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  1. 5 de oct. de 2019 · Ole Rømer was born in Århus, Denmark, to merchant and skipper Christen Pedersen (died 1663), and Anna Olufsdatter Storm (c. 1610 – 1690), daughter of a well-to-do alderman. From 1662 Rømer studied astronomy with Erasmus Bartholin in Copenhagen and worked with him until 1671, including the publication of Tycho Brahe ‘s writings.[ 3 ]

  2. ro.wikipedia.org › wiki › Ole_RømerOle Rømer - Wikipedia

    Ole Rømer. Ole (Christensen) Rømer [o (ː)lə ˈʁœːˀmɐ] (n. 25 septembrie 1644, Århus – d. 19 septembrie 1710, Copenhaga ), a fost un astronom danez. A fost cunoscut prin măsurarea cantitativă pentru prima dată a vitezei luminii .

  3. Ole Christensen Rømer was born on the 25 September 1644. He was the son of the merchant Christen Pedersen and his wife Anne Olufsdatter Storm, who was the daughter of a well-known Aarhusian alderman. Christen Pedersen, who came from Rømø, took Rømer as his new surname when he moved to Aarhus in 1642, to stand out from his namesakes in the city.

  4. 9 de dic. de 2018 · Ole Rømer was the son of a modest Danish merchant in Aarhus, Denmark. Born in 1644, Rømer was sent to the University of Copenhagen at the age of 18 and studied Mathematics and Astronomy under ...

  5. Ole Rømer. Ole Rømer. Ole Christensen Rømer [1] (September 25, 1644, Århus – September 19, 1710, Copenhagen) was a Danish astronomer who demonstrated that light had a finite speed by measuring apparent changes in the periods of the revolution of Jupiter 's moon, Io. Rømer also developed a temperature scale showing the temperature between ...

  6. 8 de dic. de 2016 · La determinación de la velocidad de la luz fue cosa de Ole Rømer. El astrónomo no es un personaje conocido por el gran público, pero su nombre va unido a este gran descubrimiento científico ...

  7. Ole Rømer (1644-1710) ya era un estadista en su Dinamarca natal algún tiempo después de su descubrimiento de la velocidad de la luz (1676). Probablemente el grabado sea póstumo. La determinación de Rømer de la velocidad de la luz fue la demostración, en 1676, de que la velocidad de la luz tiene una velocidad finita y, por tanto, no se desplaza instantáneamente.

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