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Wireless Markup Language (WML), based on XML, is an obsolete markup language intended for devices that implement the Wireless Application Protocol (WAP) specification, such as mobile phones. It provides navigational support, data input, hyperlinks, text and image presentation, and forms, much like HTML (Hypertext Markup Language).
WAP sites are written in WML, a markup language. [9] WAP provides content in the form of decks, which have several cards: decks are similar to HTML web pages as they are the unit of data transmission used by WAP and each have their own unique URL, and cards are elements such as text or buttons which can be seen by a user. [10]
WAP Binary XML (WBXML) is a binary representation of XML. It was developed by the WAP Forum and since 2002 is maintained by the Open Mobile Alliance as a standard to allow XML documents to be transmitted in a compact manner over mobile networks and proposed as an addition to the World Wide Web Consortium 's Wireless Application Protocol family ...
In networking for mobile devices, WMLC is a format for the efficient transmission of WML web pages over Wireless Application Protocol (WAP). Its primary purpose is to compress (or rather tokenise) a WML page for transport over low-bandwidth internet connections such as GPRS/2G.
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Wireless Application Protocol Bitmap Format (shortened to Wireless Bitmap and with file extension .wbmp) is a raster image file format optimized for early mobile computing devices. WBMP images are monochrome black and white binary images in which a black pixel is denoted by 0 and a white pixel is denoted by 1.
A WAP gateway sits between mobile devices using the Wireless Application Protocol (WAP) and the World Wide Web, passing pages from one to the other much like a proxy.This translates pages into a form suitable for the mobiles, for instance using the Wireless Markup Language (WML).
In consequence of the interface common to transport protocols, the upper layer protocols of the WAP architecture can operate independently of the underlying wireless network. By letting only the transport layer deal with physical network-dependent issues, global interoperability can be acquired using mediating gateways.