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  1. Thomas Charles Hope FRSE FRS PRCPE FFPSG (21 July 1766 – 13 June 1844) was a Scottish physician, chemist and lecturer. He proved the existence of the element strontium, and gave his name to Hope's Experiment, which shows that water reaches its maximum density at 4 °C (39 °F).

    • Scottish
    • Maximum density of water (Hope's experiment), Discovery of strontium
  2. School of Chemistry. About us. History. Professors. Thomas Charles Hope, MD, FRSE, FRS (1766-1844) by W.P.Doyle. Thomas Charles Hope was born in Edinburgh on 21 July 1766, the third son in a family of five children.

  3. ¿Qué piensas de la biografía de Thomas Charles Hope? ¿Has encontrado toda aquella información que suponías que ibas a hallar? Sin duda llegar a comprender a Thomas Charles Hope es algo que se reserva a escasas personas, y que tratar de reconstruir quién fue y cómo fue la vida de Thomas Charles Hope es una especie de puzzleque ...

  4. 21 de jul. de 1999 · News. Chemistry. His Discoveries Made a Splash. 21 Jul 1999. By Science News Staff. > Share: Today is the birthday of Thomas Charles Hope, a Scottish chemist born in 1766. Although he considered himself a teacher, Hope is remembered for two original contributions to chemistry.

  5. Scottish; British. (1766-1844), chemist. Thomas Charles Hope, born on the 21st July 1766, entered Edinburgh University in 1779 where he focused primarily on botany and chemistry. Hope graduated MD in 1787 and became a lecturer in chemistry and materia medica at Glasgow, continuing with just chemistry until 1791.

  6. (21 July 1766 – 13 June 1844) College Role: President. Biography. Thomas Charles Hope was the third son of John Hope, professor of botany at Edinburgh University, and was born on 21 July 1766. In 1779 he entered Edinburgh University where he focused primarily on botany and chemistry.

  7. Thomas Charles Hope was a Scottish physician, chemist and lecturer. He proved the existence of the element strontium, and gave his name to Hope's Experiment, which shows that water reaches its maximum density at 4 °C (39 °F).