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Jac Londe

Introduction à PHP - 0 views

  • Qu'est-ce que PHP? PHP est un langage interprété (un langage de script) exécuté du côté serveur (comme les scripts CGI, ASP, ...) et non du côté client (un script écrit en Javascript ou une applet Java s'exécute sur votre ordinateur...). La syntaxe du langage provient de celles du langage C, du Perl et de Java. Ses principaux atouts sont : Une grande communauté de développeurs partageant des centaines de milliers d'exemples de script PHP ; La gratuité et la disponibilité du code source (PHP est distribué sous licence GNU GPL) ; La simplicité d'écriture de scripts ; La possibilité d'inclure le script PHP au sein d'une page HTML (contrairement aux scripts CGi, pour lesquels il faut écrire des lignes de code pour afficher chaque ligne en langage HTML) ; La simplicité d'interfaçage avec des bases de données (de nombreux SGBD sont supportés, mais le plus utilisé avec ce langage est MySQL, un SGBD gratuit disponible sur de nombreuses plateformes : Unix, Linux, Windows, MacOs X, Solaris, etc...) ; L'intégration au sein de nombreux serveurs web (Apache, Microsoft IIS, etc.).
  • Origines de PHP Le langage PHP a été mis au point au début d'automne 1994 par Rasmus Lerdorf. Ce langage de script lui permettait de conserver la trace des utilisateurs venant consulter son CV sur son site, grâce à l'accès à une base de données par l'intermédiaire de requêtes SQL. Ainsi, étant donné que de nombreux internautes lui demandèrent ce programme, Rasmus Lerdorf mit en ligne en 1995 la première version de ce programme qu'il baptisa Personal Sommaire Page Tools, puis Personal Home Page v1.0
Jac Londe

PHP MySQL tutorial - 0 views

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Jac Londe

PHP Simple HTML DOM Parser - 0 views

  • A HTML DOM parser written in PHP5+ let you manipulate HTML in a very easy way! Require PHP 5+. Supports invalid HTML. Find tags on an HTML page with selectors just like jQuery. Extract contents from HTML in a single line.
  • // Create DOM from string $html = str_get_html('<div id="hello">Hello</div><div id="world">World</div>'); $html->find('div', 1)->class = 'bar'; $html->find('div[id=hello]', 0)->innertext = 'foo'; echo $html; // Output: <div id="hello">foo</div><div id="world" class="bar">World</div>
Jac Londe

Google Maps sur votre page web - 0 views

    • Jac Londe
       
      Interesting ! Javascript ou PHP pour GoogleMap
  • Ah oui ! J'allais oublié de vous donner des précisions sur les caractéristiques :
  • Structure de votre carte
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  • Type de vue
  • L'échelle et la vue d'ensemble
  • Les pointeurs
  • Les options pour les pointeurs
  • Sidebarre
  • Les messages d'erreurs
  • Autres
  • nous allons utiliser une classe Php de Google Maps appelée "GoogleMapAPI V2.5"
  • Pour cela, il faut télécharger cette classe PHP : "GoogleMapAPI V2.5"
  • La seconde étape consiste à obtenir la clef de Google pour utiliser ce script
  • Google Maps sur votre page web
Jac Londe

SIP Communicator - 0 views

  • SIP Communicator - the Java VoIP and Instant Messaging client.
  • SIP Communicator is an audio/video Internet phone and instant messenger that supports some of the most popular VoIP and instant messaging protocols such as SIP, Jabber, AIM/ICQ, MSN, Yahoo! Messenger, Bonjour, IRC and a whole lot of other useful features.
  • SIP Communicator is completely Open Source / Free Software, and is freely available under the terms of the GNU Lesser General Public License.
Jac Londe

Google Hack - 0 views

shared by Jac Londe on 05 Dec 10 - Cached
  •  
    -inurl:(htm|html|php) intitle:"index of" +"last modified" +"parent directory" +description +size +(wma|mp3) "Beatles"
Jac Londe

Internet Archive: Wayback Machine - 0 views

  • Browse through over 150 billion web pages archived from 1996 to a few months ago. To start surfing the Wayback, type in the web address of a site or page where you would like to start, and press enter. Then select from the archived dates available. The resulting pages point to other archived pages at as close a date as possible. Keyword searching is not currently supported.
Jac Londe

NFC Antennas - 1 views

  • So NFC is just a method of communication between two devices at short distance. What makes the NFC antenna design simple or easy? If you know much about antennas, the first question you might ask is what is the operating frequency of NFC. It turns out that these devices operate around 13.56 MHz. The corresponding wavelength is 22 meters long - this means to get a nice half-wave dipole antenna (that radiates well) we would need a device about 11 meters in length.
  • he NFC antenna area may be limited to 3"x1" (or 7 cm * 2.5 cm). Hence, we are talking about fitting an antenna i
  • to a volume where the maximum linear dimension is about 0.5% or less of a wavelength. And from antenna theo
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  • y, we know that you won't get any radiation out of such a small device.
  •  
    Longueur d'onde précise.
Jac Londe

La diode LED : cours et principe de fonctionnement - 0 views

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    Notions d'électroluminescence, caractéristiques optiques avec spectres d'émission et diagramme de rayonnement, étude électrique du point de fonctionnement et constitution d'un réseau de leds.
Jac Londe

