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John Gamble Kirkwood

John Gamble Kirkwood is a physics topic covered in the lgStudy science library. This page brings together a partial reference excerpt, illustrations, worked examples, real-world applications and a short study plan, so you can understand John Gamble Kirkwood rather than just read about it. In short: John "Jack" Gamble Kirkwood (May 30, 1907, Gotebo, Oklahoma – August 9, 1959, New Haven, Connecticut) was a noted chemist and physicist, holding faculty positions at Cornell University, the University of Chicago, California Institute of Technology, and Yale University. Early life and background Kirkwood was born in Gotebo, Oklahoma, the oldest child of John Millard and Lillian Gamble Kirkwood.

John Gamble Kirkwood — main illustration
John Gamble Kirkwood — illustration

Key takeaways

  • John Gamble Kirkwood belongs to physics; place it in that map before memorising details.
  • Learn the definition first, then one example that makes the definition concrete.
  • Connect John Gamble Kirkwood to a quantity you can measure, compute or draw — that is where exam questions come from.
  • Reproduce the core statement of John Gamble Kirkwood from memory before moving on to harder problems.

Reference excerpt

John "Jack" Gamble Kirkwood (May 30, 1907, Gotebo, Oklahoma – August 9, 1959, New Haven, Connecticut) was a noted chemist and physicist, holding faculty positions at Cornell University, the University of Chicago, California Institute of Technology, and Yale University.

Early life and background Kirkwood was born in Gotebo, Oklahoma, the oldest child of John Millard and Lillian Gamble Kirkwood. His father was educated as an attorney and was a distributor for the Goodyear Corporation in the state of Kansas. In addition to Jack Kirkwood, there were two younger sisters: Caroline (1910) and Margaret (1921). In 1909, the family moved to Wichita, Kansas. In the 1920s the family traveled to Pasadena, California to escape Midwestern winters.

Education While in Pasadena, Kirkwood, age 15, audited chemistry classes at Caltech. Showing remarkable talent in mathematics and chemistry, Kirkwood was persuaded by A. A. Noyes to enroll at Caltech before finishing his high school education. He attended Caltech for two years before transferring to the University of Chicago, where he was awarded his Bachelor of Science in 1926.

Academic career Kirkwood received a B.S. in physics from the University of Chicago in 1926, and a Ph.D. in chemistry from MIT in 1929, where he worked with Frederick G. Keyes. He spent two years in Europe, where he worked with Peter Debye and visited Arnold Sommerfeld. He returned to MIT for the period 1932-1934 as a research associate in physical chemistry. There, with Frederick G. Keyes, he mentored Herbert H. Uhlig, who subsequently became a noted physical chemist, specializing in the study of corrosion. Kirkwood won the 1936 Langmuir Award in recognition of his status as the best young chemist in the United States. In the same year he was awarded the American Chemical Society Award in Pure Chemistry. In 1935, Kirkwood became the Todd Professor of Chemistry at Cornell. During World War II, J. Robert Openheimer recruited Kirkwood to work as one of the scientists participating in the Manhattan Project to develop the atomic bomb. Kirkwood witnessed the detonation of the first Hydrogen bomb at the Bikini atoll in 1951. Following the war, in 1946, Linus Pauling proposed to Robert Millikan, the then president of Caltech, that they recruit Kirkwood to come to Caltech by offering him a newly created professorship named for Author A. Noyes who, years earlier, had recruited Kirkwood to attend Caltech as an undergraduate. Kirkwood accepted the offer and was the Noyes Professor of Chemistry from 1947 until he accepted an offer from Yale in 1952 to be the Sterling Professor at Yale and head its chemistry department. He headed the chemistry department at Yale until his death from colon cancer in 1959, at age 52. Every other year, the department of chemistry at Yale, together with the New Haven Chemical Society, awards the Kirkwood Medal. It is noteworthy that nearly half of the recipients of the Kirkwood Medal have gone on to win the Nobel Prize in Chemistry. Kirkwood has two chairs in chemistry in his name. Yale has a John G. Kirkwood professorship in Chemistry. Caltech has a Kirkwood-Noyes professorship. In his classic 1939 paper "The Dielectric Polarization of Polar Liquids," Kirkwood introduced for the first time the concept of orientational correlations for neighboring molecules and showed how these control the dielectric behavior of liquids. The year 1946 was especially notable for the appearance of the first paper in a long series that Kirkwood and his collaborators devoted to the fundamental statistical mechanical theory of transport processes. Kirkwood was elected to the National Academy of Sciences in 1942, the American Philosophical Society in 1944, and the American Academy of Arts and Sciences in 1949.

