971 resultados para King, Martin Luther, Jr., 1929-1968


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Jeremiah, the prophet of Israel.--The Buddha, the prince of mysticism.--Socrates, the champion of intellectual piety.--Jesus, the preacher of the kingdom of God.--St. Paul, the apostle of a universal religion.--Marcus Aurelius, the philosopher of a dying world.--Augustine, the schoolmaster of the middle ages.--Mohammed, the revivalist of Semitism.--Martin Luther, and the dawn of the modern age.

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"Reference books" : p. 360-362.

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Includes index.

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Seated left to right: John L. Lewis, Murphy, Walter Chrysler, Dewey. Standing left to right: Homer Martin, Richard Frankensteen, Lee Pressman, K. T. Keller, Herman Weckler

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Publisher's advertisements follow text.

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Esta pesquisa procura entender o pensamento de Agostinho de Hipona e de Martinho Lutero, especificamente, no que concerne a suas obras que abordam a temática da ética e da política. Particularmente, a compreensão das metáforas da Cidade de Deus e Cidade dos Homens em Agostinho, e a recepção e ressignifição efetuada por Lutero e a construção de suas metáforas dos Dois Reinos, ou Dois Regimentos, é foco central desta dissertação. Para tal, será usa-da a concepção do filósofo contemporâneo Paul Ricoeur e seu entendimento do papel da metáfora. Para articular estas ideias será necessário pensar e expor as ideias agostinianas sobre sua Teologia da História. Após este momento, estuda-se duas doutrinas que são fundamentais para o pensamento teológico do refor-mador alemão: a questão sobre a Justificação pela Fé e a integração com as Bo-as Obras. O estudo do pensamento destes autores terá como objetivo dialogar dois pensadores cristãos que continuam sendo usados até os dias atuais pelas igrejas, buscando perceber as oportunidades e limitações que suas reflexões podem trazer para a prática da igreja atual. Para que ela seja atuante e relevante para a construção de uma sociedade mais justa, fraterna e marcada pe-los valores de Cristo, tendo o amor como sua base sustentadora.

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We measured light absorption in 42 marine snow, sea ice, seawater, brine, and frost flower samples collected during the OASIS field campaign between February 27 and April 15, 2009. Samples represented multiple sites between landfast ice and open pack ice in coastal areas approximately 5 km west of Barrow, Alaska. The chromophores that are most commonly measured in snow, H2O2, NO3-, and NO2-, on average account for less than 1% of sunlight absorption in our samples. Instead, light absorption is dominated by unidentified "residual" species, likely organic compounds. Light absorption coefficients for the frost flowers on first-year sea ice are, on average, 40 times larger than values for terrestrial snow samples at Barrow, suggesting very large rates of photochemical reactions in frost flowers. For our marine samples the calculated rates of sunlight absorption and OH production from known chromophores are (0.1-1.4) x 10**14 (photons/cm**3/s) and (5-70) x 10**-12 (mol/L/s), respectively. Our residual spectra are similar to spectra of marine chromophoric dissolved organic matter (CDOM), suggesting that CDOM is the dominant chromophore in our samples. Based on our light absorption measurements we estimate dissolved organic carbon (DOC) concentrations in Barrow seawater and frost flowers as approximately 130 and 360 µM C, respectively. We expect that CDOM is a major source of OH in our marine samples, and it is likely to have other significant photochemistry as well.

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Control of the collective response of plasma particles to intense laser light is intrinsic to relativistic optics, the development of compact laser-driven particle and radiation sources, as well as investigations of some laboratory astrophysics phenomena. We recently demonstrated that a relativistic plasma aperture produced in an ultra-thin foil at the focus of intense laser radiation can induce diffraction, enabling polarization-based control of the collective motion of plasma electrons. Here we show that under these conditions the electron dynamics are mapped into the beam of protons accelerated via strong charge-separation-induced electrostatic fields. It is demonstrated experimentally and numerically via 3D particle-in-cell simulations that the degree of ellipticity of the laser polarization strongly influences the spatial-intensity distribution of the beam of multi-MeV protons. The influence on both sheath-accelerated and radiation pressure-accelerated protons is investigated. This approach opens up a potential new route to control laser-driven ion sources.

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