3 resultados para work process
em Universitätsbibliothek Kassel, Universität Kassel, Germany
Resumo:
Die Unternehmensumwelt wird zunehmend von dynamischen Veränderungen und Turbulenzen geprägt. Globalisierung der Märkte und schneller wechselnde Umfeldveränderungen zwingen die Unternehmen dazu, ihr strategisches Verhalten ständig an neue Bedingungen anzupassen. Ein vorausschauendes Denken und Handeln wird immer notwendiger, da in vielen Branchen Produkte und Dienstleistungen in wesentlich kürzeren Zeitabständen als bisher durch Neue ersetzt werden. Um das unternehmerische Umfeld im Blick zu haben und über Pläne, Leistungen und Kompetenzen der Konkurrenten und Kunden über Marktveränderungen und technische Neuerungen etc. aktuell und vorausschauend informiert zu sein, wird ein intelligentes, systematisches Vorgehen bei der Informationsversorgung mit Umfeldinformationen benötigt. Die Dissertation befasst sich mit der Entwicklung, Implementierung und Untersuchung eines Softwareinstrumentes und systematischen Arbeitsprozesses, um die Versorgung von Managern und Mitarbeitern mit Umfeldinformationen (externen Informationen) zu verbessern um aufkommende Chancen und/oder Risiken frühzeitig zu erkennen. Der Schwerpunkt der Arbeit bezieht sich hauptsächlich auf die Phase der Informationsbereitstellung (Beschaffung, Verarbeitung und Präsentation) und dem Abruf der Umfeldinformationen durch die Manager und Mitarbeiter. Das entwickelte Softwareinstrument und die Arbeitsabläufe werden in drei Untersuchungsfirmen implementiert und evaluiert. Über eine schriftliche Befragung soll der Zustand vor Einführung des Softwareinstrumentes und Arbeitsabläufen und ein Jahr danach erfasst werden. Zur Ergänzung der Ergebnisse der schriftlichen Erhebung werden zusätzlich leitfadengestützte Einzelinterviews durchgeführt werden. Spezielle Auswertungen der Systemzugriffe sollen Aufschluss über den Nutzungsumfang und -häufigkeit im Zeitablauf geben. Über eine sukzessive Optimierung der Software und Arbeitsabläufe werden abschließend ein überarbeitetes Softwareinstrument sowie angepasste Arbeitsabläufe und ein Einführungsverfahren vorgestellt.
Resumo:
At present, a fraction of 0.1 - 0.2% of the patients undergoing surgery become aware during the process. The situation is referred to as anesthesia awareness and is obviously very traumatic for the person experiencing it. The reason for its occurrence is mostly an insufficient dosage of the narcotic Propofol combined with the incapability of the technology monitoring the depth of the patient’s anesthetic state to notice the patient becoming aware. A solution can be a highly sensitive and selective real time monitoring device for Propofol based on optical absorption spectroscopy. Its working principle has been postulated by Prof. Dr. habil. H. Hillmer and formulated in DE10 2004 037 519 B4, filed on Aug 30th, 2004. It consists of the exploitation of Intra Cavity Absorption effects in a two mode laser system. In this Dissertation, a two mode external cavity semiconductor laser, which has been developed previously to this work is enhanced and optimized to a functional sensor. Enhancements include the implementation of variable couplers into the system and the implementation of a collimator arrangement into which samples can be introduced. A sample holder and cells are developed and characterized with a focus on compatibility with the measurement approach. Further optimization concerns the overall performance of the system: scattering sources are reduced by re-splicing all fiber-to-fiber connections, parasitic cavities are eliminated by suppressing the Fresnel reflexes of all one fiber ends by means of optical isolators and wavelength stability of the system is improved by the implementation of thermal insulation to the Fiber Bragg Gratings (FBG). The final laser sensor is characterized in detail thermally and optically. Two separate modes are obtained at 1542.0 and 1542.5 nm, tunable in a range of 1nm each. Mode Full Width at Half Maximum (FWHM) is 0.06nm and Signal to Noise Ratio (SNR) is as high as 55 dB. Independent of tuning the two modes of the system can always be equalized in intensity, which is important as the delicacy of the intensity equilibrium is one of the main sensitivity enhancing effects formulated in DE10 2004 037 519 B4. For the proof of concept (POC) measurements the target substance Propofol is diluted in the solvents Acetone and DiChloroMethane (DCM), which have been investigated for compatibility with Propofol beforehand. Eight measurement series (two solvents, two cell lengths and two different mode spacings) are taken, which draw a uniform picture: mode intensity ratio responds linearly to an increase of Propofol in all cases. The slope of the linear response indicates the sensitivity of the system. The eight series are split up into two groups: measurements taken in long cells and measurements taken in short cells.
Resumo:
The ordered nano-structured surfaces, like self-assembled monolayers (SAMs) are of a great scientific interest, due to the low cost, simplicity, and versatility of this method. SAMs found numerous of applications in molecular electronics, biochemistry and optical devices. Phthalocyanine (Pc) complexes are of particular interest for the SAM preparation. These molecules exhibit fascinating physical properties and are chemically and thermally stable. Moreover their complex structure is advantageous for the fabrication of switchable surfaces. In this work the adsorption process of Pcs derivatives, namely, subphthalocyanines (SubPcB) and terbium (2TbPc) sandwich complexes on gold has been investigated. The influence of the molecular concentration, chain length of peripheral groups, and temperature on the film formation process has been examined using a number of techniques. The SAMs formation process has been followed in situ and in real time by means of second harmonic generation (SHG) and surface plasmon resonance (SPR) spectroscopy. To investigate the quality of the SAMs prepared at different temperatures atomic force microscopy (AFM) and X-Ray photoelectron spectroscopy (XPS)measurements were performed. Valuable information about SubPcB and 2TbPc adsorbtion process has been obtained in the frame of this work. The kinetic data, obtained with SHG and SPR, shows the best conformance with the first order Langmuir kinetic model. Comparing SHG and SPR results, it has been found, that the film formation occurs faster than the formation of chemical bonds. Such, the maximum amount of molecules on the surface is reached after 6 min for SubPcB and 30 min for 2TbPc. However, at this time the amount of formed chemicals bonds is only 10% and 40% for SubPcB and 2TbPc, respectively. The most intriguing result, among others, was obtained at T = 2 °C, where the formation of the less dense SAMs have been detected with SHG.However, analyzing XPS and AFM data, it has been revealed, that there is the same amount of molecules on the surface at both temperature T = 2 °C, and T = 21 °C, but the amount of formed chemicals bond is different. At T = 2 °C molecules form aggregates, therefore many of available anchor groups stay unattached.