Results for 'J. Zapletal'

961 found
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  1. Marx, K. mathematical manuscripts and their relationship to the present.J. Zeman & I. Zapletal - 1983 - Filosoficky Casopis 31 (4):536-547.
     
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  2. Berardi, S., see Barbanera, F.M. Ferrari, P. Miglioli, M. Foreman, M. Magidor, T. Huuskonen, R. Sommer, J. von Plato & J. Zapletal - 1995 - Annals of Pure and Applied Logic 76:303.
     
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  3. Economics as a natural science.J. Zapletal - 1997 - Filozofia 52 (1).
  4. Living world and philosophy.J. Zapletal - 1998 - Filozofia 53 (6):376-382.
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  5. Hella, L., Kolaitis, PG and Luosto, K., How to define a linear.C. J. Ash, J. F. Knight, B. Balcar, T. Jech, J. Zapletal & D. Rubric - 1997 - Annals of Pure and Applied Logic 87:269.
     
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  6.  6
    REVIEWS-Two papers-Proper forcing and L (R).I. Neeman, J. Zapletal & Paul B. Larson - 2002 - Bulletin of Symbolic Logic 8 (4):548-549.
  7. Downey, R., f, iiForte, G. and Nies, A., Addendum to.R. Jin, I. Kalantari, L. Welch, B. Khoussainov, R. A. Shore, A. P. Pynko, P. Scowcroft, S. Shelah, J. Zapletal & J. B. Wells - 1999 - Annals of Pure and Applied Logic 98:299.
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  8.  9
    Bounded Namba forcing axiom may fail.Jindrich Zapletal - 2018 - Mathematical Logic Quarterly 64 (3):170-172.
    We show that in a σ‐closed forcing extension, the bounded forcing axiom for Namba forcing fails. This answers a question of J. T. Moore.
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  9.  29
    Regular embeddings of the stationary tower and Woodin's Σ 2 2 maximality theorem.Richard Ketchersid, Paul B. Larson & Jindřich Zapletal - 2010 - Journal of Symbolic Logic 75 (2):711-727.
    We present Woodin's proof that if there exists a measurable Woodin cardinal δ, then there is a forcing extension satisfying all $\Sigma _{2}^{2}$ sentences ϕ such that CH + ϕ holds in a forcing extension of V by a partial order in V δ . We also use some of the techniques from this proof to show that if there exists a stationary limit of stationary limits of Woodin cardinals, then in a homogeneous forcing extension there is an elementary embedding (...)
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  10. J. Zapletal: Forcing idealized.Mirna Džamonja - 2010 - Bulletin of Symbolic Logic 16 (2).
  11.  6
    J. Zapletal. Forcing idealized. Cambridge Tracts in Mathematics, vol. 174. Cambridge University Press, 2008, vi+ 314 pp. [REVIEW]Mirna Džamonja - 2010 - Bulletin of Symbolic Logic 16 (2):278-279.
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  12. .J. G. Manning - 2018
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  13.  18
    Semi-Cohen Boolean algebras.Bohuslav Balcar, Thomas Jech & Jindřich Zapletal - 1997 - Annals of Pure and Applied Logic 87 (3):187-208.
    We investigate classes of Boolean algebras related to the notion of forcing that adds Cohen reals. A Cohen algebra is a Boolean algebra that is dense in the completion of a free Boolean algebra. We introduce and study generalizations of Cohen algebras: semi-Cohen algebras, pseudo-Cohen algebras and potentially Cohen algebras. These classes of Boolean algebras are closed under completion.
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  14.  22
    Canonical models for ℵ1-combinatorics.Saharon Shelah & Jindr̆ich Zapletal - 1999 - Annals of Pure and Applied Logic 98 (1-3):217-259.
    We define the property of Π2-compactness of a statement Φ of set theory, meaning roughly that the hard core of the impact of Φ on combinatorics of 1 can be isolated in a canonical model for the statement Φ. We show that the following statements are Π2-compact: “dominating NUMBER = 1,” “cofinality of the meager IDEAL = 1”, “cofinality of the null IDEAL = 1”, “bounding NUMBER = 1”, existence of various types of Souslin trees and variations on uniformity of (...)
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  15.  24
    Increasing δ 1 2 and Namba-style forcing.Richard Ketchersid, Paul Larson & Jindřich Zapletal - 2007 - Journal of Symbolic Logic 72 (4):1372-1378.
    We isolate a forcing which increases the value of δ12 while preserving ω₁ under the assumption that there is a precipitous ideal on ω₁ and a measurable cardinal.
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  16.  18
    Preservation theorems for Namba forcing.Osvaldo Guzmán, Michael Hrušák & Jindřich Zapletal - 2021 - Annals of Pure and Applied Logic 172 (2):102869.
  17.  17
    Why Y-c.c.David Chodounský & Jindřich Zapletal - 2015 - Annals of Pure and Applied Logic 166 (11):1123-1149.
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  18.  57
    Forcing with quotients.Michael Hrušák & Jindřich Zapletal - 2008 - Archive for Mathematical Logic 47 (7-8):719-739.
