994 resultados para Einstein, Albert 1879-1955. Retratos


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This dissertation investigates the atomic power solution in Finland between 1955 - 1970. During these years a national arrangement for atomic energy technology evolved. The foundations of the Finnish atomic energy policy; the creation of basic legislation and the first governmental bodies, were laid between 1955 - 1965. In the late 1960's, the necessary technological and political decisions were made in order to purchase the first commercial nuclear reactor. A historical narration of this process is seen in the international context of "atoms for peace" policies and Cold War history in general. The geopolitical position of Finland made it necessary to become involved in the balanced participation in international scientific-technical exchange and assistive nuclear programs. The Paris Peace Treaty of 1947 categorically denied Finland acquisition of nuclear weapons. Accordingly, from the "Geneva year" of 1955, the emphasis was placed on peaceful purposes for atomic energy as well as on the education of national professionals in Finland. An initiative for the governmental atomic energy commission came from academia but the ultimate motive behind it was an anticipated structural change in the supply of national energy. Economically exploitable hydro power resources were expected to be built within ten years and atomic power was seen as a promising and complementing new energy technology. While importing fuels like coal was out of the question, because of scarce foreign currency, domestic uranium mineral deposits were considered as a potential source of nuclear fuel. Nevertheless, even then nuclear energy was regarded as just one of the possible future energy options. In the mid-1960 s a bandwagon effect of light water reactor orders was witnessed in the United States and soon elsewhere in the world. In Finland, two separate invitations for bids for nuclear reactors were initiated. This study explores at length both their preceding grounds and later phases. An explanation is given that the parallel, independent and nearly identical tenders reflected a post-war ideological rivalry between the state-owned utility Imatran Voima and private energy utilities. A private sector nuclear power association Voimayhdistys Ydin represented energy intensive paper and pulp industries and wanted to have free choice instead of being associated themselves with "the state monopoly" in energy pricing. As a background to this, a decisive change had started to happen within Finnish energy policy: private and municipal big thermal power plants became incorporated into the national hydro power production system. A characteristic phenomenon in the later history is the Soviet Union s effort to bid for the tender of Imatran Voima. A nuclear superpower was willing to take part in competition but not on a turnkey basis as Imatran Voima had presumed. As a result of many political turns and four years of negotiations the first Finnish commercial light water reactor was ordered from the East. Soon after this the private nuclear power group ordered its reactors from Sweden. This work interprets this as a reasonable geopolitical balance in choosing politically sensitive technology. Conceptually, social and political dimensions of new technology are emphasised. Negotiations on the Finnish atomic energy program are viewed as a cooperation and a struggle, where state-oriented and private-oriented regimes pose their own macro level views and goals (technopolitical imaginaries) and defend and advance their plans and practical modes of action (schemata). Here, not only technologists but even political actors are seen to contribute to technopolitical realisations.

