Torricelli, Evangelista

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{{epname|Torricelli, Evangelista}}
 
[[image:Libr0367.jpg|thumb|220px|Evangelista Torricelli portrayed on the frontpage of ''Lezioni d'Evangelista Torricelli''.]]
 
[[image:Libr0367.jpg|thumb|220px|Evangelista Torricelli portrayed on the frontpage of ''Lezioni d'Evangelista Torricelli''.]]
'''Evangelista Torricelli''' ([[October 15]], [[1608]] – [[October 25]], [[1647]]) was an [[Italy|Italian]] [[physics|physicist]] and [[mathematics|mathematician]], best known for his invention of the [[barometer]].
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'''<<This article is rather short. Please flesh it out. Also add a "Legacy" section that summarizes his main accomplishments and the influence of his work on society at large.>>'''
  
==Biography==  
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'''Evangelista Torricelli''' (October 15, 1608 &ndash; October 25, 1647) was an [[Italy|Italian]] [[physics|physicist]] and [[mathematics|mathematician]], best known for his invention of the [[barometer]].
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==Biography==
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Torricelli was born in [[Faenza]] [[Papal States]]. He was left fatherless at an early age and educated under the care of his uncle, a [[Camaldolese]] monk, who first entered young Torricelli in a [[Jesuit]] College in 1624 to study mathematics and philosophy until 1626, when he sent Toricelli to [[Rome]] in 1627 to study science under the [[Benedictine]] [[Benedetto Castelli]], professor of [[mathematics]] at the [[Collegio della Sapienza]] in [[Pisa]].   
 
Torricelli was born in [[Faenza]] [[Papal States]]. He was left fatherless at an early age and educated under the care of his uncle, a [[Camaldolese]] monk, who first entered young Torricelli in a [[Jesuit]] College in 1624 to study mathematics and philosophy until 1626, when he sent Toricelli to [[Rome]] in 1627 to study science under the [[Benedictine]] [[Benedetto Castelli]], professor of [[mathematics]] at the [[Collegio della Sapienza]] in [[Pisa]].   
 
        
 
        
In 1632, shortly after the publication of [[Galileo]]'s ''Dialogue concerning the Two Chief World Systems'', Torricelli wrote to Galileo of reading it "with the delight [...] of one who, having already practised all of geometry most diligently [...] and having studied [[Ptolemy]] and seen almost everything of [[Tycho Brahe|Tycho [Brahe]]], [[Johannes Kepler|Kepler]] and [[Christian Sørensen Longomontanus|Longomontanus]], finally, forced by the many congruences, came to adhere to [[Nicolaus Copernicus|Copernicus]], and was a Galileian in profession and sect". (The Vatican condemned Galileo in June 1633, and this was the only known occasion on which Torricelli openly declared himself to hold the Copernican view.)   
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In 1632, shortly after the publication of [[Galileo]]'s ''Dialogue concerning the Two Chief World Systems'', Torricelli wrote to Galileo of reading it "with the delight [...] of one who, having already practised all of geometry most diligently [...] and having studied [[Ptolemy]] and seen almost everything of [[Tycho Brahe|Tycho [Brahe]]], [[Johannes Kepler|Kepler]] and [[Christian Sørensen Longomontanus|Longomontanus]], finally, forced by the many congruences, came to adhere to [[Nicolaus Copernicus|Copernicus]], and was a Galileian in profession and sect." (The Vatican condemned Galileo in June 1633, and this was the only known occasion on which Torricelli openly declared himself to hold the Copernican view.)   
[[Image:Evangelista Torricelli - Museo di Storia Naturale di Firenze.JPG|thumb|200px|right| Torricelli's statue in the Museo di Storia Naturale di Firenze.|left]]  
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[[Image:Evangelista Torricelli - Museo di Storia Naturale di Firenze.JPG|thumb|200px|right| Torricelli's statue in the Museo di Storia Naturale di Firenze.]]
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Aside from several letters, little is known of Torricelli's activities in the years between 1632 and 1641, when Castelli sent Torricelli's monograph of the path of projectiles to Galileo, then a prisoner in his villa at [[Arcetri]]. Although Galileo promptly invited Torricelli to visit, he did not accept until just three months before Galileo's death. During his stay, however, he wrote out Galileo's Discourse of the Fifth day. After Galileo's death on January 8, 1642, Grand Duke [[Ferdinando II de' Medici]] asked him to succeed Galileo as the grand-ducal mathematician and professor of mathematics in the [[University of Pisa]]. In this role he solved some of the great mathematical problems of the day, such as finding a [[cycloid]]'s area and center of gravity. He also designed and built a number of telescopes and simple microscopes; several large lenses, engraved with his name, are still preserved at Florence. In 1644, he famously wrote in a letter: "We live submerged at the bottom of an ocean of air."
 
