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Keywords
Vor dem Hintergrund zunehmender gesellschaftlicher Veränderungen bei den Lebens- und Familienformen hat es sich die Commission on European Family Law (CEFL) seit 2001 zum Ziel gesetzt, unverbindliche Regelungsvorschläge für ein europaweit einheitliches Familienrecht zu schaffen. Die Vorstellung und Diskussion dieser auf rechtsvergleichender Basis erstellten Principles erfolgt auf den regelmäßig veranstalteten Tagungen der CEFL. Die nunmehr fünfte Konferenz zum Thema „Family Law and Culture in Europe – Developments, Challenges and Opportunities“ fand erstmals in Deutschland statt. Ausgerichtet wurde die Veranstaltung, zu der ca. 200 Teilnehmerinnen und Teilnehmern aus Wissenschaft und Praxis aus insgesamt 33 Ländern angereist waren, von Nina Dethloff (Direktorin des Instituts für Deutsches, Europäisches und Internationales Familienrecht an der Universität Bonn), Katharina Boele-Woelki (Direktorin des Utrecht Centre for European Research into Family Law und Preisträgerin des Anneliese Maier-Forschungspreises der Alexander von Humboldt-Stiftung) und Werner Gephart (Direktor des Käte Hamburger Kollegs „Recht als Kultur“).
Einleitung vor § 1297
(2014)
Vorbemerkung vor § 1297
(2014)
Vorbemerkung vor § 1353
(2014)
Successful bone sawing requires a high level of skill and experience, which could be gained by the use of Virtual Reality-based simulators. A key aspect of these medical simulators is realistic force feedback. The aim of this paper is to model the bone sawing process in order to develop a valid training simulator for the bilateral sagittal split osteotomy, the most often applied corrective surgery in case of a malposition of the mandible. Bone samples from a human cadaveric mandible were tested using a designed experimental system. Image processing and statistical analysis were used for the selection of four models for the bone sawing process. The results revealed a polynomial dependency between the material removal rate and the applied force. Differences between the three segments of the osteotomy line and between the cortical and cancellous bone were highlighted.
In co-operation with the German Aerospace Center, the Solar-Institut Jülich has been analyzing the different technologies that are available for methanol production from CO2 using solar energy. The aim of the project is to extract CO2 from industrial exhaust gases or directly from the atmosphere to recycle it by use of solar energy. Part of the study was the modeling and simulating of a methane reformer for the production of synthesis gas, which can be operated by solar or hybrid heat sources. The reformer has been simplified in such a way that the model is accurate and enables fast calculations. The developed pseudo-homogeneous one- dimensional model can be regarded as a kind of counter-current heat exchanger and is able to incorporate a steam reforming reaction as well as a dry reforming reaction.
For the sterilisation of aseptic food packages it is taken advantage of the microbicidal properties of hydrogen peroxide (H2O2). Especially, when applied in vapour phase, it has shown high potential of microbial inactivation. In addition, it offers a high environmental compatibility compared to other chemical sterilisation agents, as it decomposes into oxygen and water, respectively. Due to a lack in sensory detection possibilities, a continuous monitoring of the H2O2 concentration was recently not available. Instead, the sterilisation efficacy is validated using microbiological tests. However, progresses in the development of calorimetric gas sensors during the last 7 years have made it possible to monitor the H2O2 concentration during operation. This chapter deals with the fundamentals of calorimetric gas sensing with special focus on the detection of gaseous hydrogen peroxide. A sensor principle based on a calorimetric differential set-up is described. Special emphasis is given to the sensor design with respect to the operational requirements under field conditions. The state-of-the-art regarding a sensor set-up for the on-line monitoring and secondly, a miniaturised sensor for in-line monitoring are summarised. Furthermore, alternative detection methods and a novel multi-sensor system for the characterisation of aseptic sterilisation processes are described.
The possibility of using the atomic-force microscopy as a method for detection of the analytical signal from plasticized polymeric sensor membranes was analyzed. The surfaces of cadmium-selective membranes based on two polymeric matrices were examined. The digital images were processed with multivariate image analysis techniques. A correlation was found between the surface profile of an ion-selective membrane and the concentration of the ion in solution.