408 resultados para Berufsbegleitendes Studium


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Among all possible realizations of quark and antiquark assembly, the nucleon (the proton and the neutron) is the most stable of all hadrons and consequently has been the subject of intensive studies. Mass, shape, radius and more complex representations of its internal structure are measured since several decades using different probes. The proton (spin 1/2) is described by the electric GE and magnetic GM form factors which characterise its internal structure. The simplest way to measure the proton form factors consists in measuring the angular distribution of the electron-proton elastic scattering accessing the so-called Space-Like region where q2 < 0. Using the crossed channel antiproton proton <--> e+e-, one accesses another kinematical region, the so-called Time-Like region where q2 > 0. However, due to the antiproton proton <--> e+e- threshold q2th, only the kinematical domain q2 > q2th > 0 is available. To access the unphysical region, one may use the antiproton proton --> pi0 e+ e- reaction where the pi0 takes away a part of the system energy allowing q2 to be varied between q2th and almost 0. This thesis aims to show the feasibility of such measurements with the PANDA detector which will be installed on the new high intensity antiproton ring at the FAIR facility at Darmstadt. To describe the antiproton proton --> pi0 e+ e- reaction, a Lagrangian based approach is developed. The 5-fold differential cross section is determined and related to linear combinations of hadronic tensors. Under the assumption of one nucleon exchange, the hadronic tensors are expressed in terms of the 2 complex proton electromagnetic form factors. An extraction method which provides an access to the proton electromagnetic form factor ratio R = |GE|/|GM| and for the first time in an unpolarized experiment to the cosine of the phase difference is developed. Such measurements have never been performed in the unphysical region up to now. Extended simulations were performed to show how the ratio R and the cosine can be extracted from the positron angular distribution. Furthermore, a model is developed for the antiproton proton --> pi0 pi+ pi- background reaction considered as the most dangerous one. The background to signal cross section ratio was estimated under different cut combinations of the particle identification information from the different detectors and of the kinematic fits. The background contribution can be reduced to the percent level or even less. The corresponding signal efficiency ranges from a few % to 30%. The precision on the determination of the ratio R and of the cosine is determined using the expected counting rates via Monte Carlo method. A part of this thesis is also dedicated to more technical work with the study of the prototype of the electromagnetic calorimeter and the determination of its resolution.

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The availability of a high-intensity antiproton beam with momentum up to 15,GeV/c at the future FAIR will open a unique opportunity to investigate wide areas of nuclear physics with the $overline{P}$ANDA (anti{$overline{P}$}roton ANnihilations at DArmstadt) detector. Part of these investigations concern the Electromagnetic Form Factors of the proton in the time-like region and the study of the Transition Distribution Amplitudes, for which feasibility studies have been performed in this Thesis. rnMoreover, simulations to study the efficiency and the energy resolution of the backward endcap of the electromagnetic calorimeter of $overline{P}$ANDA are presented. This detector is crucial especially for the reconstruction of processes like $bar pprightarrow e^+ e^- pi^0$, investigated in this work. Different arrangements of dead material were studied. The results show that both, the efficiency and the energy resolution of the backward endcap of the electromagnetic calorimeter fullfill the requirements for the detection of backward particles, and that this detector is necessary for the reconstruction of the channels of interest. rnrnThe study of the annihilation channel $bar pprightarrow e^+ e^-$ will improve the knowledge of the Electromagnetic Form Factors in the time-like region, and will help to understand their connection with the Electromagnetic Form Factors in the space-like region. In this Thesis the feasibility of a measurement of the $bar pprightarrow e^+ e^-$ cross section with $overline{P}$ANDA is studied using Monte-Carlo simulations. The major background channel $bar pprightarrow pi^+ pi^-$ is taken into account. The results show a $10^9$ background suppression factor, which assure a sufficiently clean signal with less than 0.1% background contamination. The signal can be measured with an efficiency greater than 30% up to $s=14$,(GeV/c)$^2$. The Electromagnetic Form Factors are extracted from the reconstructed signal and corrected angular distribution. Above this $s$ limit, the low cross section will not allow the direct extraction of the Electromagnetic Form Factors. However, the total cross section can still be measured and an extraction of the Electromagnetic Form Factors is possible considering certain assumptions on the ratio between the electric and magnetic contributions.rnrnThe Transition Distribution Amplitudes are new non-perturbative objects describing the transition between a baryon and a meson. They are accessible in hard exclusive processes like $bar pprightarrow e^+ e^- pi^0$. The study of this process with $overline{P}$ANDA will test the Transition Distribution Amplitudes approach. This work includes a feasibility study for measuring this channel with $overline{P}$ANDA. The main background reaction is here $bar pprightarrow pi^+ pi^- pi^0$. A background suppression factor of $10^8$ has been achieved while keeping a signal efficiency above 20%.rnrnrnPart of this work has been published in the European Physics Journal A 44, 373-384 (2010).rn

