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A numeric character reference refers to a character by its Universal Character Set/Unicode code point, and a character entity reference refers to a character by a predefined name. A numeric character reference uses the format &#nnnn; or &#xhhhh; where nnnn is the code point in decimal form, and hhhh is the code point in hexadecimal form.
In the 1990s, NTT DoCoMo released a pager that was aimed at teenagers. The pager was the first of its kind to include the option to send a pictogram as part of the text. [1] [2] The pager only had a single pictogram on its options, which was a heart-shaped pictogram.
Template:Check mark templates, for templates like these but without text Template:Icon , a template that creates an inline icon/image that is used in metapages Wikipedia:List of discussion templates , a more linear table of essentially the same set of templates
Use large expanses of the colour. If you're colouring text, use bold and a large font. For small expanses of colour, such as thin lines, clearly label them with text, or use non-colour techniques such as font styles (bold or italic), line styles (dots and dashes) or cross-hatching (stripes, checkers or polka-dots).
Unicode has code points for the 52 cards of the standard French deck plus the Knight (Ace, 2–10, Jack, Knight, Queen, and King for each suit), three for jokers (red, black, and white), and a back of a card, in block Playing Cards (U+1F0A0–1F0FF). Also, a specific fool and twenty-one generic trump cards are added.
The Xterm terminal emulator. In the early 1980s, large amounts of software directly used these sequences to update screen displays. This included everything on VMS (which assumed DEC terminals), most software designed to be portable on CP/M home computers, and even lots of Unix software as it was easier to use than the termcap libraries, such as the shell script examples below in this article.
red link (Vector 2022) red link ... For normal text, the {} template with two parameters can be used: the color, either by name or hex code, and some text.
The red/black concept, sometimes called the red–black architecture [1] or red/black engineering, [2] [3] refers to the careful segregation in cryptographic systems of signals that contain sensitive or classified plaintext information (red signals) from those that carry encrypted information, or ciphertext (black signals).