Paul Painlevé

Paul Painlevé

Paul Painlevé in 1923
Prime Minister of France
In office
17 April 1925  28 November 1925
President Gaston Doumergue
Preceded by Édouard Herriot
Succeeded by Aristide Briand
In office
12 September 1917  16 November 1917
President Raymond Poincaré
Preceded by Alexandre Ribot
Succeeded by Georges Clemenceau
Personal details
Born 5 December 1863
Died 29 October 1933(1933-10-29) (aged 69)
Political party PRS

Paul Painlevé (French: [pɔl pɛ̃ləve]; 5 December 1863 – 29 October 1933) was a French mathematician and statesman. He served twice as Prime Minister of the Third Republic: 12 September – 13 November 1917 and 17 April – 22 November 1925. His entry into politics came in 1906 after a professorship at the Sorbonne that began in 1892.

His first term as prime minister lasted only nine weeks but dealt with weighty issues, such as the Russian Revolution, the American entry into the war, the failure of the Nivelle Offensive, quelling the French Army Mutinies and relations with the British. In the 1920s as Minister of War he was a key figure in building the Maginot Line.[1] In his second term as prime minister he dealt with the outbreak of rebellion in Syria's Jabal Druze in July 1925 which had excited public and parliamentary anxiety over the general crisis of France's empire.[2]


Early life

Painlevé was born in Paris.[3]

Brought up within a family of skilled artisans (his father was a draughtsman) Painlevé showed early promise across the range of elementary studies and was initially attracted by either an engineering or political career. However, he finally entered the École Normale Supérieure in 1883 to study mathematics, receiving his doctorate in 1887 following a period of study at Göttingen, Germany with Felix Klein and Hermann Amandus Schwarz. Intending an academic career he became professor at Université de Lille, returning to Paris in 1892 to teach at the Sorbonne, École Polytechnique and later at the Collège de France and the École Normale Supérieure. He was elected a member of the Académie des Sciences in 1900.[3]

He married Marguerite Petit de Villeneuve in 1901. Marguerite died during the birth of their son Jean Painlevé in the following year.[3]

Painlevé's mathematical work on differential equations led him to encounter their application to the theory of flight and, as ever, his broad interest in engineering topics fostered an enthusiasm for the emerging field of aviation. In 1908, he became Wilbur Wright's first airplane passenger in France and in 1909 created the first university course in aeronautics.[3]

Mathematical work

Some differential equations can be solved using elementary algebraic operations that involve the trigonometric and exponential functions (sometimes called elementary functions). Many interesting special functions arise as solutions of linear second order ordinary differential equations. Around the turn of the century, Painlevé, É. Picard, and B. Gambier showed that of the class of nonlinear second order ordinary differential equations with polynomial coefficients, those that possess a certain desirable technical property, shared by the linear equations (nowadays commonly referred to as the 'Painlevé property') can always be transformed into one of fifty canonical forms. Of these fifty equations, just six require 'new' transcendental functions for their solution.[4] These new transcendental functions, solving the remaining six equations, are called the Painlevé transcendents, and interest in them has revived recently due to their appearance in modern geometry, integrable systems[5] and statistical mechanics.[6][7][8]

In 1895 he gave a series of lectures at Stockholm University on differential equations, at the end stating the Painlevé conjecture about singularities of the n-body problem.[9]

In the nineteen twenties, Painlevé briefly turned his attention to the new theory of gravitation, general relativity, which had recently been introduced by Albert Einstein. In 1921, Painlevé proposed the Gullstrand–Painlevé coordinates for the Schwarzschild metric. The modification in the coordinate system was the first to reveal clearly that the Schwarzschild radius is a mere coordinate singularity (with however, profound global significance: it represents the event horizon of a black hole). This essential point was not generally appreciated by physicists until around 1963. In his diary, Harry Graf Kessler recorded that during a later visit to Berlin, Painlevé discussed pacifist international politics with Einstein, but there is no reference to discussions concerning the significance of the Schwarzschild radius.[10]