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Die vorliegende Arbeit befasst sich mit den veränderten Studienbedingungen, die durch die europaweite Einführung eines einheitlichen Systems von Bachelor- und Masterstudiengängen entstanden sind. In Deutschland wurde der Bologna-Prozess von umfangreichen Protesten begleitet und in der medialen Öffentlichkeit unter anderem die zeitliche und inhaltliche Überlastung der Studierenden und die verschulten Studiengänge kritisiert, die keinen Raum für die persönliche Entwicklung ließen. rnIm Rahmen des BMBF-geförderten Projekts ZEITLast wurde die zeitliche Belastung von Studierenden untersucht. Der scheinbare Widerspruch zwischen dem objektiv messbaren Zeitaufwand und dem subjektiven Belastungsempfinden der Studierenden stellt den Ausgangspunkt der vorliegenden Arbeit dar. Es wird der Frage nachgegangen, welche Strategien Studierende im Umgang mit den neuen Bachelorstudienstrukturen entwickeln und in welchem Zusammenhang diese mit dem subjektiven Belastungsempfinden stehen. Zur Beantwortung der Fragestellung werden quantitative und qualitative Forschungsmethoden kombiniert. Neben der Auswertung von umfangreichen Zeitbudgetanalysen und Befragungen aus dem Forschungsprojekt ZEITLast werden mit ausgewählten Probanden des Studiengangs Erziehungswissenschaft an der Universität Mainz problemzentrierte Interviews geführt und objektiv hermeneutisch ausgewertet. Eine zeitliche Überlastung der Studierenden lässt sich empirisch nicht nachweisen, dennoch fühlen sich Studierende subjektiv stark belastet Es zeigt sich, dass unterschiedliche subjektive Perspektiven auf die individuelle Studienorganisation und das Belastungsempfinden der Studierenden wirken. Vor allem spielt das individuelle Zeit- und Selbstmanagement bei der erfolgreichen Bewältigung der Anforderungen im Studium eine bedeutende Rolle. Insgesamt wird deutlich, dass Vorgaben im Studium abhängig von individuellen Dispositionen sowohl als Entlastung als auch als Belastung wahrgenommen werden. Die Aufgabe der Hochschule ist es, Studiengänge so zu gestalten, dass sie den unsicheren Studierenden Orientierung und Hilfestellung bieten, während sie den selbstbestimmten Studierenden Freiräume zur individuellen Entwicklung lassen. Aus den Ergebnissen der Arbeit werden abschließend hochschuldidaktische Maßnahmen entwickelt, die zu einer Entlastung der Studierenden beitragen können.