See also Hydrodynamic radius

Notes

References George Scatchard (1960). "John Gamble Kirkwood 1907–1959". The Journal of Chemical Physics. 33 (5): 1279–1281. Bibcode:1960JChPh..33.1279S. doi:10.1063/1.1731400.

External links Biography of Kirkwood National Academy of Sciences Biographical Memoir

Worked examples

Example 1 — a first encounter with John Gamble Kirkwood

Start with the simplest possible case. Write down what John Gamble Kirkwood claims or describes in one sentence, then invent the smallest concrete situation in which that sentence is true. In physics, the smallest case is usually a single object, a single equation or a single measurement. Check that every symbol or term in your sentence has a meaning in that case.

Example 2 — changing one variable

Take the situation from Example 1 and change exactly one quantity: double it, halve it, or set it to zero. Predict what should happen to John Gamble Kirkwood before you calculate. Comparing your prediction with the result is the fastest way to find out whether you understand the idea or only the words.

Example 3 — an exam-style question

Typical questions about John Gamble Kirkwood ask you to (a) state it precisely, (b) apply it to given data, and (c) explain a limitation. Practise writing all three answers in under five minutes; the third part is what separates a full-mark answer from an average one.

Applications of John Gamble Kirkwood

In research
John Gamble Kirkwood appears in physics research whenever the underlying quantities have to be modelled precisely. Papers usually cite it as a starting assumption and then explore where it breaks down.
In technology and industry
Engineering practice reuses John Gamble Kirkwood in design rules, simulations and safety margins. Knowing the idea lets you read a specification sheet and understand why the numbers look the way they do.
In the classroom
John Gamble Kirkwood is common in secondary-school and first-year university syllabi. It links to neighbouring topics 1907 births, 1959 deaths, 20th-century American chemists, so understanding it makes those chapters shorter.
In everyday life
Look for John Gamble Kirkwood outside the textbook — in sport, cooking, traffic, electronics or the sky above you. An example you found yourself is remembered far longer than one you were given.
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How to study John Gamble Kirkwood in 20 minutes

  1. Read the reference excerpt below once, without taking notes.
  2. Close the page and write down what John Gamble Kirkwood means in your own words.
  3. Compare your version with the excerpt and mark what you missed.
  4. Work through the three examples above with pen and paper.
  5. Explain John Gamble Kirkwood out loud to somebody else — or to Teacher Smith in the lgStudy chat.

Frequently asked questions

What is John Gamble Kirkwood in simple terms?

John "Jack" Gamble Kirkwood (May 30, 1907, Gotebo, Oklahoma – August 9, 1959, New Haven, Connecticut) was a noted chemist and physicist, holding faculty positions at Cornell University, the University of Chicago, California Institute of Technology, and Yale University. Early life and background Kir…

Why does John Gamble Kirkwood matter?

Because it connects several physics ideas at once: it gives you a definition you can apply, a quantity you can calculate, and a way to check whether a result is plausible.

How should I study John Gamble Kirkwood?

Read the excerpt, restate it from memory, then work through the examples and applications listed on this page. The five-step study plan above takes about twenty minutes.

What does this page cover?

It gives you a compact reference excerpt plus original lgStudy explanations, examples, applications and study material on John Gamble Kirkwood.

Tags

  • 1907 births
  • 1959 deaths
  • 20th-century American chemists
  • American physical chemists
  • Burials at Grove Street Cemetery
  • California Institute of Technology alumni
  • California Institute of Technology faculty
  • Cornell University faculty
  • Fellows of the American Physical Society
  • Members of the American Philosophical Society
  • People from Kiowa County, Oklahoma
  • University of Chicago alumni

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