Early political career

Paul Painlevé in 1915

Between 1915 and 1917, Painlevé served as French Minister for Public Instruction and Inventions. In December 1915, he requested a scientific exchange agreement between France and Britain, resulting in Anglo-French collaboration that ultimately led to the parallel development by Paul Langevin in France and Robert Boyle in Britain of the first active sonar.[11]

First period as French Prime Minister

Painlevé took his aviation interests, along with those in naval and military matters, with him when he became, in 1906, Deputy for Paris's 5th arrondissement, the so-called Latin Quarter. By 1910, he had vacated his academic posts and World War I led to his active participation in military committees, joining Aristide Briand's cabinet in 1915 as Minister for Public Instruction and Inventions.[3]

On his appointment as War Minister in March 1917 he was immediately called upon to give his approval, albeit with some misgivings, to Robert Georges Nivelle's wildly optimistic plans for a breakthrough offensive in Champagne. Painlevé reacted to the disastrous public failure of the plan by dismissing Nivelle and controversially replacing him with Henri Philippe Pétain.[12] He was also responsible for isolating the Russian Expeditionary Force in France in the La Courtine camp, located in a remote spot on the plateau of Millevaches.[13]

On 7 September 1917, Prime Minister Alexandre Ribot lost the support of the Socialists and Painlevé was called upon to form a new government.[3]

Painlevé was a leading voice at the Rapallo conference that led to the establishment of the Supreme Allied Council, a consultative body of Allied powers that anticipated the unified Allied command finally established in the following year. He appointed Ferdinand Foch as French representative knowing that he was the natural Allied commander. On Painlevé's return to Paris he was defeated and resigned on 13 November 1917 to be succeeded by Georges Clemenceau. Foch was finally made commander-in-chief of all Allied armies on the Western and Italian fronts in March 1918.[3][12][14]

Second period as French Prime Minister

Painlevé then played little active role in politics until the election of November 1919 when he emerged as a leftist critic of the right-wing Bloc National. By the time the next election approached in May 1924 his collaboration with Édouard Herriot, a fellow member of Briand's 1915 cabinet, had led to the formation of the Cartel des Gauches. Winning the election, Herriot became Prime Minister in June, while Painlevé became President of the Chamber of Deputies. Though Painlevé ran for President of France in 1924 he was defeated by Gaston Doumergue. Herriot's administration publicly recognised the Soviet Union, accepted the Dawes Plan and agreed to evacuate the Ruhr. However, a financial crisis arose from the ensuing devaluation of the franc and in April 1925, Herriot fell and Painlevé became Prime Minister for a second time on 17 April. Unfortunately, he was unable to offer convincing remedies for the financial problems and was forced to resign on 21 November.[3][12][15]

Later political career

Paul Painlevé in the 1920s

Following Painlevé's resignation, Briand formed a new government with Painlevé as Minister for War. Though Briand was defeated by Raymond Poincaré in 1926, Painlevé continued in office. Poincaré stabilised the franc with a return to the gold standard, but ultimately acceded power to Briand.[3] During his tenure as Minister of War, Painlevé was instrumental in the creation of the Maginot Line. This line of military fortifications along France's Eastern border was largely designed by Painlevé, yet named for André Maginot, owing to Maginot's championing of public support and funding. Painlevé remained in office as Minister for War until July 1929.[3]

Though he was proposed for President of France in 1932, Painlevé withdrew before the election. He became Minister of Air later that year, making proposals for an international treaty to ban the manufacture of bomber aircraft and to establish an international air force to enforce global peace. On the fall of the government in January 1933, his political career ended.[3]

Painlevé died in Paris in October of the same year.[12] On 4 November, after a eulogy by Prime Minister Albert Sarraut, he was interred in the Panthéon.[16]


