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Daniel Bernoulli

Swiss mathematician and physicist known for Bernoulli's principle.

Daniel Bernoulli

Daniel Bernoulli (1700–1782) was a Swiss mathematician and physicist, part of the renowned Bernoulli family of Basel. He is best known for applying mathematics to mechanics—especially fluid mechanics—and for his foundational contributions to probability and statistics. His name lives on in Bernoulli’s principle, a conservation-of-energy concept that explains how carburetors and airplane wings work.

Born in Groningen, Netherlands, Daniel came from a family of mathematicians that had fled Spanish persecution of Protestants in Antwerp, settling in Basel after a short stay in Frankfurt. His father was Johann Bernoulli, an early calculus pioneer; his uncle Jacob Bernoulli researched probability and discovered the constant *e*. Daniel had two brothers, Niklaus and Johann II. Historian W. W. Rouse Ball called him “by far the ablest of the younger Bernoullis.”

Daniel’s relationship with his father was strained. They tied for first place in a Paris scientific contest, after which Johann banned Daniel from his house, unable to bear being considered his equal. Johann allegedly plagiarized key ideas from Daniel’s *Hydrodynamica* in his own *Hydraulica*, backdating them. Daniel’s attempts at reconciliation failed. Initially pushed by his father to study business (due to poor pay for mathematicians), Daniel eventually studied medicine at Basel, Heidelberg, and Strasbourg, earning a PhD in anatomy and botany in 1721, while his father taught him mathematics privately.

A close friend of Leonhard Euler, Daniel became a mathematics professor in St. Petersburg in 1724 but was unhappy there. Illness, censorship by the Russian Orthodox Church, and salary disputes let him leave in 1733. He returned to the University of Basel, holding chairs in medicine, metaphysics, and natural philosophy until his death. He was elected a Fellow of the Royal Society in 1750.

His earliest mathematical work, *Exercitationes* (1724), was published with Goldbach’s help. In 1726 he first suggested resolving compound motion into translation and rotation. In 1729 he published Bernoulli’s method for finding polynomial roots. His chief work, *Hydrodynamica* (1738), is arranged so all results follow from the conservation of *vis viva* (an early energy conservation principle). He also wrote on tides, winning a French Academy prize alongside Euler and Maclaurin, and published many papers on vibrating strings and related problems.

In economics and statistics, his 1738 *Specimen theoriae novae de mensura sortis* solved the St. Petersburg paradox, introducing risk aversion, risk premium, and utility. He argued that people maximize utility, not just monetary gain, and that utility from money diminishes as income rises. In 1766 he analyzed smallpox data to show inoculation’s efficacy, an early use of censored data.

In physics, *Hydrodynamica* laid the basis for the kinetic theory of gases and explained Boyle’s law. He worked with Euler on elasticity and the Euler–Bernoulli beam equation. In 1753 he first stated the principle of superposition for vibrating systems.

His 1737 work *Pieces qui ont remporté le Prix double de l'Academie royale des sciences en 1737* was published in Paris. In 2002, Bernoulli was inducted into the International Air & Space Hall of Fame.

born
8 February [O.S. 29 January] 1700, Groningen, Netherlands
died
27 March 1782
field
Mathematics, physics
nationality
Swiss
known_for
Bernoulli's principle, kinetic theory of gases, Euler–Bernoulli beam equation, u

Lore & Background

Daniel Bernoulli was born in Groningen, in the Netherlands, into a family of distinguished mathematicians. The Bernoulli family came originally from Antwerp, at that time in the Spanish Netherlands, but emigrated to escape the Spanish persecution of the Protestants. Daniel was the son of Johann Bernoulli (one of the early developers of calculus) and a nephew of Jacob Bernoulli (an early researcher in probability theory and the discoverer of the mathematical constant e). He had two brothers, Niklaus and Johann II. Daniel Bernoulli was described by W. W. Rouse Ball as "by far the ablest of the younger Bernoullis". He is said to have had a bad relationship with his father. Both of them entered and tied for first place in a scientific contest at the University of Paris. Johann banned Daniel from his house, allegedly being unable to bear the "shame" of Daniel being considered his equal. Johann allegedly plagiarized key ideas from Daniel's book Hydrodynamica in his book Hydraulica and backdated them to before Hydrodynamica. When he was in school, Johann encouraged Daniel to study business citing poor financial compensation for mathematicians. Daniel initially refused but later relented and studied both business and medicine at his father's behest under the condition that his father would teach him mathematics privately. Daniel studied medicine at Basel, Heidelberg, and Strasbourg, and earned a PhD in anatomy and botany in 1721. He was a contemporary and close friend of Leonhard Euler. He went to St. Petersburg in 1724 as professor of mathematics, but was very unhappy there. A temporary illness together with the censorship by the Russian Orthodox Church and disagreements over his salary gave him an excuse for leaving St. Petersburg in 1733. He returned to the University of Basel, where he successively held the chairs of medicine, metaphysics, and natural philosophy until his death. In May 1750 he was elected a Fellow of the Royal Society.

Reader's Guide

Daniel Bernoulli's significance spans fluid mechanics, probability, statistics, and physics. In fluid mechanics, Bernoulli's principle describes the conservation of energy and underlies the carburetor and the aeroplane wing. His chief work, Hydrodynamica (1738), laid the basis for the kinetic theory of gases and applied the idea to explain Boyle's law. He worked with Euler on elasticity and the development of the Euler–Bernoulli beam equation. In probability and statistics, his 1738 book Specimen theoriae novae de mensura sortis offered a solution to the St. Petersburg paradox as the basis of the economic theory of risk aversion, risk premium, and utility. He also conducted one of the earliest statistical analyses involving censored data: his 1766 analysis of smallpox morbidity and mortality data to demonstrate the efficacy of inoculation. In 1753 he first stated the principle of superposition for vibrating systems. His legacy includes induction into the International Air & Space Hall of Fame in 2002.

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