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         Schwarzschild Karl:     more books (22)
  1. Red Prussian: Life and Legend of Karl Marx by Leopold Schwarzschild, 1986-04
  2. Gesammelte Werke / Collected Works: Volume 2 (German and English Edition) (v. 2) by Karl Schwarzschild, 1992-08-10
  3. Gesammelte Werke/Collected Works (Gesammelte Werke - Collected Works) by Karl Schwarzschild, 1992-12
  4. Die Poincarésche Theorie Des Gleichgewichts Einer Homogenen Rotierenden Flüssigkeitsmasse (German Edition) by Karl Schwarzschild, 2010-03-31
  5. Die Poincaresche Theorie Des Gleichgewichts: Einer Homogenen Rotierenden Flussigkeitsmasse (1897) (German Edition) by Karl Schwarzschild, 2010-05-23
  6. Karl Marx; the Red Prussian (The Universal library) by Leopold Schwarzschild, 1964
  7. People From Hesse-Nassau: Theodor W. Adorno, Otto Hahn, Paul Hindemith, Hans-Georg Gadamer, Karl Schwarzschild, Leo Strauss, Hans Mommsen
  8. Karl Schwarzschild. by Karl (1873-1916)] PARKHURST, J.A. [SCHWARZSCHILD, 1916-01-01
  9. University of Strasbourg Alumni: Paul Ehrlich, Klemens Wenzel, Prince Von Metternich, Karl Schwarzschild, Johann Gottlob Schneider
  10. Astrophysiker: Stephen Hawking, Karl Schwarzschild, Hannes Alfvén, Harald Lesch, Thomas Gold, Walter Baade, Jacques Vallée, Erich Jantsch (German Edition)
  11. Dem Andenken Karl Schwarzschild. Reden, gehalten am Sarge anlässlich der Trauerfeiern in Potsdam und Göttingen. by Karl (1873-1916)] RUNGE, Carl David Tolmé, et al. [SCHWARZSCHILD, 1916-01-01
  12. Karl Schwarzschild Observatory
  13. Gesammelte Werke / Collected Works: Volumes 1-3 (German and English Edition) (Vol 1-3) by Karl Schwarzschild, 1998-10-15
  14. Die Poincaresche Theorie Des Gleichgewichts: Einer Homogenen Rotierenden Flussigkeitsmasse (1897) (German Edition) by Karl Schwarzschild, 2010-09-10

81. Schwarzschild
Translate this page Geral. schwarzschild. karl schwarzschild estudou em 1916 o espaçoem volta da estrela, onde o tensor momentum-energia é nulo. Neste
http://astro.if.ufrgs.br/evol/node53.htm

Tolman-Oppenheimer-Volkoff
Volta:
Schwarzschild
e
) e ( ) obtemos:
, e integrar, obtendo:
) deve ser identificada com , onde
), vemos que o intervalo de tempo da coordenada tempo representa o intervalo de tempo medido em um sistema em repouso na coordenada
Avermelhamento Gravitacional
Tolman-Oppenheimer-Volkoff Volta: user = "kepler"; site = "if.ufrgs.br"; document.write(''); document.write('Kepler de Souza Oliveira Filho' + '');
Modificada em 5 Jul 1999

82. Jhproject
singularities from forming in our Universe. schwarzschild, karl (18761916).German astrophysicist; discovered the geometry of a
http://www.physics.sfsu.edu/~lwilliam/sota/worms/Scientists.htm
S CIENTISTS
Home
Time Stars Black Holes ... Sources
I've decided to list some of the most important scientists who worked on the topics I discuss on this web site. So please take your time to read at least those few words I put together for you and please honor these men's work. And remember, they are legends...
Bardeen, James Maxwell (b. 1939)
American theoretical physicist; showed that many or most black holes in our Universe should be rapidly spinning and, with Petterson, predicted the influence of the holes' spins on surrounding accretion disks; with Carter and Hawking, discovered the four laws of black-hole mechanics.
Scroll to
"I"
Bohr, Niels Hendrik David
Danish theoretical physicist; Nobel laureate; one of the founders of quantum mechanics; mentor for many of the leading physicists of the middle twentieth century, including Lev Landau and John Wheeler; tried to save Landau from prison; with Wheeler developed the theory of nuclear fission.
Einstein, Albert

