amounts to soil is considered acceptable during the moist seasons. Further research is needed to quantify the effect of spring treatments and to gain further insight into the composition and kinetics of organic OMW constituents in the soil.Bei der Olivenölproduktion fallen innerhalb kürzester Zeit große Mengen Olivenabwasser (OMW) an. OMW kann aufgrund seines hohen Nährstoffgehalts als landwirtschaftlicher Dünger eingesetzt werden. Doch seine öligen und phenolischen Bestandteile schaden dem Boden. Es ist nicht bekannt, inwiefern jahreszeitliche Temperatur- und Niederschlagsschwankungen den Verbleib und die Wirkung der Abwasserkomponenten im Boden längerfristig beeinflussen. Um dem nachzugehen, wurden jeweils 14 L OMW m-2 im Winter, Frühling und Sommer auf verschiedenen Parzellen einer Olivenplantage ausgebracht. Hydrologische Bodeneigenschaften (Wassertropfeneindringzeit, Wasserleitfähigkeit, Kontaktwinkel), physikalisch-chemische Parameter (pH, EC, lösliche Ionen, phenolische Verbindungen, organischer Kohlenstoff) sowie der biologische Abbau (Köderstreifen) wurden erfasst, um den Zustand des Bodens nach der Applikation zu beurteilen. Nach einer Regensaison war die Bodenqualität der im Sommer behandelten Flächen signifikant reduziert. Dies wurde insbesondere anhand einer dreimal niedrigeren biologischen Fraßaktivität, zehnmal höherer Hydrophobizität, sowie einem viermal höheren Gehalt an phenolischen Substanzen im Vergleich zu den Kontrollflächen deutlich. Die Ausbringung im Winter zeigte gegenteilige Effekte, welche das natürliche Regenerierungspotential des Bodens erkennen lassen. Der Einfluss der Frühlingsapplikation lag zwischen den zuvor genannten. Es wurden keinerlei Anzeichen auf Verlagerung von OMW-Bestandteilen in tiefere Bodenschichten beobachtet. Während der feuchten Jahreszeiten gilt die Ausbringung gesetzlich begrenzter Mengen Olivenabwasser somit als vertretbar. Weitere Forschung ist notwendig um den Einfluss von Frühlingsapplikationen zu quantifizieren und weitere Erkenntnisse über die Zusammensetzung und Mobilität organischer OMW-Bestandteile im Boden zu gewinnen

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