Age, Biography and Wiki
Georgeanne R. Caughlan was born on 25 October, 1916 in Montesano, Washington, is an American astrophysicist. Discover Georgeanne R. Caughlan's Biography, Age, Height, Physical Stats, Dating/Affairs, Family and career updates. Learn How rich is she in this year and how she spends money? Also learn how she earned most of networth at the age of 78 years old?
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Age |
78 years old |
Zodiac Sign |
Scorpio |
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25 October 1916 |
Birthday |
25 October |
Birthplace |
Montesano, Washington |
Date of death |
1994 |
Died Place |
Bozeman |
Nationality |
United States
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She is a member of famous with the age 78 years old group.
Georgeanne R. Caughlan Height, Weight & Measurements
At 78 years old, Georgeanne R. Caughlan height not available right now. We will update Georgeanne R. Caughlan's Height, weight, Body Measurements, Eye Color, Hair Color, Shoe & Dress size soon as possible.
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Dating & Relationship status
She is currently single. She is not dating anyone. We don't have much information about She's past relationship and any previous engaged. According to our Database, She has no children.
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Georgeanne R. Caughlan Net Worth
Her net worth has been growing significantly in 2023-2024. So, how much is Georgeanne R. Caughlan worth at the age of 78 years old? Georgeanne R. Caughlan’s income source is mostly from being a successful . She is from United States. We have estimated Georgeanne R. Caughlan's net worth, money, salary, income, and assets.
Net Worth in 2024 |
$1 Million - $5 Million |
Salary in 2024 |
Under Review |
Net Worth in 2023 |
Pending |
Salary in 2023 |
Under Review |
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Timeline
Georgeanne (Jan) Caughlan (née Robertson; 25 October 1916 – 3 January 1994) was an American astrophysicist known for her work on stellar energy generation.
Her compilation of experimental data of the rates of nuclear reactions was instrumental in establishing the theory of nucleosynthesis that led to a Nobel Prize for William A. Fowler.
Georgeanne Robertson was born on 25 October 1916, the fourth of five children of George Duncan and Anna (McLeod) Robertson, in Montesano, Washington.
She married Charles Caughlan, a chemist, in 1936, with whom she had four children.
She attended the University of Washington where she received a bachelor's degree in physics in 1937.
Caughlan joined Montana State University in 1957 as an instructor.
In the early 1960s, Caughlan began to collect experimental data on stellar nuclear reactions as part of Fowler's researches into energy generation.
She transmitted them in handwritten letters to Fowler.
Along with Fowler, Caughlan developed a standard format for the presentation of proton, deuteron and alpha particle reaction rates with nuclei from hydrogen to silicon.
Between 1961 and 1963, she was a summer research fellow at Caltech, working with William A. Fowler on stellar energy generation.
She became an assistant professor at Montana State University in 1961, proceeding to a full professorship in 1974.
After her children grew up, she started her doctoral studies at the University of Washington, receiving her PhD in 1964.
In 1965, Caughlan computed that if a star exceeds thirty solar masses, the CNO cycle would result in nitrogen atoms outnumbering carbon and oxygen by a factor of 100.
The star eta Carinae was determined to be in its final stages of life based on the observation of such nitrogen excess: its spectrum shows nitrogen lines but no oxygen lines.
She and Charles divorced in the early 1970s.
Fowler, in particular, recognised Caughlan's studies of stellar structure and the theoretical impetus from her that led to his Nobel Prize in Physics in 1983.
The compilations of astrophysical nuclear data by Caughlan (along with Barbara Zimmerman and Fowler) were published periodically, and were considered the 'bible' of nuclear astrophysics.
During Caughlan's stint at Caltech, the first computations of the structure and evolution of stars became possible as computers developed to sufficient power.
A computer program developed by Robert V. Wagoner to simulate the synthesis of 41 nuclei in stars required astrophysical rates from Caughlan's work.
The carbon-nitrogen-oxygen (CNO) cycle is a process in stellar fusion that converts hydrogen to helium.
Upon her retirement in 1984, she was made Professor Emerita.
She died on 3 January 1994.