Writing, Graphic Codes, and Asynchronous Communication
Письменность, графические коды и асинхронная коммуникация
2018-10-10
SCID: 54.1/38g93haj
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asynchronous communicationgraphic codesliterate societiesnatural language encodingwriting systems
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Abstract (AI)
We present a theoretical framework bearing on the evolution of written communication. We analyze writing as a special kind of graphic code. Like languages, graphic codes consist of stable, conventional mappings between symbols and meanings, but (unlike spoken or signed languages) their symbols consist of enduring images. This gives them the unique capacity to transmit information in one go across time and space. Yet this capacity usually remains quite unexploited, because most graphic codes are insufficiently informative. They may only be used for mnemonic purposes or as props for oral communication in real-time encounters. Writing systems, unlike other graphic codes, work by encoding a natural language. This allows them to support asynchronous communication in a more powerful and versatile way than any other graphic code. Yet, writing systems will not automatically unlock the capacity to communicate asynchronously. We argue that this capacity is a rarity in non-literate societies, and not so frequent even in literate ones. Asynchronous communication is intrinsically inefficient because asynchrony constrains the amount of information that the interlocutors share and limits possibilities for repair. This would explain why synchronous, face-to-face communication always fosters the development of sophisticated codes (natural languages), but similar codes for asynchronous communication evolve with more difficulties. It also implies that writing cannot have evolved, at first, for supporting asynchronous communication.
Key Findings
1
Asynchronous communication is intrinsically inefficient because limited shared information constrains interpretation and opportunities for repair.
2
Graphic codes are conventional mappings between symbols and meanings whose enduring visual symbols enable transmission across time and space.
3
Most graphic codes underuse this capacity because they are insufficiently informative and primarily serve mnemonic or real-time oral-support functions.
4
Writing systems do not automatically produce asynchronous communication, and their initial evolution likely did not serve that function; sophisticated asynchronous codes are difficult to develop.
5
Writing systems uniquely encode natural languages, enabling more powerful and versatile asynchronous communication than other graphic codes.
Research Object
writing systems and other graphic codes used for communication
Research Subject
their capacity, evolution, and constraints in supporting asynchronous communication across time and space
Publication Details
Publication Date
2018-10-10
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