9 resultados para subgame-perfect equilibrium.
em Doria (National Library of Finland DSpace Services) - National Library of Finland, Finland
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Selostus: Pellavan ja kuituhampun korren jakeiden tasapainokosteus
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Abstract
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Mainonnalla ei myydä kuluttajille ainoastaan tuotteita ja palveluita vaan myös kuvaa täydellisestä elämästä. Lapsen saaminen on suuri muutos elämässä ja tällaisessa muutosvaiheessa ihminen voi olla altis sille, kuinka vanhemmuus esitetään mainoksissa. Mainonta rakentaa osaltaan versiota todellisuudesta uusille vanhemmille. Tämän tutkimuksen tarkoitus on selvittää, kuinka vanhemmuutta kuvataan mainonnassa. Mainokset 24:stä kahden eri pienten lasten vanhemmille suunnatun aikakauslehden numerosta tutkittiin. Näistä 71 mainoksen lopullista otantaa tarkasteltiin tarkemmin. Vanhemmuuden kuvaa tutkittiin sisältöanalyysin ja diskurssianalyysin avulla. Mainonnan elementtejä ja sukupuolien esittämisen eroja tarkasteltiin. Tutkimuksen vahvistamiseksi seitsemää mainonnan kohderyhmään kuuluvaa pienten lasten vanhempaa haastateltiin ja haastateltavien mielikuvaa vanhemmuuden esittämisestä verrattiin mainontaan. Mainoksista löydettiin kuusi eri vanhemmuuden diskurssia. Täydellisen vanhemman kuva rakentui melko kapeaksi, sillä suurin osa vanhemmista mainoksissa kuului samaan ikäluokkaan, oli ulkonäöltään samankaltaisia ja teki samoja asioita. Äidit dominoivat mainontaa selvästi ja sukupuoliroolien erot olivat selviä. Vanhemmille suunnattu mainonta luottaa vahvasti kuviin lapsista ja vaarana onkin, ettei mainonta erotu journalistisesta sisällöstä vanhemmuutta käsittelevissä aikakauslehdissä.
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A trade-off between return and risk plays a central role in financial economics. The intertemporal capital asset pricing model (ICAPM) proposed by Merton (1973) provides a neoclassical theory for expected returns on risky assets. The model assumes that risk-averse investors (seeking to maximize their expected utility of lifetime consumption) demand compensation for bearing systematic market risk and the risk of unfavorable shifts in the investment opportunity set. Although the ICAPM postulates a positive relation between the conditional expected market return and its conditional variance, the empirical evidence on the sign of the risk-return trade-off is conflicting. In contrast, autocorrelation in stock returns is one of the most consistent and robust findings in empirical finance. While autocorrelation is often interpreted as a violation of market efficiency, it can also reflect factors such as market microstructure or time-varying risk premia. This doctoral thesis investigates a relation between the mixed risk-return trade-off results and autocorrelation in stock returns. The results suggest that, in the case of the US stock market, the relative contribution of the risk-return trade-off and autocorrelation in explaining the aggregate return fluctuates with volatility. This effect is then shown to be even more pronounced in the case of emerging stock markets. During high-volatility periods, expected returns can be described using rational (intertemporal) investors acting to maximize their expected utility. During lowvolatility periods, market-wide persistence in returns increases, leading to a failure of traditional equilibrium-model descriptions for expected returns. Consistent with this finding, traditional models yield conflicting evidence concerning the sign of the risk-return trade-off. The changing relevance of the risk-return trade-off and autocorrelation can be explained by heterogeneous agents or, more generally, by the inadequacy of the neoclassical view on asset pricing with unboundedly rational investors and perfect market efficiency. In the latter case, the empirical results imply that the neoclassical view is valid only under certain market conditions. This offers an economic explanation as to why it has been so difficult to detect a positive tradeoff between the conditional mean and variance of the aggregate stock return. The results highlight the importance, especially in the case of emerging stock markets, of noting both the risk-return trade-off and autocorrelation in applications that require estimates for expected returns.
