Fibres of Hurewicz and approximate fibrations.
L.S. Husch (1978)
Mathematica Scandinavica
Similarity:
L.S. Husch (1978)
Mathematica Scandinavica
Similarity:
Vagn Lundsgaard Hansen (1972)
Mathematica Scandinavica
Similarity:
Anton Jensen (1958)
Mathematica Scandinavica
Similarity:
M.A. Morón, F.R. Ruiz del Portal (1993)
Manuscripta mathematica
Similarity:
Danuta Kołodziejczyk (2003)
Fundamenta Mathematicae
Similarity:
In 1968 K. Borsuk asked: Does every polyhedron dominate only finitely many different shapes? In this question the notion of shape can be replaced by the notion of homotopy type. We showed earlier that the answer to the Borsuk question is no. However, in a previous paper we proved that every simply connected polyhedron dominates only finitely many different homotopy types (equivalently, shapes). Here we prove that the same is true for polyhedra with finite fundamental group.
Luciano Stramaccia (2002)
Cahiers de Topologie et Géométrie Différentielle Catégoriques
Similarity:
Hanns Thiemann (1989)
Cahiers de Topologie et Géométrie Différentielle Catégoriques
Similarity:
Danuta Kołodziejczyk (2007)
Fundamenta Mathematicae
Similarity:
The notions of capacity and depth of compacta were introduced by K. Borsuk in the seventies together with some open questions. In a previous paper, in connection with one of them, we proved that there exist polyhedra with polycyclic fundamental groups and infinite capacity, i.e. dominating infinitely many different homotopy types (or equivalently, shapes). In this paper we show that every polyhedron with virtually polycyclic fundamental group has finite depth, i.e., there is a bound...
Lars Hesselholt (1992)
Mathematica Scandinavica
Similarity:
Danuta Kołodziejczyk (2003)
Fundamenta Mathematicae
Similarity:
We show the existence of a finite polyhedron P dominating infinitely many different homotopy types of finite polyhedra and such that there is a bound on the lengths of all strictly descending sequences of homotopy types dominated by P. This answers a question of K. Borsuk (1979) dealing with shape-theoretic notions of "capacity" and "depth" of compact metric spaces. Moreover, π₁(P) may be any given non-abelian poly-ℤ-group and dim P may be any given integer n ≥ 3.
Zvonko Cerin (1994)
Collectanea Mathematica
Similarity: