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         De Coriolis Gustave:     more detail
  1. French Engineers: Émile Baudot, Pierre Schaeffer, Gaspard-Gustave Coriolis, Villard de Honnecourt, Charles Deutsch, Robert Choulet
  2. Large yield intensive culture: How 80,000 pounds of potatoes, 55 bushels of wheat, 135 bushels of oats and 80 bushels of barley may be produced, to the ... a new system of culture introduced in Canada by Gustave de Coriolis, 1907
  3. Theorie Mathematique des Effets du Jeu de Billard (Billiards). by Gaspard-Gustave de. CORIOLIS, 1835

61. Allmath.com - Math Site For Kids! Home Of Flashcards, Math
Click Here coriolis, gustaveGaspard. koriohlis (17921843). Mathematicianand engineer, born in Paris, France. He was assistant
http://www.allmath.com/biosearch.php?QMeth=ID&ID=8147

62. USATODAY.com
In 1835, gustaveGaspard coriolis, a French scientist, first described mathematically what's going on, giving his name to the coriolis force
http://www.usatoday.com/weather/wcorioli.htm

63. Search Results For Profondeur Du Corps - Encyclopædia Britannica
4), coriolis, gustaveGaspard coriolis, detail of a portrait by Zéphirin Belliard,19th century, after a painting by Jean …French engineer and mathematician
http://www.britannica.com/search?query=profondeur du corps&ct=&fuzzy=N

64. Coriolis, Gaspard-Gustave (1792-1843) -- From Eric Weisstein's World Of Scientif
coriolis, Gaspardgustave (1792-1843), This entry contributed by MichelBarran. French mathematician who entered the École Polytechnique
http://scienceworld.wolfram.com/biography/Coriolis.html
Branch of Science Mathematicians Branch of Science Physicists ... Barran
Coriolis, Gaspard-Gustave (1792-1843)

This entry contributed by Michel Barran Cauchy Navier Dulong Coriolis studied mechanics and engineering mathematics, in particular friction hydraulics , machine performance, and ergonomics. He introduced the terms ` work and ` kinetic energy with their present scientific meaning. It is not the ideas of 'work' for which Coriolis is best remembered, however, rather it is for the Coriolis force which appears in the paper "Sur les équations du mouvement relatif des systèmes de corps" (1835). In this paper, Coriolis showed that the laws of motion could be used in a rotating frame of reference if an extra force called the Coriolis acceleration is added to the equations of motion. The theorem enunciated by him regarding relative motions has found numerous applications, particularly in the case of motion on the surface of the Earth (e.g., the deviation toward the east of falling bodies, the apparent rotation of the plane of vibration of a Foucault pendulum etc.).

65. Coriolis
coriolis, gustaveGaspard (szül. 1792. máj. 21. Párizs, Franciaország- megh. 1843. szept. 19. Párizs), francia mérnök és
http://www.mezgazd-koszeg.sulinet.hu/kemia/DATA/Tudosok/data/coriolis.html

66. Gaspard-Gustave Coriolis - Encyclopedia Article About Gaspard-Gustave Coriolis.
encyclopedia article about Gaspardgustave coriolis. Gaspard-gustave coriolisin Free online English dictionary, thesaurus and encyclopedia.
http://encyclopedia.thefreedictionary.com/Gaspard-Gustave Coriolis
Dictionaries: General Computing Medical Legal Encyclopedia
Gaspard-Gustave Coriolis
Word: Word Starts with Ends with Definition Gaspard-Gustave de Coriolis May 21 May 21 is the 141st day of the year in the Gregorian calendar (142nd in leap years). There are 224 days remaining.
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67. Gustave Coriolis, And The Coriolis Effect
gustave coriolis, and the coriolis effect. gustave Gaspard coriolis was born in 1792in Paris of an aristocratic family impoverished by the French Revolution.
http://www-das.uwyo.edu/~geerts/cwx/notes/chap11/gustave.html
Gustave Coriolis, and the Coriolis effect
E. Linacre and B. Geerts Gustave Gaspard Coriolis was born in 1792 in Paris of an aristocratic family impoverished by the French Revolution. He studied mathematics, became an academic and published a book ‘Calculation of the Effect of Machines’ in 1829. In 1835 he published his famous paper ‘On the equations of relative motion of a system of bodies’. The explanation of the effect sprang from problems of early 19th-century industry, i.e. rotating machines like water-wheels. Coriolis died in 1843 while working on a revision of his book, and he never applied his theory to ocean or atmospheric circulations, nor to its implication on the firing of ballistic missiles . It was William Ferrel who deduced in 1856 that the direction of winds tends towards a direction along the isobars , leading to C.H.D. Buys Ballot publishing his rule (Section 11.4) in 1857. Coriolis regarded the effect he had discovered as the result of a complementary centrifugal force due to the rotation of the frame of reference. For him this force was no more fictitious than the usual centrifugal force. This way of thinking has some advantages in explaining meteorological processes. It is based on the two principles, of the conservation of angular momentum and conservation of rotational kinetic energy. These principles differ from that of the conservation of linear momentum, i.e. of absolute velocity, applied by George Hadley in 1735 to explain Trade winds. A fascinating consideration is the case of the rotating skater who folds her arms inwards, and thereby spins faster because her angular momentum (I x

