Hungary is a landlocked country in Central Europe. Spanning 93,030 square kilometres (35,920 sq mi) of the Carpathian Basin, it is bordered by Slovakia to the north, Ukraine to the northeast, Romania to the east and southeast, Serbia to the south, Croatia and Slovenia to the southwest, and Austria to the west. Hungary has a population of 9.5 million, mostly ethnic Hungarians and a significant Romani minority. Hungarian is the official language and Budapest is the country's capital and largest city.
Prior to the foundation of the Hungarian state, various peoples settled in the territory of present-day Hungary, most notably the Celts, Romans, Huns, Germanic peoples, Avars and Slavs. The Principality of Hungary was established in the late 9th century by Álmos and his son Árpád through the conquest of the Carpathian Basin. King Stephen I ascended the throne in 1000, converting his realm to a Christian kingdom. The medieval Kingdom of Hungary was a European power, reaching its height in the 14th–15th centuries. After a long period of Ottoman wars, Hungary's forces were defeated at the Battle of Mohács and its capital was captured in 1541, opening roughly a 150 years long period when the country was divided into three parts: Royal Hungary, loyal to the Habsburgs; Ottoman Hungary; and the largely independent Principality of Transylvania. The reunited Hungary came under Habsburg rule at the turn of the 18th century, fighting a war of independence in 1703–1711, and a war of independence in 1848–1849 until a compromise allowed the formation of the Austro-Hungarian Monarchy in 1867, a major power into the early 20th century. Austria-Hungary collapsed after World War I, and the subsequent Treaty of Trianon in 1920 established Hungary's current borders, resulting in the loss of 71% of its historical territory, 58% of its population, and 32% of its ethnic Hungarians.
In the interwar period, after initial turmoil, Miklós Horthy ascended as a determining politician, representing the monarchy as regent in place of the Habsburgs. Hungary joined the Axis powers in World War II, suffering significant damage and casualties. As a result, the Hungarian People's Republic was established as a satellite state of the Soviet Union. Following the failed 1956 revolution, Hungary became comparatively freer, but still remained a repressed member of the Eastern Bloc. In 1989, concurrently with the Revolutions of 1989, Hungary peacefully transitioned into a democratic parliamentary republic, joining the European Union in 2004 and being part of the Schengen Area since 2007. Since the election of Viktor Orbán in 2010, Hungary has undergone democratic backsliding becoming an illiberal democracy and hybrid regime.
Hungary is a high-income economy with universal health care and tuition-free secondary education. Hungary has a long history of significant contributions to arts, music, literature, sports, science and technology. It is a popular tourist destination in Europe, drawing 24.5 million international tourists in 2019. It is a member of numerous international organisations, including the Council of Europe, European Union, NATO, United Nations, World Health Organization, World Trade Organization, World Bank, Asian Infrastructure Investment Bank, and the Visegrád Group. (Full article...)
Edward Teller (Hungarian: Teller Ede; January 15, 1908 – September 9, 2003) was a Hungarian-American theoretical physicist and chemical engineer who is known colloquially as "the father of the hydrogen bomb" and one of the creators of the Teller–Ulam design based on Stanisław Ulam's design.
Born in Austria-Hungary in 1908, Teller emigrated to the United States in the 1930s, one of the many so-called "Martians", a group of prominent Hungarian scientist émigrés. He made numerous contributions to nuclear and molecular physics, spectroscopy (in particular the Jahn–Teller and Renner–Teller effects), and surface physics. His extension of Enrico Fermi's theory of beta decay, in the form of Gamow–Teller transitions, provided an important stepping stone in its application, while the Jahn–Teller effect and the Brunauer–Emmett–Teller (BET) theory have retained their original formulation and are still mainstays in physics and chemistry. (Full article...)
