
Represented spaces are the spaces on which computations can be performed. We investigate the descriptive complexity of sets in represented spaces. We prove that the standard representation of a countably-based space preserves the effective descriptive complexity of sets. We prove that some results from descriptive set theory on Polish spaces extend to arbitrary countably-based spaces. We study the larger class of coPolish spaces, showing that their representation does not always preserve the complexity of sets, and we relate this mismatch with the sequential aspects of the space. We study in particular the space of polynomials.
[INFO.INFO-LO] Computer Science [cs]/Logic in Computer Science [cs.LO], Computable analysis, CoPolish spaces, Turing machines, Descriptive set theory, 004, Represented space, [MATH.MATH-GN] Mathematics [math]/General Topology [math.GN]
[INFO.INFO-LO] Computer Science [cs]/Logic in Computer Science [cs.LO], Computable analysis, CoPolish spaces, Turing machines, Descriptive set theory, 004, Represented space, [MATH.MATH-GN] Mathematics [math]/General Topology [math.GN]
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