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Edith Kroupa

1910 – 1991

Austrian chemist

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About Edith Kroupa

Lived 1910 – 1991 (aged 80–81). Edith Kroupa was an Austrian chemist.

Edith Kroupa (1910–1991) was a research chemist who utilized microchemical analysis in the laboratory of Professor A. Franke at the University of Vienna. In 1930, Kroupa and Friedrich Hecht analyzed a sample of radioactive rock from the Huron Claim, Manitoba near Winnipeg, Manitoba, Canada. The team determined the sample to be over 1,725,000,000 years old.

Monsanto In 1934, Editha Karl-Kroupa Kroupa, who was an Austrian research chemist worked with a new method of microchemical analysis in the laboratory of Prof. A. Franke at the University of Vienna, analyzed a sample of radioactive rock from near Winnipeg, Canada. | Kroupa emigrated to the United States in the 1950s. According to US Customs records, on 3 June 1953, Editha Karl-Kroupa, age 43 and Hugo Karl, age 43, arrived at New York City, New York, and listed a local address as the Hotel Almac on Broadway and 71st Street in New York City. The couple embarked from Bremerhaven, Germany on 26 May 1953 aboard the USNS General Alexander M. Patch (T-AP-122) and traveled in Cabin Class. They arrived in New York on 3 June 1953 and presented Austrian passports to US Customs officials. The couple traveled with 6 pieces of baggage.

Kroupa worked as a chemist in the Inorganic Chemicals Research Division for the Monsanto Company, in Dayton, Ohio, where her research focused on phosphates.

Triple-weight hydrogen Giauque, W. F., & Johnston, H. L. (1928). Symmetrical and antisymmetrical hydrogen and the third law of thermodynamics. Thermal equilibrium and the triple point pressure. Journal of the American Chemical Society, 50(12), 3221-3228. Urey, H. C., Brickwedde, F. G., & Murphy, G. M. (1932). A hydrogen isotope of mass 2. Physical Review, 39(1), 164. Urey, H. C., Brickwedde, F. G., & Murphy, G. M. (1932). A hydrogen isotope of mass 2 and its concentration. Physical Review, 40(1), 1. Urey, H. C. (1933). The separation and properties of the isotopes of hydrogen. Science, 78(2034), 566-571. Davis, W. (1934). Hydrogen's Heavy Twin Has Already Had Romantic Life. The Science News-Letter, 324-325. Science Service Staff. (1934). Science Strides Forward. The Science News-Letter, 388-400. Sueltz, B. A. (1934). The Diffraction of Light, X-Rays and Material Particles, by Charles F. Meyer, Associate Professor of Physics, University of Michigan. Lawrence, E. O. (1939). Atoms, new and old. In Science in Progress (Vol. 1, p. 18). Yale University Press New Haven.

Publications Hecht, F., & Kroupa, E. (1935). Eine Methode zur Analyse sehr kleiner Monazitmengen. Zeitschrift für analytische Chemie, 102(3-4), 81-99. Hecht, F., & Kroupa, E. (1936). Die Bedeutung der quantitativen Mikroanalyse radioaktiver Mineralien für die geologische Zeitmessung. Fresenius' Journal of Analytical Chemistry, 106(3), 82-103. Kroupa, E. (1938). Mikrogravimetrische Trennung von Nickel und Uran. Microchimica Acta, 3(4), 306-312. Kroupa, E., & Hecht, F. (1938). Die Bestimmung von Blei, Thorium und Uran in Allaniten zum Zweck geologischer Zeitmessung. Zeitschrift für anorganische und allgemeine Chemie, 236(1), 181-199. Kroupa, E. (1939). Geologische Zeitmessung durch Monazitanalyse. Mikrochemie vereinigt mit Mikrochimica acta, 27(3), 165-175. Kroupa, E. (1939). Mikrogravimetrische Trennung von Zink und Uran. Mikrochemie vereinigt mit Mikrochimica acta, 27(1-2), 1-7. Cimerman, C., Wenger, P., Kroupa, E., Rây, P. R., & Sarkar, T. C. (1941). Mikroanalyse von Zink. Fresenius' Journal of Analytical Chemistry, 122(5), 216-224. Hecht, F., Kroupa, E., & Koss-Rosenqvist, I. T. (1941). Beiträge zur Mikro-Mineralanalyse. Mikrochemie vereinigt mit Mikrochimica acta, 29(1-2), 94-99. Fresenius, R., & Kroupa, E. (1941). Über die Bestimmung von Kieselsäure und Fluor in Mineralwasser. Fresenius' Journal of Analytical Chemistry, 121(3), 138-139. Kroupa, E. (1944). Mikrogravimetrische Trennung von Vanadin und Uran mit nachfolgender Bestimmung des Vanadins als Silberorthovanadat. Mikrochemie vereinigt mit Mikrochimica acta, 32(3-4), 245-251. Kroupa, E. (1947). Äußerst empfindliche Mikro-Krystallisationsreaktionen für freies und gebundenes Wismut und Antimon. Fresenius' Journal of Analytical Chemistry, 128(1), 88-89.

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Important facts

Born
1910
Birth century
Died
1991
Occupation
Nationality
Education
University of Vienna, Monsanto Company
Employers
University of Vienna, Monsanto

People in Edith Kroupa's life

Named in this biography and alive at the same time

Contemporaries

People whose lives overlapped Edith Kroupa's

Frequently asked questions

Who was Edith Kroupa?

Austrian chemist

When was Edith Kroupa born?

Edith Kroupa was born in 1910.

When did Edith Kroupa die?

Edith Kroupa died in 1991.

What was Edith Kroupa's occupation?

Edith Kroupa was a chemist.

What nationality was Edith Kroupa?

Edith Kroupa was Austrian.

Sources & further reading

· Wikipedia: Edith Kroupa

· Wikidata: Q19613504

· DBpedia: Edith Kroupa

Cite this page

APA: Biography.guide. (2026). Edith Kroupa. https://biography.guide/edith-kroupa/

MLA: "Edith Kroupa." Biography.guide, https://biography.guide/edith-kroupa/.

Chicago: "Edith Kroupa." Biography.guide. https://biography.guide/edith-kroupa/.

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