Weber (unit) - Wikipedia, the free encyclopedia - 0 views

  • Weber (unit) From Wikipedia, the free encyclopedia Jump to: navigation, search In physics, the weber (symbol: Wb;  /ˈveɪbər/, /ˈwɛbər/, or /ˈwiːbər/) is the SI unit of magnetic flux. A flux density of one Wb/m2 (one weber per square meter) is one tesla. The weber is named for the German physicist Wilhelm Eduard Weber (1804–1891). [edit] Definition
  • The weber may be defined in terms of Faraday's law, which relates a changing magnetic flux through a loop to the electric field around the loop. A change in flux of one weber per second will induce an electromotive force of one volt (produce an electric potential difference of one volt across two open-circuited terminals). Officially,
  • Weber (unit of magnetic flux) — The weber is the magnetic flux which, linking a circuit of one turn, would produce in it an electromotive force of 1 volt if it were reduced to zero at a uniform rate in 1 second.[1]
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  • In SI base units, the dimensions of the weber are (kg·m2)/(s2·A). The weber is commonly expressed in terms of other derived units as the Tesla-square meter (T·m2), volt-seconds (V·s), or joules per ampere (J/A). 1 Wb = 1 V·s = 1 T·m2 = 1 J/A = 108 Mx (maxwells).
Jac Londe

Metre - Wikipedia, the free encyclopedia - 0 views

  • Metre From Wikipedia, the free encyclopedia   (Redirected from Meter) Jump to: navigation, search This article is about the unit of length. For other uses of "metre" or "meter", see meter (disambiguation). 1 metre = SI units 100 cm 1000 mm US customary / Imperial units 3.2808 ft 39.370 in The metre (meter in the US), symbol m, is the base unit of length in the International System of Units (SI). Originally intended to be one ten-millionth of the distance from the Earth's equator to the North Pole (at sea level), its definition has been periodically refined to reflect growing knowledge of metrology. Since 1983, it has been defined as "the length of the path travelled by light in vacuum during a time interval of 1 ⁄ 299,792,458 of a second.[1]
Jac Londe

Lilliputian Systems - 0 views

  • LILLIPUTIAN SYSTEMS ANNOUNCES WAFER MANUFACTURING SUPPLY AGREEMENT WITH INTEL AND EQUITY STAKE BY INTEL CAPITAL
  • Lilliputian Systems, Inc. (www.lilliputiansystems.com), developer of the world’s first Personal Power™ solution for consumer electronics devices, today announced that it has signed a Wafer Manufacturing Supply Agreement with Intel.  Additionally, Lilliputian Systems announced that Intel Capital, Intel Corporation’s global investment arm, has taken an equity stake in Lilliputian Systems.
  • In connection with the agreement, Intel will manufacture and supply production wafers, which are critical in the production of all of Lilliputian Systems’ product lines, most importantly its first product – the revolutionary USB Mobile Power System.
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  • Wafer manufacturing will be conducted at Intel’s 200mm facility in Hudson, MA, and activities to support this manufacturing will commence immediately. 
  • “Today’s announcement ensures that we can offer our revolutionary Silicon Power Cell™ and Personal Power™ solutions to customers worldwide with industry-leading quality and reliability,” said Mouli Ramani, vice president of Business Development at Lilliputian Systems.
  • About Lilliputian Systems
  • he Company’s breakthrough solution delivers the only viable small form-factor battery replacement that provides the enormous run-time improvements demanded by today’s CE devices.  Lilliputian’s patented Silicon Power Cell™ technology is based on highly efficient and proven solid oxide fuel cells (SOFCs) and microelectromechanical systems (MEMS) wafer fabrication methods, and is fueled by recyclable high energy butane cartridges.  The technology is reliable, FAA approved and environmentally friendly.  Lilliputian’s solution enables longer run-time by providing a 5-10X improvement in volumetric energy density and 20-40X improvement in gravimetric energy density at a fraction of the cost.
Jac Londe

Tesla (unit) - Wikipedia, the free encyclopedia - 0 views

  • A particle carrying a charge of 1 coulomb and passing through a magnetic field of 1 tesla at a speed of 1 meter per second perpendicular to said field experiences a force of 1 newton, according to the Lorentz force law. As an SI derived unit, the tesla can also be expressed as (in SI base units).[3] Units used: A = ampere C = coulomb kg = kilogram m = meter N = newton s = second T = tesla V = volt Wb = weber [edit] Electric vs Magnetic Field
  • The difference between magnetic field strength (in tesla) vs electric field strength can be confusing.[citation needed] The difference is that a force of magnetic field on a charged particle is generally due to the charged particle's movement[4] while the force imparted by an electric field on a charged particle is not due to the charged particle's movement. This can be seen by looking at the units for each. Electric field is N/C, while magnetic field (in tesla) can be written as N/(C*m/s). The difference between the two is m/s, or velocity. This can further be seen by noting that whether a field is magnetic or electric is dependent on one's relativistic reference frame (that is: one's velocity relative to the field).[5][6] In ferromagnets the movement creating the magnetic field is the electron spin[7] (and to a lesser extent electron orbital angular momentum). In current carrying wire (electromagnets) the movement is due to electrons moving through the wire (whether the wire's straight or circular).
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