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John William Nicholson

1881 – 1955

English mathematician

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About John William Nicholson

Lived 1881 – 1955 (aged 73). John William Nicholson was a British mathematician, university teacher, scientist and physicist.

Education Nicholson studied at the University of Manchester, residing in Hulme Hall, where he earned a B.Sc. and later an M.Sc. Among his peers was Arthur Stanley Eddington, who became a lifelong friend. They both continued to Trinity College, Cambridge, where Nicholson passed the Mathematical Tripos in 1904 as Twelfth Wrangler. He was awarded the Isaac Newton Studentship in 1906, was a Smith's Prizeman in 1907, and won the Adams Prize in 1913 and 1917. In 1939 Wrinch and her daughter moved to the United States. Nicholson's and Wrinch's daughter died in a fire in 1975.

Career Nicholson began his academic career as a lecturer at the Cavendish Laboratory in Cambridge and later at Queen’s University Belfast. In 1912, he was appointed Professor of Mathematics at King’s College London, where he taught alongside S. A. F. White. Nicholson was known as an inspiring but occasionally absent-minded lecturer. His students at King's College recalled that, despite sometimes arriving late, his lectures were highly valued for their depth and insight. Ira Sprague Bowen was able to attribute the spectroscopical lines of nebulium to doubly ionized oxygen making the new elements obsolete for their explanation. Some authors have pointed out the remarkable success that Nicholson's work initially experienced in spite of being founded on concepts that were eventually shown to be incorrect.

Awards and honours Nicholson was elected a Fellow of the Royal Society of London in 1917. In 1919, Nicholson won the Adams Prize. In 1921 he was elected into a Fellowship at Balliol College, Oxford.

Papers by John William Nicholson On electrical vibrations between confocal elliptic cylinders, with special reference to short waves. Phil. Mag. 10, 225-236. (1905) On the diffraction of short waves by a rigid sphere. Phil. Mag. 11, 193-205. A general solution of the electromagnetic relations. Phil. Mag. 13, 259-265. The scattering of sound by spheroids and disks. Phil. Mag. 14, 364-377. On the reflexion of waves from a stratum of gradually varying properties, with application to sound. Proc. Roy. Soc. A, 81, 286-299. (1908) Inductance in parallel wires. Nature, Loud. 77, 295. The simple equivalent of an alternating current in parallel wires. Nature, Loud. 80, 247-248. The inductance of two parallel wires. Phil. Mag. 17, 255-275. Inductance and resistance in telephone and other circuits. Phil. Mag. 18, 417-432. The scattering of light by a large conducting sphere. Proc. Lond. Math. Soc. 9, 67-80. (1910) The effective resistance and inductance of a helical coil. Phil. Mag. 19, 77-91. On the bending of electric waves round the earth. Phil. Mag. 19, 276-278. On the bending of electric waves round a large sphere. Phil. Mag. 19, 516-537, and 20, 157-172. The accelerated motion of an electrified sphere. Phil. Mag. 20, 610-618. The accelerated motion of a dielectric sphere. Phil. Mag. 20, 828-835. A possible relation between uranium and actinium. Nature, Lond. 87, 515. (1911) On the bending of electric waves round a large sphere. Phil. Mag. 21, 62-68, 281-295. (1912) "The Constitution of the Solar Corona. II," Month. Not. Roy. Astr. Soc, 72 (1912), 677-692; "The Constitution of the Solar Corona. III," ibid., 729-739. On the damping of the vibrations of a dielectric sphere, and the radiation from a vibrating electron. Phil. Mag. 21, 438-446. On the number of electrons concerned in metallic conduction. Phil. Mag. 22, 245-266. Note on optical properties of fused metals. Phil. Mag. 22, 266-268. On the bending of electric waves round a large sphere. Phil. Mag. 24, 755-765. The pressure of radiation on a cylindrical obstacle. Proc. Lond. Math. Soc. 11, 104-126. The scattering of light by a large conducting sphere (second paper). Proc. Lond. Math. Soc. 11, 277-284. Uniform rotation, the principle of relativity, and the Michelson-Morley experiment. Phil. Mag. 24, 820-827. Atomic models and X-ray spectra. Nature, Lond. 92, 583-584. (1914) The constitution of atoms and molecules. Nature, Lond. 93, 268-269. (1914) Sur les poids atomiques des elements des nebuleuses. C.R. Acad. Sci. Paris, 158, 1322-1323. (1914) The high frequency spectra of the elements and the structure of the atom. Phil. Mag. 27, 541-564. Atomic structure and the spectrum of helium. Phil. Mag. 28, 90-103. (With T. R. Merton.) On the distribution of intensity in broadened spectral lines Phil. Trans. A, 216, 459-488. (With T. R. Merton.) On intensity relations in the spectrum of helium. Phil. Trans. A, 220, 137-173.

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Important facts

Birth century
Education
Harris Manchester College, University of Cambridge
Awards
Fellow of the Royal Society; Adams Prize; Royal Society

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Frequently asked questions

Who was John William Nicholson?

English mathematician (1881-1955)

When was John William Nicholson born?

John William Nicholson was born on 1 November 1881 in Darlington.

When did John William Nicholson die?

John William Nicholson died on 3 October 1955 in Oxford.

What was John William Nicholson's occupation?

John William Nicholson was a mathematician, university teacher, scientist and physicist.

What nationality was John William Nicholson?

John William Nicholson was British.

Sources & further reading

· Wikipedia: John William Nicholson

· Wikidata: Q6264231

· DBpedia: John William Nicholson

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APA: Biography.guide. (2026). John William Nicholson. https://biography.guide/john-william-nicholson/

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