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Tässä pro gradu -tutkimuksessa tutkin kätilötyön rakentumista Suomessa vuosina 1879 - 1920 Hämeenlinnan lääkäripiirin näkökulmasta. Analysoin vuoden 1879 kätilöohjesäännön tuomien muutosten sekä valtion organisaatioiden, lääkäreiden ja kunnallistason määräysten merkitystä kätilötoiminnalle ja kätilöille. Tutkimuksen ajallinen rajaus, 1879 - 1920, juontuu Keisarillisen Majesteetin vuonna 1879 antamasta kätilöohjesäännöstä, joka oli toimintaa ohjaavana lainsäädäntönä voimassa vuoteen 1920. Tutkin tässä työssä kätilötyötä kahdessa tasossa, mikrohistoriallisesti ja yleisellä tasolla. Tutkimusmenetelmänä sovellan kvalitatiivista ja kvantitatiivista menetelmää. Tutkimuksen teoreettisena kehyksenä toimii soveltavin osin Michel Foucault'n teoria biovallasta. Kätilöiden puutteeseen maalaiskunnissa oli pyritty vaikuttamaan vuoden 1859 kätilöohjesäännöllä. Käytännön muutoksia ei tapahtunut ja vuonna 1879 hyväksyttiin uusi kätilöohjesääntö. Uusi ohjesääntö oli valtion hallinnon ja lääkäreiden yhteistoiminnan tulos. Sen sanoma oli ohjaavaa, mutta ei pakottavaa. Lakiuudistuksella pyrittiin vaikuttamaan kuntiin ja kuntien kautta kansalaisten toimintaan. Haluttiin muokata ihmisten käyttäytymistapoja normalisoimalla kätilöhoitoinen synnytys. Kätilöohjesäännön voimaantulo ja vuodet 1879 - 1920 voidaan nähdä käännekohtana kätilötyössä. Tutkimusperiodin aikana kätilötyö alkoi saada itsenäisen ammattikunnan piirteitä selvemmin. Rahan rooli oli monessa suhteessa merkittävä, sillä elatuksen lisäksi raha vaikutti kätilön asemaan ja arvostukseen. Kunnan päättäjät olivat merkittävässä valtaapitävässä asemassa, koska heillä oli päätösvalta kätilön palkkaamisessa ja työn ehdoissa. Kunnissa, joissa kätilöä arvostettiin, maksettiin paremmin ja kuntalaiset tukeutuivat koulutettuun apuun enemmän. Tutkimusaikana kätilöiden olosuhteet kunnissa olivat haasteelliset eikä laki rajoittanut synnytyksen avustajaa, joten kätilöhoitoisissa synnytyksissä tapahtunut kasvu oli kätilöiden melko pyytettömän työn tulosta. Haluttiin muutakin kun käyttää valtaa.

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The breakdown of the Stokes-Einstein (SE) relation between diffusivity and viscosity at low temperatures is considered to be one of the hallmarks of glassy dynamics in liquids. Theoretical analyses relate this breakdown with the presence of heterogeneous dynamics, and by extension, with the fragility of glass formers. We perform an investigation of the breakdown of the SE relation in 2, 3, and 4 dimensions in order to understand these interrelations. Results from simulations of model glass formers show that the degree of the breakdown of the SE relation decreases with increasing spatial dimensionality. The breakdown itself can be rationalized via the difference between the activation free energies for diffusivity and viscosity (or relaxation times) in the Adam-Gibbs relation in three and four dimensions. The behavior in two dimensions also can be understood in terms of a generalized Adam-Gibbs relation that is observed in previous work. We calculate various measures of heterogeneity of dynamics and find that the degree of the SE breakdown and measures of heterogeneity of dynamics are generally well correlated but with some exceptions. The two-dimensional systems we study show deviations from the pattern of behavior of the three-and four-dimensional systems both at high and low temperatures. The fragility of the studied liquids is found to increase with spatial dimensionality, contrary to the expectation based on the association of fragility with heterogeneous dynamics.

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We theoretically explore the annihilation of vortex dipoles, generated when an obstacle moves through an oblate Bose-Einstein condensate, and examine the energetics of the annihilation event. We show that the grey soliton, which results from the vortex dipole annihilation, is lower in energy than the vortex dipole. We also investigate the annihilation events numerically and observe that annihilation occurs only when the vortex dipole overtakes the obstacle and comes closer than the coherence length. Furthermore, we find that noise reduces the probability of annihilation events. This may explain the lack of annihilation events in experimental realizations.

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We study the dynamics of a single vortex and a pair of vortices in quasi two-dimensional Bose-Einstein condensates at finite temperatures. To this end, we use the stochastic Gross-Pitaevskii equation, which is the Langevin equation for the Bose-Einstein condensate. For a pair of vortices, we study the dynamics of both the vortex-vortex and vortex-antivortex pairs, which are generated by rotating the trap and moving the Gaussian obstacle potential, respectively. Due to thermal fluctuations, the constituent vortices are not symmetrically generated with respect to each other at finite temperatures. This initial asymmetry coupled with the presence of random thermal fluctuations in the system can lead to different decay rates for the component vortices of the pair, especially in the case of two corotating vortices.

