semantic closure
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2020 ◽  
pp. 1037969X2095743
Author(s):  
Dikshit Sarma Bhagabati ◽  
Malini Chidambaram

Objects have social lives like humans and are invested with the properties of social relations. We restore performativity to the journeying objects of the Maseit street magicians by drawing on our ethnography with this wayfaring community from Kathputli Colony, Delhi. The shifting social incarnations of the magicians’ objects threaten law’s desire for semantic closure. Their truncated movements indicate how law traps the fluid history of street magic in a rigid definitional register by criminalising it as begging. By mapping these journeys, we illuminate the ways in which the Maseit make sense of their lives within the legal framework.


Author(s):  
A. V. Gigolaev ◽  
◽  
N. I. Tsukanova ◽  
Keyword(s):  

2017 ◽  
Vol 25 (4) ◽  
pp. 387-407 ◽  
Author(s):  
Eduardo Alejandro Barrio ◽  
Federico Matias Pailos ◽  
Damian Enrique Szmuc
Keyword(s):  

2017 ◽  
Vol 14 (130) ◽  
pp. 20161033 ◽  
Author(s):  
Edward B. Clark ◽  
Simon J. Hickinbotham ◽  
Susan Stepney

We present a novel stringmol-based artificial chemistry system modelled on the universal constructor architecture (UCA) first explored by von Neumann. In a UCA, machines interact with an abstract description of themselves to replicate by copying the abstract description and constructing the machines that the abstract description encodes. DNA-based replication follows this architecture, with DNA being the abstract description, the polymerase being the copier, and the ribosome being the principal machine in expressing what is encoded on the DNA. This architecture is semantically closed as the machine that defines what the abstract description means is itself encoded on that abstract description. We present a series of experiments with the stringmol UCA that show the evolution of the meaning of genomic material, allowing the concept of semantic closure and transitions between semantically closed states to be elucidated in the light of concrete examples. We present results where, for the first time in an in silico system, simultaneous evolution of the genomic material, copier and constructor of a UCA, giving rise to viable offspring.


2011 ◽  
Vol 1 (1) ◽  
pp. 1-17 ◽  
Author(s):  
Peter Cariani

In this paper, a semiotic framework for natural and artificial adaptive percept-action systems is presented. The functional organizations and operational structures of percept-action systems with different degrees of adaptivity and self-construction are considered in terms of syntactic, semantic, and pragmatic relations. Operational systems-theoretic criteria for distinguishing semiotic, sign-systems from nonsemiotic physical systems are proposed. A system is semiotic if a set of functional sign-states can be identified, such that the system’s behavior can be effectively described in terms of operations on sign-types. Semiotic relations involved in the operational structure of the observer are outlined and illustrated using the Hertzian commutation diagram. Percept-action systems are observers endowed with effectors that permit them to act on their surrounds. Percept-action systems consist of sensors, effectors, and a coordinative part that determines which actions will be taken. Cybernetic systems adaptively steer behavior by altering percept-action mappings contingent on evaluated performance measures via embedded goals. Self-constructing cybernetic systems use signs to direct the physical construction of all parts of the system to create new syntactic, semantic, and pragmatic relations. When a system gains the ability to construct its material hardware and choose its semiotic relations, it achieves a degree of epistemic autonomy, semantic closure, and pragmatic self-direction.


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