68. Effektkoefficienten
This apparent bending force is known as the coriolis force. (Named afterthe French mathematician gustave Gaspard coriolis 17921843).
http://www.windpower.org/en/tour/wres/coriolis.htm
The Coriolis Force Since the globe is rotating, any movement on the Northern hemisphere is diverted to the right, if we look at it from our own position on the ground. (In the southern hemisphere it is bent to the left). This apparent bending force is known as the Coriolis force. (Named after the French mathematician Gustave Gaspard Coriolis 1792-1843). It may not be obvious to you that a particle moving on the northern hemisphere will be bending towards the right. Consider this red cone moving southward in the direction of the tip of the cone. The earth is spinning, while we watch the spectacle from a camera fixed in outer space. The cone is moving straight towards the south. Note that the red cone is veering in a curve towards the right as it moves. The reason why it is not following the direction in which the cone is pointing is, of course, that we as observers are rotating along with the globe. Here we show the same image with the camera locked on to the globe. Here we show the same image,with the camera fixed in outer space, while the earth rotates.

69. Gustave-Gaspard Coriolis Store
store. Click here for gustaveGaspard coriolis and gustave-Gaspardcoriolis related products. gustave-Gaspard coriolis Store Buy
http://www.mathbook.com/bio/c/Gustave_Gaspard_Coriolis/
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70. Gustave-Gaspard Coriolis Store
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71. Dictionnaire
Translate this page donné son nom. © Larousse 1996. coriolis (gustave Gaspard). Ingénieuret mathématicien français (Paris 1792 - id. 1843). Il a
http://perso.club-internet.fr/gatt/BTSCIRA/cours/Dico.htm
Famille Bernouilli
Jacques Ier Jean Ier Daniel Ier
Larousse 1996 Photo : Le petit Robert
Celsius (Anders)
Coriolis (Gustave Gaspard)
Doppler (Christian)
Fahrenheit (Daniel Gabriel)
Joule (James Prescott)
Jurin (James)
Larousse 1996
Kirchhoff (Gustav Robert)
Peltier (Jean Charles Athanase)
Pitot (Henri)
Larousse 1996
Planck (Max)
Reynolds (Osborn)
Seebeck (Thomas Johann)
Thomson (Elihu)
Thomson (sir Joseph John)
Thomson (Willian) Lord Kelvin
Torricelli (Evengelista)
Larousse 1996
Venturi (Giovanni Batista)
Larousse 1996
Volta (Alessandro, comte)
Wheaststone (Sir Charles)

72. Gaspard-Gustave Coriolis
Gaspardgustave coriolis. Gaspard-gustave jej. On je nekdy jmenovaný jakgustave-Gaspard coriolis, gustave coriolis a variace thereof. Toto
http://wikipedia.infostar.cz/g/ga/gaspard_gustave_coriolis.html
švodn­ str¡nka Tato str¡nka v origin¡le
Gaspard-Gustave Coriolis
Gaspard-Gustave de Coriolis FrancouzÅ¡tina inžen½r a vědec . Jeho z¡jem na dynamice točiv½ch strojů vedl jej, aby poch¡zel diferenci¡ln­ rovnice pohybu od stanoviska syst©m osy kter½ s¡m toč­, kter½ on nejprve představoval v k Acad � mie des vědy. N¡ležit½ k důležitosti t©to pr¡ce, Coriolis ºÄinek je jmenov¡n pro něj. On je někdy odkazoval se na jak Gustave-Gaspard Coriolis Gustave Coriolis a variace thereof.
Toto je strojov½ překlad čl¡nku z encyklopedie Wikipedia . Cel½ text je dostupn½ za podm­nek GNU FDL licence