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Mergers are often used purposeful strategic tool. Previous research has mainly concentrated on actu-al M&A process and to elements leading to that decision. Purpose of this study is to approach de-merger of Cloetta Fazer and research what were the reasons that lead to demerger. Problem is ap-proached by first evaluating was the merger an success in the first place, as described in earlier stud-ies, media and academic research. From this information the motives for demerger are approached. Research material for study is collected from second hand sources. Research data-sample was di-vided into two categories: Timeline Sample & Additional Information Sample. Timeline sample was collected by systematically collecting news from Sanoma News database and Alma News database. This data was indexed and a timeline was constructed. From this timeline key dates, themes and elements were identified and further data gathering was concentrated based on those themes. Results of the study suggest that Merger was not as great success as it was described in earlier years. Explanations why merger ended up into demerger vary greatly. From material key factor, lack of, or error in, long term strategic planning was identified. This was due to death in family during strategy creation and mistakes made in pre-merger phase.
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The steam turbines play a significant role in global power generation. Especially, research on low pressure (LP) steam turbine stages is of special importance for steam turbine man- ufactures, vendors, power plant owners and the scientific community due to their lower efficiency than the high pressure steam turbine stages. Because of condensation, the last stages of LP turbine experience irreversible thermodynamic losses, aerodynamic losses and erosion in turbine blades. Additionally, an LP steam turbine requires maintenance due to moisture generation, and therefore, it is also affecting on the turbine reliability. Therefore, the design of energy efficient LP steam turbines requires a comprehensive analysis of condensation phenomena and corresponding losses occurring in the steam tur- bine either by experiments or with numerical simulations. The aim of the present work is to apply computational fluid dynamics (CFD) to enhance the existing knowledge and understanding of condensing steam flows and loss mechanisms that occur due to the irre- versible heat and mass transfer during the condensation process in an LP steam turbine. Throughout this work, two commercial CFD codes were used to model non-equilibrium condensing steam flows. The Eulerian-Eulerian approach was utilised in which the mix- ture of vapour and liquid phases was solved by Reynolds-averaged Navier-Stokes equa- tions. The nucleation process was modelled with the classical nucleation theory, and two different droplet growth models were used to predict the droplet growth rate. The flow turbulence was solved by employing the standard k-ε and the shear stress transport k-ω turbulence models. Further, both models were modified and implemented in the CFD codes. The thermodynamic properties of vapour and liquid phases were evaluated with real gas models. In this thesis, various topics, namely the influence of real gas properties, turbulence mod- elling, unsteadiness and the blade trailing edge shape on wet-steam flows, are studied with different convergent-divergent nozzles, turbine stator cascade and 3D turbine stator-rotor stage. The simulated results of this study were evaluated and discussed together with the available experimental data in the literature. The grid independence study revealed that an adequate grid size is required to capture correct trends of condensation phenomena in LP turbine flows. The study shows that accurate real gas properties are important for the precise modelling of non-equilibrium condensing steam flows. The turbulence modelling revealed that the flow expansion and subsequently the rate of formation of liquid droplet nuclei and its growth process were affected by the turbulence modelling. The losses were rather sensitive to turbulence modelling as well. Based on the presented results, it could be observed that the correct computational prediction of wet-steam flows in the LP turbine requires the turbulence to be modelled accurately. The trailing edge shape of the LP turbine blades influenced the liquid droplet formulation, distribution and sizes, and loss generation. The study shows that the semicircular trailing edge shape predicted the smallest droplet sizes. The square trailing edge shape estimated greater losses. The analysis of steady and unsteady calculations of wet-steam flow exhibited that in unsteady simulations, the interaction of wakes in the rotor blade row affected the flow field. The flow unsteadiness influenced the nucleation and droplet growth processes due to the fluctuation in the Wilson point.