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We study the merging and splitting of quasi-two-dimensional Bose-Einstein condensates with strong dipolar interactions. We observe that if the dipoles have a non-zero component in the plane of the condensate, the dynamics of merging or splitting along two orthogonal directions, parallel and perpendicular to the projection of dipoles on the plane of the condensate, are different. The anisotropic merging and splitting of the condensate is a manifestation of the anisotropy of the roton-like mode in the dipolar system. The difference in dynamics disappears if the dipoles are oriented at right angles to the plane of the condensate as in this case the Bogoliubov dispersion, despite having roton-like features, is isotropic.

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The history of computing in India is inextricably intertwined with two interacting forces: the political climate determined by the political party in power) and the government policies mainly driven by the technocrats and bureaucrats who acted within the boundaries drawn by the political party in power. There were four break points (which occurred in 1970, 1978, 1991 and 1998) that changed the direction of the development of computers and their applications. This article explains why these breaks occurred and how they affected the history of computing in India.

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We study motion around a static Einstein and pure Lovelock black hole in higher dimensions. It is known that in higher dimensions bound orbits exist only for a pure Lovelock black hole in all even dimensions, D = 2N + 2, where N is the degree of Lovelock polynomial action. In particular, we compute periastron shift and light bending, and the latter is given by one of the transverse spatial components of the Riemann curvature tensor. We also consider the pseudo-Newtonian potentials and Kruskal coordinates.

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We explore the effect of modification to Einstein's gravity in white dwarfs for the first time in the literature, to the best of our knowledge. This leads to significantly sub- and super-Chandrasekhar limiting masses of white dwarfs, determined by a single model parameter. On the other hand, type Ia supernovae (SNeIa), a key to unravel the evolutionary history of the universe, are believed to be triggered in white dwarfs having mass close to the Chandrasekhar limit. However, observations of several peculiar, under- and over-luminous SNeIa argue for exploding masses widely different from this limit. We argue that explosions of the modified gravity induced sub- and super-Chandrasekhar limiting mass white dwarfs result in under- and over-luminous SNeIa respectively, thus unifying these two apparently disjoint sub-classes and, hence, serving as a missing link. Our discovery raises two fundamental questions. Is the Chandrasekhar limit unique? Is Einstein's gravity the ultimate theory for understanding astronomical phenomena? Both the answers appear to be no!

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We establish the importance of modified Einstein's gravity (MG) in white dwarfs (WDs) for the first time in the literature. We show that MG leads to significantly sub- and super-Chandrasekhar limiting mass WDs, depending on a single model parameter. However, conventional WDs on approaching Chandrasekhar's limit are expected to trigger Type Ia supernovae (SNeIa), a key to unravel the evolutionary history of the universe. Nevertheless, observations of several peculiar, under-and over-luminous SNeIa argue for the limiting mass widely different from Chandrasekhar's limit. Explosions of MG induced sub-and super-Chandrasekhar limiting mass WDs explain under-and over-luminous SNeIa respectively, thus unifying these two apparently disjoint sub-classes. Our discovery questions both the global validity of Einstein's gravity and the uniqueness of Chandrasekhar's limit.

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Desde los tiempos de la conquista en el Río de la Plata, la mujer blanca ha sido prenda de interés para las culturas indígenas. La primera crónica “La Argentina manuscrita”, de Ruy Díaz de Guzmán en el siglo XVII, estaba protagonizada por la cautiva española Lucía Miranda, tomada por la fuerza como esposa por el cacique thimbu Siripo. El despecho del cacique frente al rechazo de Lucía, desencadenó la destrucción del fuerte de Sancti Spiritu.1 En 1798, José de Lavardén pondrá el drama en escena teatral en “Siripo”, nuestra primera obra de teatro nacional.2 El drama de Lucía Miranda, de endeble fundamento histórico, persistió como mito, constituyéndose la cautiva, en un símbolo nacional.