U+1F1A9 Squared Lossless
U+1F1A9 was added in Unicode version 9.0 in 2016. It belongs to the block
This character is a Other Symbol and is commonly used, that is, in no specific script.
The glyph is not a composition. Its width in East Asian texts is determined by its context. It can be displayed wide or narrow. In bidirectional text it is written from left to right. When changing direction it is not mirrored. If its East Asian Width is “narrow”, U+1F1A9 forms a word with similar characters, which prevents a line break inside it. Otherwise it allows line breaks around it, except in some numeric contexts.
Wikipedia ma następujące informacje na temat tej współrzędnej kodowej:
Lossless compression is a class of data compression that allows the original data to be perfectly reconstructed from the compressed data with no loss of information. Lossless compression is possible because most real-world data exhibits statistical redundancy. By contrast, lossy compression permits reconstruction only of an approximation of the original data, though usually with greatly improved compression rates (and therefore reduced media sizes).
By operation of the pigeonhole principle, no lossless compression algorithm can shrink the size of all possible data: Some data will get longer by at least one symbol or byte.
Compression algorithms are usually effective for human- and machine-readable documents and cannot shrink the size of random data that contain no redundancy. Different algorithms exist that are designed either with a specific type of input data in mind or with specific assumptions about what kinds of redundancy the uncompressed data are likely to contain.
Lossless data compression is used in many applications. For example, it is used in the ZIP file format and in the GNU tool gzip. It is also often used as a component within lossy data compression technologies (e.g. lossless mid/side joint stereo preprocessing by MP3 encoders and other lossy audio encoders).
Lossless compression is used in cases where it is important that the original and the decompressed data be identical, or where deviations from the original data would be unfavourable. Common examples are executable programs, text documents, and source code. Some image file formats, like PNG or GIF, use only lossless compression, while others like TIFF and MNG may use either lossless or lossy methods. Lossless audio formats are most often used for archiving or production purposes, while smaller lossy audio files are typically used on portable players and in other cases where storage space is limited or exact replication of the audio is unnecessary.
Reprezentacje
System | Reprezentacje |
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Nº | 127401 |
UTF-8 | F0 9F 86 A9 |
UTF-16 | D8 3C DD A9 |
UTF-32 | 00 01 F1 A9 |
Adres URL cytowany | %F0%9F%86%A9 |
HTML hex reference | 🆩 |
Błędne windows-1252 Mojibake | 🆩 |
Gdzie indziej
Kompletny opis
Właściwość | Wartość |
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9.0 (2016) | |
SQUARED LOSSLESS | |
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Enclosed Alphanumeric Supplement | |
Other Symbol | |
Common | |
Left To Right | |
Not Reordered | |
none | |
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Any | |
✔ | |
✘ | |
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0 | |
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None | |
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NA | |
Other | |
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Yes | |
Yes | |
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Other | |
✘ | |
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ambiguous | |
Not Applicable | |
— | |
No_Joining_Group | |
Non Joining | |
Ambiguous (Alphabetic or Ideographic) | |
none | |
not a number | |
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U |