4 resultados para DISAPPEARANCE

em Corvinus Research Archive - The institutional repository for the Corvinus University of Budapest


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A kommunizmusnak – vagy amit a XX. században annak neveztek – a fasizmus nem elfogadható alternatívája. Az elmúlt húsz év meghatározó ideológiai áramlata, a neoliberalizmus ezt nem értette meg. A baloldallal szemben túlzott mértékben lépett fel, míg ezzel szemben a jobboldali szélsőségnek jelentős teret engedett. A szélsőjobboldali szemlélet, az anakronisztikus, barbár provincializmus felszámolásához szükség van a nyugati típusú konzervativizmus és a szociáldemokrácia együttműködésére, a két elméleti irányzat partneri viszonyára. Ehhez mindenekelőtt a neoliberalizmus elméleti meghaladására van szükség. A tanulmányban ezért a neoliberalizmus meghatározó tételeinek kritikáját végezzük el annak érdekében, hogy az új világrendhez igazodó elméleti keret kialakulásához hozzájáruljunk. _____ The acceptable alternative of communism, or what it had been called in the 20th century, is not fascism. The mainstream in the ideology of the last couple of decades, neo-liberalism, has not understood this statement. It allows too wide range for the extremists in the far right; however, in the other side it was too rigid with the left. To terminate the barbarian, anachronistic provincialism in the far right, cooperation between the neo-conservativism prevailing in the West and the social democrat movement is needed. The partnership between the two streams is inevitable. In order to achieve this goal the first step is the debate with the theoretical background of the neo-liberal way of thinking. The main purpose of this paper is to start this discussion hoping that we can contribute to the new theoretical framework in the social sciences.

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Climate change has a great impact on the build and the work of natural ecosystems. Disappearance of some population or growth of the number in some species can be already caused by little change in temperature. A Theoretical Ecosystem Growth Model was investigated in order to examine the effects of various climate patterns on the ecological equilibrium. The answers of the ecosystems which are given to the climate change could be described by means of global climate modelling and dynamic vegetation models. The examination of the operation of the ecosystems is only possible in huge centres on supercomputers because of the number and the complexity of the calculation. The number of the calculation could be decreased to the level of a PC by considering the temperature and the reproduction during the modelling of a theoretical ecosystem and several important theoretical questions could be answered.

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Climate change has a great impact on the build and the work of natural ecosystems. Disappearance of some population or growth of the number in some species can be already caused by little change in temperature. A Theoretical Ecosystem Growth Model was investigated in order to examine the effects of various climate patterns on the ecological equilibrium. This paper examines the diversity of a theoretical ecosystem on the grounds of changing in temperature-climate patterns. Simulations were made from the simplest case to the more complex exercise to explain harder questions. Daily temperature values were calculated according to various functions. The effect of existing climate patterns (historical or future daily temperatures) was analysed where temperature values were from various climatic zones. In this paper it is examined what kind of environmental conditions result larger diversity related to the velocity of reproduction.

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Climate change has serious effects on the setting up and the operation of natural ecosystems. Small increase in temperature could cause rise in the amount of some species or potential disappearance of others. During our researches, the dispersion of the species and biomass production of a theoretical ecosystem were examined on the effect of the temperature–climate change. The answers of the ecosystems which are given to the climate change could be described by means of global climate modelling and dynamic vegetation models. The examination of the operation of the ecosystems is only possible in huge centres on supercomputers because of the number and the complexity of the calculation. The number of the calculation could be decreased to the level of a PC by considering the temperature and the reproduction during modelling a theoretical ecosystem, and several important theoretical questions could be answered.