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Jean Baptiste Joseph Fourier

Definition: Jean Baptiste Joseph Fourier

Jean Baptiste Joseph Fourier

Noun

1. French mathematician who developed Fourier analysis and studied the conduction of heat (1768-1830).

Source: WordNet 1.7.1 Copyright © 2001 by Princeton University. All rights reserved.
 


Synonyms: Jean Baptiste Joseph Fourier

Synonyms: Baron Jean Baptiste Joseph Fourier (n), Fourier (n). (additional references)

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Specialty Definition: Jean Baptiste Joseph Fourier

(From Wikipedia, the free Encyclopedia)

Jean Baptiste Joseph Fourier (March 21, 1768 - May 16, 1830) was a French mathematician and physicist who is best known for initiating the investigation of Fourier series.

He was born at Auxerre in the Yonne département of France, the son of a tailor, and was educated by the Benedictines. The commissions in the scientific corps of the army were reserved for those of good birth, and being thus ineligible he accepted a military lectureship on mathematics. He took a prominent part in his own district in promoting the revolution, and was rewarded by an appointment in 1795 in the Normal school, and subsequently by a chair in the Polytechnic school.

Fourier went with Napoleon on his Eastern expedition in 1798, and was made governor of Lower Egypt. Cut off from France by the English fleet, he organized the workshops on which the French army had to rely for their munitions of war. He also contributed several mathematical papers to the Egyptian Institute which Napoleon founded at Cairo, with a view of weakening English influence in the East. After the British victories and the capitulation of the French under General Menou in 1801, Fourier returned to France, and was made prefect of Grenoble, and it was while there that he made his experiments on the propagation of heat. He moved to Paris in 1816. In 1822 he published his Théorie analytique de la chaleur, in which he bases his reasoning on Newton's law of cooling, namely, that the flow of heat between two adjacent molecules is proportional to the extremely small difference of their temperatures. In this work he shows that any functions of a variable, whether continuous or discontinuous, can be expanded in a series of sines of multiples of the variable - a result which is constantly used in modern analysis. Lagrange had given particular cases of the theorem, and had implied that the method was general, but he had not pursued the subject. Dirichlet was the first to give a satisfactory demonstration of it.

Fourier left an unfinished work on determinate equations which was edited by Navier, and published in 1831; this contains much original matter, in particular there is a demonstration of Fourier's theorem on the position of the roots of an algebraic equation. Lagrange had shown how the roots of an algebraic equation might be separated by means of another equation whose roots were the squares of the differences of the roots of the original equation. Budan, in 1807 and 1811, had enunciated the theorem generally known by the name of Fourier, but the demonstration was not altogether satisfactory. Fourier's proof is the same as that usually given in textbooks on the theory of equations. The final solution of the problem was given in 1829 by Jacques Charles François Sturm (1803--1855).

He died in Paris.

Reference

External link

Source: adapted by the editor from Wikipedia, the free encyclopedia under a copyleft GNU Free Documentation License (GFDL) from the article "Jean Baptiste Joseph Fourier."

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Crosswords: Jean Baptiste Joseph Fourier

English words defined with "Jean Baptiste Joseph Fourier": Baron Jean Baptiste Joseph Fourier. (references)

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Expression: Jean Baptiste Joseph Fourier

Expression using "Jean Baptiste Joseph Fourier": Baron Jean Baptiste Joseph Fourier. Additional references.

Source: compiled by the editor from various references; see credits.

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Alternative Orthography: Jean Baptiste Joseph Fourier


Hexadecimal (or equivalents, 770AD-1900s) (references)

4A 65 61 6E      42 61 70 74 69 73 74 65      4A 6F 73 65 70 68      46 6F 75 72 69 65 72

Leonardo da Vinci (1452-1519; backwards) (references)

            

Binary Code (1918-1938, probably earlier) (references)

01001010 01100101 01100001 01101110 00100000 01000010 01100001 01110000 01110100 01101001 01110011 01110100 01100101 00100000 01001010 01101111 01110011 01100101 01110000 01101000 00100000 01000110 01101111 01110101 01110010 01101001 01100101 01110010

HTML Code (1990) (references)

&#74 &#101 &#97 &#110 &#32 &#66 &#97 &#112 &#116 &#105 &#115 &#116 &#101 &#32 &#74 &#111 &#115 &#101 &#112 &#104 &#32 &#70 &#111 &#117 &#114 &#105 &#101 &#114

ISO 10646 (1991-1993) (references)

004A 0065 0061 006E      0042 0061 0070 0074 0069 0073 0074 0065      004A 006F 0073 0065 0070 0068      0046 006F 0075 0072 0069 0065 0072

Encryption (beginner's substitution cypher): (references)

44716780236678286758586712448185718274240818784757184

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INDEX

1. Definition
2. Synonyms
3. Crosswords
4. Expressions
5. Orthography
6. Bibliography


  

Copyright © Philip M. Parker, INSEAD. Terms of Use.

 

 

 

 

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