6 resultados para ordinary and universal block kriging

em Doria (National Library of Finland DSpace Services) - National Library of Finland, Finland


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Bioprocess technology is a multidisciplinary industry that combines knowledge of biology and chemistry with process engineering. It is a growing industry because its applications have an important role in the food, pharmaceutical, diagnostics and chemical industries. In addition, the current pressure to decrease our dependence on fossil fuels motivates new, innovative research in the replacement of petrochemical products. Bioprocesses are processes that utilize cells and/or their components in the production of desired products. Bioprocesses are already used to produce fuels and chemicals, especially ethanol and building-block chemicals such as carboxylic acids. In order to enable more efficient, sustainable and economically feasible bioprocesses, the raw materials must be cheap and the bioprocesses must be operated at optimal conditions. It is essential to measure different parameters that provide information about the process conditions and the main critical process parameters including cell density, substrate concentrations and products. In addition to offline analysis methods, online monitoring tools are becoming increasingly important in the optimization of bioprocesses. Capillary electrophoresis (CE) is a versatile analysis technique with no limitations concerning polar solvents, analytes or samples. Its resolution and efficiency are high in optimized methods creating a great potential for rapid detection and quantification. This work demonstrates the potential and possibilities of CE as a versatile bioprocess monitoring tool. As a part of this study a commercial CE device was modified for use as an online analysis tool for automated monitoring. The work describes three offline CE analysis methods for the determination of carboxylic, phenolic and amino acids that are present in bioprocesses, and an online CE analysis method for the monitoring of carboxylic acid production during bioprocesses. The detection methods were indirect and direct UV, and laser-induced frescence. The results of this work can be used for the optimization of bioprocess conditions, for the development of more robust and tolerant microorganisms, and to study the dynamics of bioprocesses.

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Tutkin väitöskirjassani Eira Stenbergin (s. 1943) romaanituotannon moniäänisyyttä, joka liittyy niin subjektiin, kertomisen prosessiin kuin todellisuuskäsityksiin. Aineistonani ovat Stenbergin 1980–1990-luvulla kirjoittamat, tutkimusongelmani kannalta keskeiseen ajanjaksoon kuuluvat romaanit Paratiisin vangit (1984), Häikäisy (1987), Kuun puutarhat (1990) sekä Gulliverin tytär (1993). 1980-luvulla postmodernista tuli kirjallisen kulttuurin keskeisimpiä aiheita Suomessa, ja subjektista tuli ongelma jopa siinä määrin että puhuttiin sen kuolemasta. Ääni oli 1980-luvulla osa subjektia koskevaa keskustelua: yhtäältä nousevan feministisen liikkeen identiteettipoliittisena ja emansipatorisena metaforana, toisaalta jälkistrukturalismin antihumanismin uhkakuvana, joka koski subjektin ääntä alkuperän lähteenä ja persoonan ilmaisuna. Äänen käsitteen voidaan katsoa implikoivan jonkinlaista käsitystä subjektista, ja tarkastelenkin tutkimuksessani erityisesti henkilöhahmoja, kertojia ja kertomisen prosessia, mutta myös tekijän suunnitelmallisuutta ja kuulijaa kohti orientoitumista. Yhdistelen tutkimuksessani retorista kertomuksen teoriaa dekonstruktioon sekä feministisiin subjektiteorioihin. Myös Mihail Bahtinin käsitys moniäänisestä romaanista on työssäni keskeinen. Problematisoin tutkimuksessani äänen kytköksen sisimmän ilmaisuun, omistamiseen ja auktoriteettiin ja ymmärrän sen keskustelualueena, jossa kohtaavat erilaiset arvot ja näkemykset maailmasta. Tällöin kaikenkattava puhe subjektin kuolemasta sekä käsitykset 1980-luvun kirjallisuudesta maailmasta vieraantuneena ja yksityisen alueelle vetäytyvänä problematisoituvat. Stenbergin tuotannon perusteella voi sanoa, että kirjallisuuden äänet saavat merkityksensä vasta erilaisina äänensävyinä konkreettisissa ja ainutkertaisissa konteksteissa. Tämä viittaa tarpeeseen ymmärtää kirjallisuusteoreettisessa keskustelussa usein historiattomana ja universaalina nähty käsite historiaan paikantuneena: eivät vain erityiset aineistot, vaan myös erityiset kontekstit määrittelevät äänen saamia merkityksiä.