    We study an extensive connection between quotient forcings of Borel subsets of Polish spaces modulo a σ-ideal and quotient forcings of subsets of countable sets modulo an ideal.
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  19.  9
    Krull dimension in set theory.Jindřich Zapletal - 2023 - Annals of Pure and Applied Logic 174 (9):103299.
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  20.  25
    Mammalian chromosomes contain cis‐acting elements that control replication timing, mitotic condensation, and stability of entire chromosomes.Mathew J. Thayer - 2012 - Bioessays 34 (9):760-770.
    Recent studies indicate that mammalian chromosomes contain discretecis‐acting loci that control replication timing, mitotic condensation, and stability of entire chromosomes. Disruption of the large non‐coding RNA gene ASAR6 results in late replication, an under‐condensed appearance during mitosis, and structural instability of human chromosome 6. Similarly, disruption of the mouse Xist gene in adult somatic cells results in a late replication and instability phenotype on the X chromosome. ASAR6 shares many characteristics with Xist, including random mono‐allelic expression and asynchronous replication timing. (...)
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  21.  11
    Hypergraphs and proper forcing.Jindřich Zapletal - 2019 - Journal of Mathematical Logic 19 (2):1950007.
    Given a Polish space X and a countable collection of analytic hypergraphs on X, I consider the σ-ideal generated by Borel anticliques for the hypergraphs in the family. It turns out that many of the quotient posets are proper. I investigate the forcing properties of these posets, certain natural operations on them, and prove some related dichotomies.
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  22.  29
    Forcing properties of ideals of closed sets.Marcin Sabok & Jindřich Zapletal - 2011 - Journal of Symbolic Logic 76 (3):1075 - 1095.
    With every σ-ideal I on a Polish space we associate the σ-ideal I* generated by the closed sets in I. We study the forcing notions of Borel sets modulo the respective σ-ideals I and I* and find connections between their forcing properties. To this end, we associate to a σ-ideal on a Polish space an ideal on a countable set and show how forcing properties of the forcing depend on combinatorial properties of the ideal. We also study the 1—1 or (...)
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  23.  66
    Isolating cardinal invariants.Jindřich Zapletal - 2003 - Journal of Mathematical Logic 3 (1):143-162.
    There is an optimal way of increasing certain cardinal invariants of the continuum.
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  24.  14
    Ideals and Their Generic Ultrafilters.David Chodounský & Jindřich Zapletal - 2020 - Notre Dame Journal of Formal Logic 61 (3):403-408.
    Let I be an F σ -ideal on natural numbers. We characterize the ultrafilters which are generic over the model L for the poset of I -positive sets of natural numbers ordered by inclusion.
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  25.  15
    More on the cut and choose game.Jindřich Zapletal - 1995 - Annals of Pure and Applied Logic 76 (3):291-301.
    The cut and choose game is one of the infinitary games on a complete Boolean algebra B introduced by Jech. We prove that existence of a winning strategy for II in implies semiproperness of B. If the existence of a supercompact cardinal is consistent then so is “for every 1-distributive algebra B II has a winning strategy in ”.
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  26.  29
    Proper forcing and l(ℝ).Itay Neeman & Jindřich Zapletal - 2001 - Journal of Symbolic Logic 66 (2):801-810.
    We present two ways in which the model L(R) is canonical assuming the existence of large cardinals. We show that the theory of this model, with ordinal parameters, cannot be changed by small forcing; we show further that a set of ordinals in V cannot be added to L(R) by small forcing. The large cardinal needed corresponds to the consistency strength of AD L (R); roughly ω Woodin cardinals.
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  27.  21
    Four and more.Ilijas Farah & Jindřich Zapletal - 2006 - Annals of Pure and Applied Logic 140 (1):3-39.
    We isolate several large classes of definable proper forcings and show how they include many partial orderings used in practice.
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  28. Interpretation of the philosophical classics.Jorge J. E. Gracia - 2004 - In Jorge J. E. Gracia & Jiyuan Yu (eds.), Uses and abuses of the classics: Western interpretations of Greek philosophy. Burlington, VT: Ashgate.
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  29. The integration processes and the mathematics.Gi Ruzavin & I. Zapletal - 1981 - Filosoficky Casopis 29 (5):740-760.
     