83. Schwarzschild, Karl
schwarzschild, karl. (b. Oct. 9, 1873, Frankfurt am Main, Ger.d. May11, 1916, Potsdam), German astronomer whose contributions, both
http://www.phy.bg.ac.yu/web_projects/giants/schwarzschild.html
Schwarzschild, Karl (b. Oct. 9, 1873, Frankfurt am Main, Ger.d. May 11, 1916, Potsdam), German astronomer whose contributions, both practical and theoretical, were of primary importance in the development of 20th-century astronomy. Schwarzschild enunciated the principle of radiative equilibrium and was the first to recognize clearly the role of radiative processes in the transport of heat in stellar atmospheres. His hypothesis of stellar motion is one of the most important results to come out of his fundamental work in modern statistical methods in astronomy. He also made theoretical studies of the pressure exerted on small, solid particles by radiation. Schwarzschild made fundamental contributions to theoretical physics and to relativity. He was one of the great pioneers in developing the theory of atomic spectra proposed by Niels Bohr. Independently of Arnold Sommerfeld, Schwarzschild developed the general rules of quantization, gave the complete theory of the Stark effect (the effect of an electric field on light), and initiated the quantum theory of molecular spectra. Schwarzschild gave the first exact solution of Albert Einstein's general gravitational equations, which led to a description of the geometry of space in the neighbourhood of a mass point. He also laid the foundation of the theory of black holes by using the general equations to demonstrate that bodies of sufficient mass would have an escape velocity exceeding the speed of light and, therefore, would not be directly observable.

84. Skolavpohode.cz
schwarzschild, karl (18731916) Nemecký matematik a fyzik. Studovalv Mnichove, kde se zabýval vznikem Slunecní soustavy.
http://www.skolavpohode.cz/clanek.asp?polozkaID=3919

85. Maps Of The IAU/MPC Observatory Karl Schwarzschild Observatory, Tautenburg With
Maps of the IAU/MPC observatory karl schwarzschild Observatory, Tautenburgwith the code 033. Below you will find the maps of the
http://homepages.compuserve.de/Hdd74/code/CODE-033.HTM
Maps of the IAU/MPC observatory Karl Schwarzschild Observatory, Tautenburg with the code 033 Below you will find the maps of the observatory at Karl Schwarzschild Observatory, Tautenburg with the code 033. Please take note, that the first map is the most precise and the last map the map with the most overview. Sometimes one or two maps are clear. The reason is at MapBlast, because no data for the scale are present. The map service itself is presented by MapBlast Street 1:5.000 map of Karl Schwarzschild Observatory, Tautenburg Brought to you by MapBlast! (Click on map to navigate) Village 1:20.000 map of Karl Schwarzschild Observatory, Tautenburg Brought to you by MapBlast! (Click on map to navigate) City 1:100.000 map of Karl Schwarzschild Observatory, Tautenburg Brought to you by MapBlast! (Click on map to navigate) County 1:300.000 map of Karl Schwarzschild Observatory, Tautenburg Brought to you by MapBlast! (Click on map to navigate) District 1:1.000.000 map of Karl Schwarzschild Observatory, Tautenburg Brought to you by MapBlast!

86. Le Trou Noir De Schwarzschild
karl schwarzschild a établi en 1916 un modèlede trou noir statique et uniquement défini par sa masse. Bien
http://www.astrosurf.com/trounoir/schwarzchild.html
Avec : G, constante gravitationnelle
m, masse de l'astre Rs (lune) = 2 x 6.67 x 10 x 7.4 x 10 /(2.998 x 10 (m) = 0.11 (mm

87. Encyclopedia: Karl Schwarzschild
schwarzschild y Spitzer (22/04/97) Translate this page Se podría decir que su primer mérito fue ser hijo del brillantísimo físicoy astrofísico karl schwarzschild, quién sospechó que el universo podría
http://www.nationmaster.com/encyclopedia/Karl-Schwarzschild

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    Encyclopedia : Karl Schwarzschild
    Karl Schwarzschild October 9 May 11 ) was a noted German physicist and astronomer, father of astrophysicist Martin Schwarzschild.
    He was born in Frankfurt am Main
    Something of a child prodigy he had a paper on orbits published when he was only sixteen.
    He studied at Strasbourg and Munich , obtaining his doctorate in for a work on Jules Henri Poincar 's theories.

    88. MSN Encarta - Karl Schwarzschild
    Translate this page Ya eres suscriptor? Inicia una sesión arriba. karl schwarzschild. Másinformación sobre karl schwarzschild de, Otras funciones de Encarta.
    http://es.encarta.msn.com/encyclopedia_761580124/Karl_Schwarzschild.html
    Principal Mi MSN Hotmail Buscar ... Suscribirse a MSN Encarta Premium Buscar en Encarta
    Art­culo de suscripci³n MSN Encarta Premium: Consigue este art­culo junto con 41.000 art­culos m¡s, un atlas din¡mico, diccionarios y mucho m¡s por s³lo 29,95 euros/a±o. M¡s informaci³n. Este art­culo s³lo est¡ disponible para los suscriptores de MSN Encarta Premium. ¿Ya eres suscriptor? Inicia una sesi³n arriba. Karl Schwarzschild Karl Schwarzschild (1873-1916), astr³nomo, matem¡tico y f­sico alem¡n, nacido en Frankfurt, que predijo la existencia de los agujeros negros. Sus... ¿Quieres m¡s de Encarta? Suscr­bete hoy y tendr¡s acceso a:
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    89. Karl Schwarzschild