The Babeș-Bolyai University (Romanian: Universitatea Babeș-Bolyai [ˈbabeʃ ˈbojɒ.i], Hungarian: Babeș-Bolyai Tudományegyetem, commonly known as UBB) is a public research university located in Cluj-Napoca, Romania. It was created from a 1959 merger of Bolyai University (founded in 1945) and Victor Babeș University (founded in 1919), whose histories can be traced to the Academia/Universitas Claudiopolitana founded in 1581. It occupies the first position in the University Metaranking, initiated by the Romanian Ministry of Education and Research in 2016
Babeș-Bolyai University is the largest Romanian university with about 50,000 students. It offers study programmes in Romanian, Hungarian, German, English, and French (as well as a smaller number of programmes at the Master's level taught in Spanish, Italian, and Japanese). The university was named, following the fusion in 1959 of the Romanian and Hungarian-language universities in Cluj, after two prominent scientists from Transylvania, the Romanian bacteriologist Victor Babeș and the Hungarian mathematician János Bolyai. It is one of the five members of the Universitaria Consortium (the group of elite Romanian universities, including UAIC, UB, ASE and UVT). (Full article...)
Béla Bartók – János Bihari – Ernő Dohnányi – Béni Egressy – Ferenc Erkel – Zoltán Kocsis – Zoltán Kodály – Franz Liszt - Eugene Ormandy - George Szell - András Schiff
Gyula Benczúr – Tivadar Csontváry Kosztka – Béla Czóbel – Árpád Feszty – Károly Lotz – Viktor Madarász – Mihály Munkácsy – József Rippl-Rónai – Pál Szinyei Merse – István Szőnyi – Victor Vasarely
Brassaï – Cornell Capa – Robert Capa – Lucien Hervé – André Kertész – László Moholy-Nagy – Martin Munkácsi
Béla H. Bánáthy – Zoltán Bay – Georg von Békésy – Farkas Bolyai – János Bolyai – Károly Bund – József Eötvös – Loránd Eötvös – Dennis Gabor – John Charles Harsanyi – George de Hevesy – Alexander Csoma de Kőrös – László Lovász – John von Neumann – George Andrew Olah – Ernő Rubik – Hans Selye – Ignaz Semmelweis – Charles Simonyi – János Szentágothai – Albert Szent-Györgyi – Leó Szilárd – Edward Teller – Eugene Wigner
Endre Ady – János Arany – József Eötvös – György Faludy – Béla Hamvas – Mór Jókai – Attila József – Ferenc Kazinczy – Imre Kertész – János Kodolányi – Ferenc Kölcsey – Imre Madách – Sándor Márai – Ferenc Molnár – Sándor Petőfi – Miklós Radnóti – Magda Szabó – Antal Szerb – Miklós Vámos – Mihály Vörösmarty
Gyula Andrássy – Lajos Batthyány – Gabriel Bethlen – Stephen Bocskay – Matthias Corvinus – Ferenc Deák – Miklós Horthy – Lajos Kossuth – Ferenc Nagy – Imre Nagy – Bertalan Szemere – István Széchenyi – Miklós Wesselényi – Vilmos Nagy of Nagybaczon
József Bozsik – Krisztina Egerszegi – Zoltán Gera – Dezső Gyarmati – Ágnes Keleti – Péter Lékó – Csaba Mérő – Tibor Nyilasi – László Papp – Judit Polgár – Zsuzsa Polgár – Ferenc Puskás
Nimród Antal – Michael Curtiz – John Garfield – Miklós Jancsó – Sir Alexander Korda – Peter Lorre – Béla Lugosi – Emeric Pressburger – Miklós Rózsa – Andy G. Vajna – Gábor Zsazsa
Eugene Paul Wigner (Hungarian: Wigner Jenő Pál, pronounced [ˈviɡnɛr ˈjɛnøː ˈpaːl]; November 17, 1902 – January 1, 1995) was a Hungarian-American theoretical physicist who also contributed to mathematical physics. He received the Nobel Prize in Physics in 1963 "for his contributions to the theory of the atomic nucleus and the elementary particles, particularly through the discovery and application of fundamental symmetry principles".
A graduate of the Technical Hochschule Berlin (now Technische Universität Berlin), Wigner worked as an assistant to Karl Weissenberg and Richard Becker at the Kaiser Wilhelm Institute in Berlin, and David Hilbert at the University of Göttingen. Wigner and Hermann Weyl were responsible for introducing group theory into physics, particularly the theory of symmetry in physics. Along the way he performed ground-breaking work in pure mathematics, in which he authored a number of mathematical theorems. In particular, Wigner's theorem is a cornerstone in the mathematical formulation of quantum mechanics. He is also known for his research into the structure of the atomic nucleus. In 1930, Princeton University recruited Wigner, along with John von Neumann, and he moved to the United States, where he obtained citizenship in 1937. (Full article...)
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