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  30. Splitting number at uncountable cardinals.Jindřich Zapletal - 1997 - Journal of Symbolic Logic 62 (1):35-42.
    We study a generalization of the splitting number s to uncountable cardinals. We prove that $\mathfrak{s}(\kappa) > \kappa^+$ for a regular uncountable cardinal κ implies the existence of inner models with measurables of high Mitchell order. We prove that the assumption $\mathfrak{s}(\aleph_\omega) > \aleph_{\omega + 1}$ has a considerable large cardinal strength as well.
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  31.  18
    Analytic equivalence relations and the forcing method.Jindřich Zapletal - 2013 - Bulletin of Symbolic Logic 19 (4):473-490.
    I describe several ways in which forcing arguments can be used to yield clean and conceptual proofs of nonreducibility, ergodicity and other results in the theory of analytic equivalence relations. In particular, I present simple Borel equivalence relations $E, F$ such that a natural proof of nonreducibility of $E$ to $F$ uses the independence of the Singular Cardinal Hypothesis at $\aleph_\omega$.
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  32.  21
    Analytic Equivalence Relations and the Forcing Method.Jindřich Zapletal - 2013 - Bulletin of Symbolic Logic 19 (4):473-490.
    I describe several ways in which forcing arguments can be used to yield clean and conceptual proofs of nonreducibility, ergodicity and other results in the theory of analytic equivalence relations. In particular, I present simple Borel equivalence relationsE, Fsuch that a natural proof of nonreducibility ofEtoFuses the independence of the Singular Cardinal Hypothesis at ℵω.
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  33.  18
    Applications of the ergodic iteration theorem.Jindřich Zapletal - 2010 - Mathematical Logic Quarterly 56 (2):116-125.
    I prove several natural preservation theorems for the countable support iteration. This solves a question of Rosłanowski regarding the preservation of localization properties and greatly simplifies the proofs in the area.
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  34.  2
    Coloring closed Noetherian graphs.Jindřich Zapletal - forthcoming - Journal of Mathematical Logic.
    If [Formula: see text] is a closed Noetherian graph on a [Formula: see text]-compact Polish space with no infinite cliques, it is consistent with the choiceless set theory ZF[Formula: see text][Formula: see text][Formula: see text]DC that [Formula: see text] is countably chromatic and there is no Vitali set.
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  35. Jistota života.Štěpán Zapletal - 1948 - Praha,:
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  36.  19
    Killing ideals and adding reals.Jindřich Zapletal - 2000 - Journal of Symbolic Logic 65 (2):747-755.
    The relationship between killing ideals and adding reals by forcings is analysed.
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  37. Methodology of system research and the mathematization of scientific knowledge.I. Zapletal - 1979 - Filosoficky Casopis 27 (1):76-86.
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  38.  29
    Preserving σ-ideals.Jindřich Zapletal - 1998 - Journal of Symbolic Logic 63 (4):1437-1441.
    It is proved consistent that there be a proper σ-ideal ℑ on ω 1 and an ℵ 1 -preserving poset P such that $\mathbb{P} \Vdash$ the σ-ideal generated by ℑ̌ is not proper.
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  39. Philosophical problems of the mathematicization of scientific knowledge.I. Zapletal - 1980 - Filosoficky Casopis 28 (3):428-431.
     