Aside from several letters, little is known of Torricelli's activities in the years between 1632 and 1641, when Castelli sent Torricelli's monograph of the path of projectiles to Galileo, then a prisoner in his villa at [[Arcetri]]. Although Galileo promptly invited Torricelli to visit, he did not accept until just three months before Galileo's death. During his stay, however, he wrote out Galileo's Discourse of the Fifth day. After Galileo's death on January 8, 1642, Grand Duke [[Ferdinando II de' Medici]] asked him to succeed Galileo as the grand-ducal mathematician and professor of mathematics in the [[University of Pisa]]. In this role he solved some of the great mathematical problems of the day, such as finding a [[cycloid]]'s area and center of gravity. He also designed and built a number of telescopes and simple microscopes; several large lenses, engraved with his name, are still preserved at Florence. In 1644, he famously wrote in a letter: "We live submerged at the bottom of an ocean of air."
 
      
 
      
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== Contributions to physics ==
 
== Contributions to physics ==
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Torricelli's chief invention was the barometer, which arose from solving an important practical problem. Pumpmakers of the Grand Duke of Tuscany attempted to raise water to a height of 12 meters or more, but found that 10 meters was the limit to which it would rise in the suction pump. Torricelli thought to employ [[mercury (element)|mercury]], fourteen times as heavy as water. In 1643 he created a tube c. 1 meters long, sealed at the top end, filled it with mercury, and set it vertically into a basin of mercury. The column of mercury fell to about 70cm, leaving a Torricellian vacuum above. As we now know, the column's height fluctuated with changing atmospheric pressure; this was the first barometer. This discovery has perpetuated his fame, and the [[torr]], a unit of [[pressure]], was named in his honor.
 
Torricelli's chief invention was the barometer, which arose from solving an important practical problem. Pumpmakers of the Grand Duke of Tuscany attempted to raise water to a height of 12 meters or more, but found that 10 meters was the limit to which it would rise in the suction pump. Torricelli thought to employ [[mercury (element)|mercury]], fourteen times as heavy as water. In 1643 he created a tube c. 1 meters long, sealed at the top end, filled it with mercury, and set it vertically into a basin of mercury. The column of mercury fell to about 70cm, leaving a Torricellian vacuum above. As we now know, the column's height fluctuated with changing atmospheric pressure; this was the first barometer. This discovery has perpetuated his fame, and the [[torr]], a unit of [[pressure]], was named in his honor.
  
 
Torricelli also discovered [[Torricelli's Law]], regarding the speed of a fluid flowing out of an opening, which was later shown to be a particular case of [[Bernoulli's principle]].
 
Torricelli also discovered [[Torricelli's Law]], regarding the speed of a fluid flowing out of an opening, which was later shown to be a particular case of [[Bernoulli's principle]].
 
== See also ==
 
*[[Torricelli's equation]]
 
*[[Torricelli's Law]]
 
*Torricelli/[[Fermat point]]
 
*[[Gabriel's horn]]
 
  
 
== Selected works ==
 
== Selected works ==
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* ''Esperienza dell'argento vivo'', reprint, Berlin, 1897
 
* ''Esperienza dell'argento vivo'', reprint, Berlin, 1897
  
== External links ==
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== See also ==
* [http://www-gap.dcs.st-and.ac.uk/~history/Biographies/Torricelli.html Article on Torricelli at MacTutor]
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* [http://galileo.imss.firenze.it/multi/torricel/index.html University of Florence article]
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*[[Torricelli's equation]]
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*[[Torricelli's Law]]
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*[[Fermat point]]
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*[[Gabriel's horn]]
  
 
== References ==
 
== References ==
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'''<<We need at least 3 reliable references here, formatted according to our guidelines.>>'''
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* Weil, André, ''Prehistory of the Zeta-Function'', in Number Theory, Trace Formulas and Discrete Groups, Aubert, Bombieri and Goldfeld, eds., Academic Press, 1989
 
* Weil, André, ''Prehistory of the Zeta-Function'', in Number Theory, Trace Formulas and Discrete Groups, Aubert, Bombieri and Goldfeld, eds., Academic Press, 1989
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* de Gandt, ''l'oeuvre de Torricelli'', Les Belles Lettres, 1987
 
* de Gandt, ''l'oeuvre de Torricelli'', Les Belles Lettres, 1987
  
{{DEFAULTSORT:Torricelli, Evangelista}}
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== External links ==
[[Category:1608 births]]
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[[Category:1647 deaths]]
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* [http://www-gap.dcs.st-and.ac.uk/~history/Biographies/Torricelli.html Article on Torricelli at MacTutor]
[[Category:People from Emilia-Romagna]]
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* [http://galileo.imss.firenze.it/multi/torricel/index.html University of Florence article]
[[Category:17th century mathematicians]]
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[[Category:Italian mathematicians]]
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[[Category:Physical sciences]]
[[Category:Italian inventors]]
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[[Category:Biography]]
[[Category:Scientific instrument makers]]
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[[Category:Mathematicians]]
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[[Category:Physicists]]
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[[Category:Inventors]]
  