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Lo scopo del presente lavoro è gettare la massima luce possibile (in base ai documenti disponibili), sia dal punto di vista teorico che storico, su due questioni che la ricerca schopenhaueriana ha già da tempo considerato come decisive: la frequenza, da parte del giovanissimo Schopenhauer, delle lezioni di Fichte e la genesi, lo sviluppo e infine l’abbandono del filosofema della «coscienza migliore». Il lavoro è perciò diviso in due sezioni: «Analisi degli appunti» e «La coscienza migliore». Schopenhauer frequentò a Berlino, nel semestre invernale 1811-12, quattro lezioni di Fichte «Sullo studio della filosofia», e poi i corsi «Sui fatti della coscienza» e «Sulla dottrina della scienza». Nei suoi appunti concernenti queste lezioni, Schopenhauer ha registrato non soltanto l’esposizione di Fichte, ma anche le sue osservazioni e obbiezioni. L’analisi di questi appunti, condotta nella prima parte, consente perciò di documentare dettagliatamente il primo incontro del giovane Schopenhauer con la filosofia di Fichte e di indicare i punti specifici dell’esposizione di quest’ultimo che possono aver costituito un riferimento teorico significativo per il successivo sviluppo della filosofia schopenhaueriana. La seconda parte del lavoro è dedicata all’analisi dei Manoscritti giovanili di Schopenhauer, redatti dal 1804 al 1814, e soprattutto al filosofema della «coscienza migliore». Il tema della prima parte e il tema della seconda parte del lavoro sono in stretta relazione, in quanto, come è dimostrato nel corso dell’indagine, l’ascolto dei corsi di Fichte mosse Schopenhauer a elaborare i principi fondamentali del filosofema in questione. Quest’ultimo costituisce il primo tentativo di sistema di Schopenhauer. Attraverso l’analisi di tale filosofema si muove perciò un’indagine sistematica sui primissimi esperimenti teorici del giovane Schopenhauer, mettendo in evidenza il percorso e gli influssi attraverso i quali il filosofo tedesco è gradualmente giunto alle sue posizioni definitive concernenti il sistema della volontà di vivere. Nel lavoro si dimostra che la preferenza di Schopenhauer per il sistema della volontà di vivere rispetto al tentativo di sistema della coscienza migliore è necessitato da un’esigenza di coerenza verso quelle che Schopenhauer stesso considera le istanze irrinunciabili del criticismo kantiano. Al tempo stesso, si mostra come il filosofema della «coscienza migliore» abbia costituto, nelle riflessioni del giovane Schopenhauer, un importantissimo “esperimento teorico”, il cui fallimento fornì l’impulso fondamentale per l’elaborazione del sistema della volontà di vivere.

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Gels are elastic porous polymer networks that are accompanied by pronounced mechanical properties. Due to their biocompatibility, ‘responsive hydrogels’ (HG) have many biomedical applications ranging from biosensors and drug delivery to tissue engineering. They respond to external stimuli such as temperature and salt by changing their dimensions. Of paramount importance is the ability to engineer penetrability and diffusion of interacting molecules in the crowded HG environment, as this would enable one to optimize a specific functionality. Even though the conditions under which biomedical devices operate are rather complex, a bottom-up approach could reduce the complexity of mutually coupled parameters influencing tracer mobility. The present thesis focuses on the interaction-induced tracer diffusion in polymer solutions and their homologous gels, probed by means of Fluorescence Correlation Spectroscopy (FCS). This is a single-molecule-sensitive technique having the advantage of optimal performance under ultralow tracer concentrations, typically employed in biosensors. Two different types of hydrogels have been investigated, a conventional one with broad polydispersity in the distance between crosslink points and a so-called ‘ideal’, with uniform mesh size distribution. The former is based on a thermoresponsive polymer, exhibiting phase separation in water at temperatures close to the human body temperature. The latter represents an optimal platform to study tracer diffusion. Mobilities of different tracers have been investigated in each network, varying in size, geometry and in terms of tracer-polymer attractive strength, as perturbed by different stimuli. The thesis constitutes a systematic effort towards elucidating the role of the strength and nature of different tracer-polymer interactions, on tracer mobilities; it outlines that interactions can still be very important even in the simplified case of dilute polymer solutions; it also demonstrates that the presence of permanent crosslinks exerts distinct tracer slowdown, depending on the tracer type and the nature of the tracer-polymer interactions, expressed differently by each tracer with regard to the selected stimulus. In aqueous polymer solutions, the tracer slowdown is found to be system-dependent and no universal trend seems to hold, in contrast to predictions from scaling theory for non-interacting nanoparticle mobility and empirical relations concerning the mesh size in polymer solutions. Complex tracer dynamics in polymer networks may be distinctly expressed by FCS, depending on the specific synergy among-at least some of - the following parameters: nature of interactions, external stimuli employed, tracer size and type, crosslink density and swelling ratio.

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