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  40.  8
    Preserving $sigma$-Ideals.Jindrich Zapletal - 1998 - Journal of Symbolic Logic 63 (4):1437-1441.
    It is proved consistent that there be a proper $\sigma$-ideal $\Im$ on $\omega_1$ and an $\aleph_1$-preserving poset $\mathbb{P}$ such that $\mathbb{P} \Vdash$ the $\sigma$-ideal generated by $\check{\Im}$ is not proper.
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  41. Remarks on the logic of pedagogical science.I. Zapletal - 1975 - Filosoficky Casopis 23 (5):761-773.
     
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  42. Small forcings and Cohen reals.Jindřich Zapletal - 1997 - Journal of Symbolic Logic 62 (1):280-284.
    We show that all posets of uniform density ℵ 1 may have to add a Cohen real and develop some forcing machinery for obtaining this sort of result.
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  43.  3
    Subadditive families of hypergraphs.Jindřich Zapletal - forthcoming - Annals of Pure and Applied Logic.
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  44.  18
    Separation problems and forcing.Jindřich Zapletal - 2013 - Journal of Mathematical Logic 13 (1):1350002.
    Certain separation problems in descriptive set theory correspond to a forcing preservation property, with a fusion type infinite game associated to it. As an application, it is consistent with the axioms of set theory that the circle.
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  45.  6
    Sequential topologies and Dedekind finite sets.Jindřich Zapletal - 2022 - Mathematical Logic Quarterly 68 (1):107-109.
    It is consistent with ZF $\mathsf {ZF}$ set theory that the Euclidean topology on R $\mathbb {R}$ is not sequential, yet every infinite set of reals contains a countably infinite subset. This answers a question of Gutierres.
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  46.  6
    Terminal notions.Jindřich Zapletal - 1999 - Bulletin of Symbolic Logic 5 (4):470-478.
    Certain set theoretical notions cannot be split into finer subnotions.
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  47.  15
    Terminal notions in set theory.Jindřich Zapletal - 2001 - Annals of Pure and Applied Logic 109 (1-2):89-116.
    In mathematical practice certain formulas φ are believed to essentially decide all other natural properties of the object x. The purpose of this paper is to exactly quantify such a belief for four formulas φ, namely “x is a Ramsey ultrafilter”, “x is a free Souslin tree”, “x is an extendible strong Lusin set” and “x is a good diamond sequence”.
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  48.  5
    Increasing $\delta _{2}^{1}$ and Namba-Style Forcing.Richard Ketchersid, Paul Larson & Jindřich Zapletal - 2007 - Journal of Symbolic Logic 72 (4):1372 - 1378.
    We isolate a forcing which increases the value of $\delta _{2}^{1}$ while preserving ω₁ under the assumption that there is a precipitous ideal on ω₁ and a measurable cardinal.
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  49.  13
    Canonical models for fragments of the axiom of choice.Paul Larson & Jindřich Zapletal - 2017 - Journal of Symbolic Logic 82 (2):489-509.
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  50.  22
    The key to cultural innovation lies in the group dynamic rather than in the individual mind.Sonia Ragir & Patricia J. Brooks - 2012 - Behavioral and Brain Sciences 35 (4):237-238.
    Vaesen infers unique properties of mind from the appearance of specific cultural innovation – a correlation without causal direction. Shifts in habitat, population density, and group dynamics are the only independently verifiable incentives for changes in cultural practices. The transition from Acheulean to Late Stone Age technologies requires that we consider how population and social dynamics affect cultural innovation and mental function.
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