[[bs:Evangelista Torricelli]]
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[[ko:에반젤리스타 토리첼리]]
 
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[[he:אוונג'ליסטה טוריצ'לי]]
 
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[[zh:托里拆利]]
 

Revision as of 19:52, 7 November 2007

Evangelista Torricelli portrayed on the frontpage of Lezioni d'Evangelista Torricelli.

<<This article is rather short. Please flesh it out. Also add a "Legacy" section that summarizes his main accomplishments and the influence of his work on society at large.>>

Evangelista Torricelli (October 15, 1608 – October 25, 1647) was an Italian physicist and mathematician, best known for his invention of the barometer.

Biography

Torricelli was born in Faenza Papal States. He was left fatherless at an early age and educated under the care of his uncle, a Camaldolese monk, who first entered young Torricelli in a Jesuit College in 1624 to study mathematics and philosophy until 1626, when he sent Toricelli to Rome in 1627 to study science under the Benedictine Benedetto Castelli, professor of mathematics at the Collegio della Sapienza in Pisa.

In 1632, shortly after the publication of Galileo's Dialogue concerning the Two Chief World Systems, Torricelli wrote to Galileo of reading it "with the delight [...] of one who, having already practised all of geometry most diligently [...] and having studied Ptolemy and seen almost everything of Tycho [Brahe], Kepler and Longomontanus, finally, forced by the many congruences, came to adhere to Copernicus, and was a Galileian in profession and sect." (The Vatican condemned Galileo in June 1633, and this was the only known occasion on which Torricelli openly declared himself to hold the Copernican view.)

Torricelli's statue in the Museo di Storia Naturale di Firenze.

Aside from several letters, little is known of Torricelli's activities in the years between 1632 and 1641, when Castelli sent Torricelli's monograph of the path of projectiles to Galileo, then a prisoner in his villa at Arcetri. Although Galileo promptly invited Torricelli to visit, he did not accept until just three months before Galileo's death. During his stay, however, he wrote out Galileo's Discourse of the Fifth day. After Galileo's death on January 8, 1642, Grand Duke Ferdinando II de' Medici asked him to succeed Galileo as the grand-ducal mathematician and professor of mathematics in the University of Pisa. In this role he solved some of the great mathematical problems of the day, such as finding a cycloid's area and center of gravity. He also designed and built a number of telescopes and simple microscopes; several large lenses, engraved with his name, are still preserved at Florence. In 1644, he famously wrote in a letter: "We live submerged at the bottom of an ocean of air."

Torricelli died in Florence a few days after having contracted typhoid fever, and was buried in San Lorenzo. The asteroid (7437) Torricelli was named in his honor.

Contributions to physics

Torricelli's chief invention was the barometer, which arose from solving an important practical problem. Pumpmakers of the Grand Duke of Tuscany attempted to raise water to a height of 12 meters or more, but found that 10 meters was the limit to which it would rise in the suction pump. Torricelli thought to employ mercury, fourteen times as heavy as water. In 1643 he created a tube c. 1 meters long, sealed at the top end, filled it with mercury, and set it vertically into a basin of mercury. The column of mercury fell to about 70cm, leaving a Torricellian vacuum above. As we now know, the column's height fluctuated with changing atmospheric pressure; this was the first barometer. This discovery has perpetuated his fame, and the torr, a unit of pressure, was named in his honor.

Torricelli also discovered Torricelli's Law, regarding the speed of a fluid flowing out of an opening, which was later shown to be a particular case of Bernoulli's principle.

Selected works

His manuscripts are preserved at Florence, Italy. The following have appeared in print:

  • Trattato del moto, Florence, before 1641
  • Opera geometrica, Florence, 1644
  • Lezioni accademiche, Florence, printed 1715
  • Esperienza dell'argento vivo, reprint, Berlin, 1897

See also

  • Torricelli's equation
  • Torricelli's Law
  • Fermat point
  • Gabriel's horn

References
ISBN links support NWE through referral fees

<<We need at least 3 reliable references here, formatted according to our guidelines.>>

  • Weil, André, Prehistory of the Zeta-Function, in Number Theory, Trace Formulas and Discrete Groups, Aubert, Bombieri and Goldfeld, eds., Academic Press, 1989
  • de Gandt, l'oeuvre de Torricelli, Les Belles Lettres, 1987

External links

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