73. Gaspard-Gustave Coriolis
Article on Gaspardgustave coriolis from WorldHistory.com, licensedfrom Wikipedia, the free encyclopedia. Gaspard-gustave coriolis.
http://www.worldhistory.com/wiki/G/Gaspard-Gustave-Coriolis.htm
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Gaspard-Gustave Coriolis
Gaspard-Gustave de Coriolis (May 21 September 19 French engineer and scientist . His interest in the dynamics of rotating machines led him to derive the differential equations of motion from the point of view of a coordinate system which is itself rotating, which he first presented in to the Académie des Sciences. Due to the importance of this work, the Coriolis effect is named for him. He is sometimes referred to as Gustave-Gaspard Coriolis Gustave Coriolis and variations thereof. link title
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74. Gaspard-Gustave Coriolis - Information
An online Encyclopedia with information and facts GaspardGustaveCoriolis - Information, and a wide range of other subjects.
http://www.book-spot.co.uk/index.php/Gaspard-Gustave_Coriolis
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pl:Gaspard-Gustave Coriolis
Gaspard-Gustave de Coriolis May 21 September 19 French engineer and scientist . His interest in the dynamics of rotating machines led him to derive the differential equations of motion from the point of view of a coordinate system which is itself rotating, which he first presented in to the Académie des Sciences. Due to the importance of this work, the Coriolis effect is named for him. He is sometimes referred to as Gustave-Gaspard Coriolis Gustave Coriolis and variations thereof. All text is available under the terms of the GNU Free Documentation License (see for details). . Wikipedia is powered by MediaWiki , an open source wiki engine.

75. Mouvements Relatifs
Translate this page et des composantes des accélérations dans les deux repères. NB coriolis gustave-Gaspard (1792-1843) mécanicien français.
http://www.univ-lemans.fr/enseignements/physique/02/meca/manege.html
Mouvements relatifs Présentation :
Un enfant parcourt avec une vitesse uniforme un diamètre d'un manège circulaire qui tourne avec une vitesse angulaire constante. On cherche quelle est la trajectoire de l'enfant dans un repère lié au sol .
Quand un mouvement d'entraînement n'est pas un mouvement de translation, l'accélération absolue du point est égale à la somme de trois accélérations : l'accélération relative qui caractérise la variation de la vitesse relative dans le mouvement relatif (ici = 0) , l'accélération d'entraînement qui caractérise la variation de la vitesse d'entraînement (ici = accélération centrifuge) et l'accélération de Coriolis qui caractérise les variations de la vitesse relative dans le mouvement d'entraînement et de la vitesse d'entraînement dans le mouvement relatif.
Cliquer ici pour accéder au calcul des positions, des vitesses et des composantes des accélérations dans les deux repères.
NB : Coriolis Gustave-Gaspard (1792-1843) mécanicien français.
L'applet :
Les axes fixes (XoY) sont tracés en bleu foncé et les axes mobiles (X'oY') en gris foncé. La trajectoire du mobile est tracée en rouge.

76. Editions Jacques Gabay - Gaspard-Gustave CORIOLIS
Translate this page Gaspard-gustave coriolis. Gaspard-gustave coriolis. 1792 - 1843. Au cataloguedes Editions Jacques Gabay coriolis Théorie mathématique
http://www.gabay.com/sources/Liste_Bio.asp?NP=CORIOLIS Gaspard-Gustave

77. USATODAY.com
In 1835, gustaveGaspard coriolis, a French scientist, first described mathematicallywhat s going on, giving his name to the coriolis force.
http://www.usatoday.com/weather/resources/basics/coriolis-understanding.htm
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05/15/2003 - Updated 03:22 PM ET Understanding the Coriolis force Pressure differences tend to push winds in straight paths. Yet winds follow curved paths across the Earth. In 1835, Gustave-Gaspard Coriolis, a French scientist, first described mathematically what's going on, giving his name to the Coriolis force. In simple terms, as air begins flowing from high to low pressure, the Earth rotates under it, making the wind follow a curved path. In the Northern Hemisphere, the wind turns to the right of its direction of motion. In the Southern Hemisphere, it turns to the left. The Coriolis force is zero at the equator. You might be wondering: If the Coriolis force turns winds to the right in the Northern Hemisphere, why do winds go counterclockwise around large systems, such as hurricanes, north of the equator? This happens because Coriolis is only one of the forces acting on air to cause winds. In simple terms, in the Northern Hemisphere, while the Coriolis force is pushing the wind toward the right, the pressure-gradient force, caused by air pressure differences, is pushing the air toward the center of the area of low pressure, and for various reasons is stronger then the Coriolis force.