Composition of governments

Painlevé's First Government, 12 September – 16 November 1917


Painlevé's Second Ministry, 17 April – 29 October 1925


Painlevé's Third Ministry, 29 October – 28 November 1925

See also


  1. Smart, Nick (1996). "The Maginot Line: An Indestructible Inheritance". International Journal of Heritage Studies. 2 (4): 222–233. doi:10.1080/13527259608722177.
  2. Thomas, Martin (2005). "Albert Sarraut, French Colonial Development, and the Communist Threat, 1919–1930". Journal of Modern History. 77 (4): 917–955. doi:10.1086/499830.
  3. 1 2 3 4 5 6 7 8 9 10 11 O'Connor, John J.; Robertson, Edmund F., "Paul Painlevé", MacTutor History of Mathematics archive, University of St Andrews.
  4. Painlevé, P. (1897). Lecons, sur la theorie analytique des equations differentielles, professees a Stockholm... Paris: Libraire Scientifique à Hermann.
  5. Ablowitz, M. J. and Clarkson, P.A. (1991) Solitons, nonlinear evolution equations and inverse scattering. Cambridge University Press
  6. Wu, T. T.; B. M. McCoy; C. A. Tracy; E. Barouch (1976). "Spin-spin correlation functions for the two-dimensional Ising model: Exact theory in the scaling region". Phys. B. 13: 316–374. Bibcode:1976PhRvB..13..316W. doi:10.1103/PhysRevB.13.316.
  7. Jimbo, Michio; Tetsuji Miwa; Yasuko Môri; Mikio Sato (April 1980). "Density matrix of an impenetrable Bose gas and the fifth Painlevé transcendent". Physica. D. Elsevier B.V. 1 (1): 80–158. Bibcode:1980PhyD....1...80J. doi:10.1016/0167-2789(80)90006-8.
  8. Tracy, C. A.; H. Widom (1997). "On Exact Solutions to the Cylindrical Poisson-Boltzmann Equation with Applications to Polyelectrolytes". Physica. A. 244: 402–413. arXiv:cond-mat/9701067Freely accessible. Bibcode:1997PhyA..244..402T. doi:10.1016/S0378-4371(97)00229-X.
  9. Diacu, Florin N. (1993). "Painlevé's Conjecture". The Mathematical Intelligencer. 13 (2): 6. doi:10.1007/BF03024186.
  10. Harry Graf Kessler. "Berlin. 20. February 1925. Freitag" [Diary entry for Berlin 25 February 1925]. Projekt Gutenberg.
  11. Michael A. Ainslie Principles of Sonar Performance Modelling, Springer, 2010 ISBN 3-540-87661-8, page 13
  12. 1 2 3 4 "Paul Painlevé" in Encyclopædia Britannica
  13. Cockfield, Jamie H. (1999). With snow on their boots : the tragic odyssey of the Russian Expeditionary Force in France during World War I (1st St. Martin's Griffin ed.). New York: St. Martin's Griffin. p. 137. ISBN 978-0312220822.
  14. Keegan, John (2003). The First World War. UK: Random House. p. 403. ISBN 0-7126-8040-3.
  15. "Édouard Herriot" in Encyclopædia Britannica
  16. "Painlevé To Be Buried in Pantheon Today". The New York Times. 4 November 1933. p. 13. Retrieved 29 August 2011.
  17. Polmar, Norman; Genda, Minoru (2006). Aircraft Carriers: A History of Carrier Aviation and Its Influence on World Events. Washington, DC: Potomac Books, Inc. p. 86. ISBN 978-1-57488-664-1.
  18. Schmadel, Lutz D.; International Astronomical Union (2003). Dictionary of minor planet names. Berlin; New York: Springer-Verlag. p. 84. ISBN 978-3-540-00238-3.

Further reading

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Political offices
Preceded by
Alexandre Ribot
Prime Minister of France
Succeeded by
Georges Clemenceau
Preceded by
Édouard Herriot
Prime Minister of France
Succeeded by
Aristide Briand
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