Cantor Function: Difference between revisions

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==Cantor Function Alternative==
==Cantor Function Alternative==
The Cantor Function can be constructed iteratively using homework construction.
The Cantor Function can be constructed iteratively using homework construction.<ref name="Craig">Craig, Katy. ''MATH 201A HW 5''. UC Santa Barbara, Fall 2020.</ref>


==References==
==References==

Revision as of 04:23, 17 December 2020

Cantor ternary Function

if is the Cantor set on [0,1], then the Cantor function c : [0,1] → [0,1] can be defined as[1]

Properties of Cantor Functions

  • Cantor Function is continuous everywhere, zero derivative almost everywhere.
  • lack of absolute continuity.
  • Monotonicity
  • Its value goes from 0 to 1 as its argument reaches from 0 to 1.

Cantor Function Alternative

The Cantor Function can be constructed iteratively using homework construction.[2]

References

  1. Dovgoshey, O.; Martio, O.; Ryazanov, V.; Vuorinen, M. (2006). Expositiones Mathematicae. Elsevier BV. 24 (1): 1–37.
  2. Craig, Katy. MATH 201A HW 5. UC Santa Barbara, Fall 2020.