78. Coriolis
gustave coriolis was assistant professor of mathematics at the École Polytechnique,Paris from 1816 to 1838 and studied mechanics and engineering mathematics.
http://intranet.woodvillehs.sa.edu.au/pages/resources/maths/History/Crls.htm
Gustave Gaspard de Coriolis
Born: 21 May 1792 in Paris, France
Died: 19 Sept 1843 in Paris, France
Show birthplace location Previous (Chronologically) Next Biographies Index
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(Alphabetically) Next Welcome page Gustave Coriolis (1835). He showed that the laws of motion could be used in a rotating frame of reference if an extra force called the Coriolis acceleration is added to the equations of motion. Coriolis also introduced the terms 'work' and 'kinetic energy' with their present scientific meaning. In 1835 Coriolis wrote on a mathematical theory of billiards in . He also wrote
solides
References (4 books/articles) References elsewhere in this archive: A poster of this mathematician is available Rue Coriolis is in the 8th Arrondissement in Paris. You can see a list of Paris streets named after mathematicians in our archive. There is a Crater Coriolis on the moon. You can see a list of lunar features named after mathematicians. Coriolis is one of the scientists commemorated on the Eiffel Tower in Paris. You can see a list of such mathematicians Other Web sites: The Catholic Encyclopedia at Colorado, USA

79. SMHI
Gaspard gustave coriolis (17921843). Gaspard gustave coriolis var sontill en adelsman som under franska revolutionen kommit på obestånd.
http://www.smhi.se/sgn0102/n0201/coriolis2.htm
Gaspard Gustave Coriolis (1792-1843)
Den unge Gaspard visade tidigt anmärkningsvärda talanger och vann vid 18 års ålder tillträde till den prestigefyllda École Polytechnique. Samma år som Napoleon led nederlag vid Waterloo, 1815, blev Coriolis anställd som lärare vid skolan. Detta skedde trots motstånd från en del av hans adliga släktingar som förfasade sig att han skulle bli "en simpel skolmästare".
mv m v dess hastighet.
Gaspard Coriolis
Corioliseffekter i rymden
Fenomen Tromber Halo Dimma
Gaspard Gustave Coriolis (1792-1843)
Rektorn för École Polytechnique var en inbiten biljardspelare. För att förbättra sin skicklighet ville han skaffa sig en djupare förståelse av varför och hur bollarna rullar och studsar som de gör. Han gav Coriolis i uppdrag att utreda saken och denne publicerade 1832 en bok om "Den matematiska teorin för biljardspelet". Med detta hade Coriolis kommit att intressera sig för roterande system, i synnerhet maskiner med roterande delar. Under de följande tre åren publicerade han två artiklar om dynamiken hos sådana system. Det är i den andra artikeln, från 1835, som "corioliskraften" presenteras för första gången.

80. Worldwide Coriolis Flowmeter Market
reference. coriolis meters are named after gustave coriolis, a Frenchmathematician who discovered the principle in 1835. The force
http://www.flowresearch.com/WorldflowStudy/Worldcoriolisflow.htm
Worldflow ™ Volume I: Worldwide Coriolis Flowmeter Market
Coriolis flowmeters are a unique phenomenon among flowmeter types. Rather than measuring volumetric flow as most flowmeters do, these twisting meters measure mass flow. While they are known for their high accuracy, their size limits them for most practical purposes to line sizes of six inches or less. While Coriolis flowmeters have a relatively high initial cost, their low maintenance reduces their total cost of ownership.
Operating Principle: The Twist
Coriolis flowmeters rely on a principle according to which inertial force must be taken into account when describing the motion of bodies in a rotating frame of reference. Coriolis meters are named after Gustave Coriolis , a French mathematician who discovered the principle in 1835. The force that acts according to this principle is called the Coriolis force. Coriolis flowmeters contain one or more vibrating tubes. As the fluid to be measured passes through the tubes, it accelerates at it reaches the point of maximum vibration. It then decelerates as it leaves this point.

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