    http://ipparco.roma1.infn.it/pagine/deposito/archivio/schwarzschild.html
    Karl Schwarzschild
    Formati: *.ps.gz (postscript), *.tex.gz (sorgenti), *.pdf.gz (pdf) Parent Directory
  • Karl Schwarzschild: ''Il campo gravitazionale di un punto materiale secondo la teoria di Einstein'' , Sitzungsberichte der Preussischen Akademie der Wissenschaften , 189-196 (1916). Traduzione di S. Antoci.
  • 90. Jahresberichte Deutscher Astronomischer Institute Für 1961 Tautenburg, Karl-Sch
    Translate this page Title Jahresberichte deutscher astronomischer Institute für 1961 Tautenburg, karl-schwarzschild-Observatoriumder Deutschen Akademie der Wissenschaften zu
    http://adsabs.harvard.edu/abs/1962MitAG..15...88.
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    Title: Journal: Mitteilungen der Astronomischen Gesellschaft, Vol. 15, p.88 Publication Date: Origin: ADS Language: German Bibliographic Code:
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    91. Introduction Aux Trous Noirs
    Translate this page s’impose parce que c’est en appliquant les équations proposées par cette théorieà une masse ultra-compacte que karl schwarzschild « découvrit » les
    http://pages.infinit.net/gafen/b_hole2_1.htm
    2.1 Introduction à la théorie de la relativité générale Pour poursuivre ma présentation, je dois m’attarder à introduire un tant soit peu la théorie d’Einstein. Cela s’impose parce que c’est en appliquant les équations proposées par cette théorie à une masse ultra-compacte que Karl Schwarzschild « découvrit » les trous noirs. Tout d’abord, il faut bien comprendre que la théorie de la relativité stipule que nous évoluons dans un univers à quatre dimensions : les trois de l’espace plus celle du temps. Chaque point de l’espace possède donc quatre coordonnées; la géométrie habituelle à trois dimensions devient invalide. Il a fallu aux mathématiciens créer de nouvelles équations pour représenter une telle géométrie. C’est Schwarzschild qui proposa en premier un modèle complet pour un champ gravitationnel extrême non rotatif. Voici l’équation en coordonnées polaires de la géométrie de Schwarzschild : où s est la longueur de translation, c la vitesse de la lumière, r la coordonnée radiale, R s le rayon de Schwarzschild, q et f les deux angles nécessaires au positionnement tridimensionnel.

    92. Encyclopedia4U - Karl Schwarzschild - Encyclopedia Article
    karl schwarzschild. This article is licensed under the GNU Free DocumentationLicense. It uses material from the Wikipedia article karl schwarzschild .
    http://www.encyclopedia4u.com/k/karl-schwarzschild.html
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    Karl Schwarzschild
    Karl Schwarzschild October 9 May 11 ) was a noted German physicist and astronomer He was born in Frankfurt am Main . Something of a child prodigy he had a paper on orbits published when he was only sixteen. He studied at Strasbourg and Munich , obtaining his doctorate in for a work on Jules Henri Poincaré 's theories. From 1897 on he worked as assistant at the Kufner Sternwarte in Vienna, where he developed a formula to calculate the properties of photographic material involving an exponent now know as the Schwarzschild-exponent (p in formula below). From until he was a professor at the prestigious institute at Göttingen , where he had the opportunity to work with some significant figures including David Hilbert and Hermann Minkowski . He moved to a post at the Astrophysical Observatory in Potsdam in . At the outbreak of war in he joined the German army serving on both the western and eastern fronts, rising to the rank of lieutenant in the artillery. While serving in Russia in , he wrote two main papers, one on relativity theory and one on quantum theory . His work on relativity produced the first exact solutions to the general gravitational equations - one for non-rotating spherically symmetric bodies and one for static isotropic empty space surrounding any massive body. From the second he undertook some pioneering work on classical black holes . Two properties of black holes have been given his name - the

    93. Participants
    Piero Benvenuti, STECF, karl-schwarzschild-Str. Guido De Marchi, EuropeanSouthern Observatory, Science Office, karl-schwarzschild-Str.
    http://www.stecf.org/nicmos/sardinia/node3.html