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This caring science study explores ‘Will’ as an ontological concept. The aim is to deepen the understanding of the essence of Will, and to highlight the manifestations of Will and how Will becomes evident in clinical caring. Will is ontological and universal. Will is connected with the essence of the human being, and manifests in the human being as will. The approach is inspired by Gadamer’s philosophical hermeneutics. The study’s horizon of understanding consists of Eriksson’s caritative theory and the caring science-tradition. The study’s research questions are as follows: What is the essence of Will? What are its manifestations? How does Will become evident in clinical caring? The hermeneutic interpretative movement is initiated by the material, which consists of the philosopher Arthur Schopenhauer’s texts, letters from experts and dictionaries. Meaning-bearing substance fragments in the material are intertwined with the original horizon of understanding through hermeneutical reading, hermeneutical interpretation and concept analysis in an oscillating interpretive movement. An abstraction occurs when the new substance is illuminated by the caring science ontology. The oscillating interpretive movement results in a reinterpreted horizon of understanding, which in turn provides the findings of the study. The reinterpreted horizon of understanding is presented in the form of a theoretical model and abductive theses. The essence of Will is represented in the theoretical model as the lifeaffirming and the loving force. Life and love are Will’s origin and destination. Will’s manifestations (its diversity) hold conditions and chance occurrences that obstruct Will. Hence the will of the human being does not necessarily appear in a way that is in tune with ontological Will. Will represents the lifeblood of ethos, and in this lifeblood love flows. Will acts by virtue of itself, and gives ethos its force. Will manifests in a way that ethos can affirm. When Will is affected by caring its force is active in the service of life and love. Being a caregiver entails acting as a world-eye, which means recognizing Will in diversity. For caregivers, being a world-eye means observing fragments of Will as it manifests in its original form in the real reality, and acting as the mirror of life. The human being who is able to perceive the fundamental values of life and to live according to these has understood the laws of life and entered upon the human calling. The human being then lives according to the fundamental order and has found a home in life.

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Supernova (SN) is an explosion of a star at the end of its lifetime. SNe are classified to two types, namely type I and II through the optical spectra. They have been categorised based on their explosion mechanism, to core collapse supernovae (CCSNe) and thermonuclear supernovae. The CCSNe group which includes types IIP, IIn, IIL, IIb, Ib, and Ic are produced when a massive star with initial mass more than 8 M⊙ explodes due to a collapse of its iron core. On the other hand, thermonuclear SNe originate from white dwarfs (WDs) made of carbon and oxygen, in a binary system. Infrared astronomy covers observations of astronomical objects in infrared radiation. The infrared sky is not completely dark and it is variable. Observations of SNe in the infrared give different information than optical observations. Data reduction is required to correct raw data from for example unusable pixels and sky background. In this project, the NOTCam package in the IRAF was used for the data reduction. For measuring magnitudes of SNe, the aperture photometry method with the Gaia program was used. In this Master’s thesis, near-infrared (NIR) observations of three supernovae of type IIn (namely LSQ13zm, SN 2009ip and SN2011jb), one type IIb (SN2012ey), in addition to one type Ic (SN2012ej) and type IIP (SN 2013gd) are studied with emphasis on luminosity and colour evolution. All observations were done with the Nordic Optical Telescope (NOT). Here, we used the classification by Mattila & Meikle (2001) [76], where the SNe are differentiated by the infrared light curves into two groups, namely ’ordinaryand ’slowly declining’. The light curves and colour evolution of these supernovae were obtained in J, H and Ks bands. In this study, our data, combined with other observations, provide evidence to categorize LSQ13zm, SN 2012ej and SN 2012ey as being part of the ordinary type. We found interesting NIR behaviour of SN 2011jb, which lead it to be classified as a slowly declining type.

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In wireless communications the transmitted signals may be affected by noise. The receiver must decode the received message, which can be mathematically modelled as a search for the closest lattice point to a given vector. This problem is known to be NP-hard in general, but for communications applications there exist algorithms that, for a certain range of system parameters, offer polynomial expected complexity. The purpose of the thesis is to study the sphere decoding algorithm introduced in the article On Maximum-Likelihood Detection and the Search for the Closest Lattice Point, which was published by M.O. Damen, H. El Gamal and G. Caire in 2003. We concentrate especially on its computational complexity when used in space–time coding. Computer simulations are used to study how different system parameters affect the computational complexity of the algorithm. The aim is to find ways to improve the algorithm from the complexity point of view. The main contribution of the thesis is the construction of two new modifications to the sphere decoding algorithm, which are shown to perform faster than the original algorithm within a range of system parameters.

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Kirjallisuusarvostelu