    94. The Light Cone: The Schwarzschild Black Hole
    Just months after Einstein published his work on his Theory of Gravitation, KarlSchwarzschild (1916) found one solution to Einstein s equations the curvature
    http://physics.syr.edu/courses/modules/LIGHTCONE/schwarzschild.html
    Home PREFACE PRIMEVAL SPECIAL ... Comments?
    Schwarzschild's Spacetime:
    Introducing the Black Hole
    K. Schwarzschild
    Just months after Einstein published his work on his Theory of Gravitation, Karl Schwarzschild (1916) found one solution to Einstein's equations: the curvature due to a massive nonrotating spherical object. That is, using Einstein's equation, Schwarzschild had determined how spacetime is curved due to the presence of a nonrotating spherical mass. In practical terms, the Schwarzschild spacetime describes the gravitational field of the Sun,
    or of the Earth. (The Sun and the Earth do rotate, but this rotation is negligible in these cases.) This spacetime was studied carefully, and it led to a few physical predictions. Firstly, it did as good a job as Newton's Theory of Gravity in explaining the motion of the planets around the sun. Second, it accounted for a tiny effect concerning the path of the planets ("The Anomalous Advance of the Perihelion") that Newton's Theory was unable to completely account for. The orbit of Mercury was studied, and the prediction was confirmed. Thirdly, it predicted a value for a tiny effect concerning the path of light-rays ("The Bending of Starlight") that Newton's Theory was unable to completely account for. Light from a star passing near the sun was studied. The Einstein Theory correctly predicted the amount of the deflection of starlight. (For practical purposes, one could only make the observation during a solar eclipse since sunlight was much brighter than the starlight to be studied.)

    95. Astronomische Gesellschaft
    deutsche Fassung or version française The Astronomische Gesellschaft awards theKarl schwarzschild Medal to recognize outstanding scientific contributions.
    http://www.astro.uni-jena.de/Astron_Ges/ag9ausze.html
    Awards by the Astronomische Gesellschaft
    deutsche Fassung or The Astronomische Gesellschaft awards the Karl Schwarzschild Medal to recognize outstanding scientific contributions. The awarding of the medal is accompanied by the Karl Schwarzschild lecture held at the scientific annual meeting and their publication by the AG ( Recipients of the Karl Schwarzschild Medal The Karl Schwarzschild awardee 2004 is Prof. Riccardo Giacconi. The Astronomische Gesellschaft awards honorary membership to persons to recognize individuals for their exceptional service to the Society ( Honorary members (listed according year of award)). The Ludwig Biermann Award was established in 1988 by the Astronomische Gesellschaft to be awarded in recognition of outstanding young astronomers. The award consists of financing a scientific stay at an institution of the recipient's choice ( Recipients of the Ludwig Biermann Award The society awards the for excellent popular representations of astronomical research results ( Recipients of the prize The Hans-Ludwig Neumann Prize was established in 1996 to recognize the advancement of astronomy at school ( Recipients of the prize Satzungen der Preise und Ehrungen (in deutscher Sprache) Reinhard E. Schielicke

    96. ThinkQuest : Library : Black Holes: Portals Into The Unknown
    space. In 1916, the German astronomer karl Schwarzchild (see photo onright) figured out just how small a star would need to become.
    http://library.thinkquest.org/10148/long4.shtml
    Index Astronomy
    Black Holes: Portals into the Unknown
    Imagine a giant vacuum cleaner in outer space with so much energy it sucks everything around into it. That's a black hole. And there are many different kinds out there. You can find out how they're detected, how they act, what they might look like, and what happens to the matter that enters them. For some computer fun, download a black hole game or quiz. Visit Site 1997 ThinkQuest Internet Challenge Languages English Students Benjamin Quibbletown Middle School, Piscataway, NJ, United States Robert S. Quibbletown Middle School, Piscataway, NJ, United States Lee Rutgers Preparatory School, Somerset, NJ, United States Coaches John Quibbletown Middle School, Piscataway, NJ, United States John Quibbletown Middle School, Piscataway, NJ, United States Angelo Rutgers Preparatory School, Somerset, NJ, United States Want to build a ThinkQuest site? The ThinkQuest site above is one of thousands of educational web sites built by students from around the world. Click here to learn how you can build a ThinkQuest site.

    97. Astronomiegeschichte: Personen (S)
    schwarzschild
    http://www.astro.uni-bonn.de/~pbrosche/persons/pers_s-d.html
    Geschichte der Astronomie Personen
    Astronomiegeschichte: Personen (S)
    English Version

    98. Karl Schwarzschild
    Warning mysql_connect() Lost connection to MySQL server during query in /home/virtualki/2994/inc/bazamySQL.phpon line 26 Problemy z baz¹ danych!
    http://kopernik.pl/index.php?id=1&kod=20

    99. ?
    The summary for this Thai page contains characters that cannot be correctly displayed in this language/character set.
    http://www.vcharkarn.com/snippets/vcafe/show_message.php?Pid=10338

    100. Editeur - Springer-Verlag

    http://bibli.cirm.univ-mrs.fr/Reference.htm&numrec=191914091919680&Range=0170

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