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Jirí Wiedermann
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2020 – today
- 2024
- [c53]Jirí Wiedermann, Jan van Leeuwen:
Large Language Models and the Extended Church-Turing Thesis. NCMA 2024: 198-213 - 2021
- [c52]Jirí Wiedermann, Jan van Leeuwen:
Towards Minimally Conscious Cyber-Physical Systems: A Manifesto. SOFSEM 2021: 43-55
2010 – 2019
- 2019
- [j21]Jan van Leeuwen, Jirí Wiedermann:
Question answering by humans and machines: A complexity-theoretic view. Theor. Comput. Sci. 777: 464-473 (2019) - [c51]Jirí Wiedermann, Jan van Leeuwen:
Finite State Machines with Feedback: An Architecture Supporting Minimal Machine Consciousness. CiE 2019: 286-297 - 2018
- [e7]A Min Tjoa, Ladjel Bellatreche, Stefan Biffl, Jan van Leeuwen, Jirí Wiedermann:
SOFSEM 2018: Theory and Practice of Computer Science - 44th International Conference on Current Trends in Theory and Practice of Computer Science, Krems, Austria, January 29 - February 2, 2018, Proceedings. Lecture Notes in Computer Science 10706, Springer 2018, ISBN 978-3-319-73116-2 [contents] - 2017
- [j20]Jan van Leeuwen, Jirí Wiedermann:
Turing Machines with One-sided Advice and Acceptance of the co-RE Languages. Fundam. Informaticae 153(4): 347-366 (2017) - [c50]Jirí Wiedermann, Jan van Leeuwen:
Non-classical Turing machines: extending the notion of computation. NCMA 2017: 29-40 - [c49]Jirí Wiedermann, Jan van Leeuwen:
Epistemic Computation and Artificial Intelligence. PT-AI 2017: 215-224 - 2015
- [j19]Jan van Leeuwen, Jirí Wiedermann:
Separating the Classes of Recursively Enumerable Languages Based on Machine Size. Int. J. Found. Comput. Sci. 26(6): 677-696 (2015) - [c48]Jirí Wiedermann, Jan van Leeuwen:
What is Computation: An Epistemic Approach. SOFSEM 2015: 1-13 - 2014
- [c47]Lukás Petru, Jirí Wiedermann:
A Robust Universal Flying Amorphous Computer. Computing with New Resources 2014: 421-435 - [c46]Jirí Wiedermann:
Fast Nondeterministic Matrix Multiplication via Derandomization of Freivalds' Algorithm. IFIP TCS 2014: 123-135 - [c45]Ivan Korec, Jirí Wiedermann:
Deterministic Verification of Integer Matrix Multiplication in Quadratic Time. SOFSEM 2014: 375-382 - 2013
- [c44]Jirí Wiedermann:
The creativity mechanisms in embodied agents: An explanatory model. CIHLI 2013: 41-47 - 2012
- [j18]Jirí Wiedermann:
A Computability Argument Against Superintelligence. Cogn. Comput. 4(3): 236-245 (2012) - [j17]Jirí Wiedermann:
Thirty Years of Collaboration with Jan van Leeuwen: In Search of Understanding Computation. Bull. EATCS 108: 148-160 (2012) - [j16]Jirí Wiedermann:
Amorphous computing: a research agenda for the near future. Nat. Comput. 11(1): 59-63 (2012) - [j15]Jan van Leeuwen, Jirí Wiedermann:
Computation as an unbounded process. Theor. Comput. Sci. 429: 202-212 (2012) - [c43]Jirí Wiedermann:
On the Road to Thinking Machines: Insights and Ideas. CiE 2012: 733-744 - [c42]Jirí Wiedermann:
Computability and Non-computability Issues in Amorphous Computing. IFIP TCS 2012: 1-9 - [c41]Jirí Wiedermann:
Towards Computational Models of Artificial Cognitive Systems That Can, in Principle, Pass the Turing Test. SOFSEM 2012: 44-63 - 2011
- [c40]Jirí Wiedermann:
Nanomachine Computing by Quorum Sensing. Computation, Cooperation, and Life 2011: 203-215 - [c39]Jan van Leeuwen, Jirí Wiedermann:
Name Resolution by Rewriting in Dynamic Networks of Mobile Entities. Rainbow of Computer Science 2011: 215-227 - [c38]Jirí Wiedermann:
Complexity of Nondeterministic Multitape Computations Based on Crossing Sequences. DCFS 2011: 314-327 - [c37]Lukás Petru, Jirí Wiedermann:
A Universal Flying Amorphous Computer. UC 2011: 189-200 - 2010
- [j14]Jirí Wiedermann:
A High Level Model of a Conscious Embodied Agent. Int. J. Softw. Sci. Comput. Intell. 2(3): 62-78 (2010)
2000 – 2009
- 2009
- [j13]Jirí Wiedermann, Lukás Petru:
On the Universal Computing Power of Amorphous Computing Systems. Theory Comput. Syst. 45(4): 995-1010 (2009) - [c36]Jirí Wiedermann:
A high level model of a conscious embodied agent. IEEE ICCI 2009: 448-456 - 2008
- [j12]Jirí Wiedermann, Dana Pardubská:
Wireless Mobile Computing and its Links to Descriptive Complexity. Int. J. Found. Comput. Sci. 19(4): 887-913 (2008) - [c35]Jirí Wiedermann, Jan van Leeuwen:
How We Think of Computing Today. CiE 2008: 579-593 - [c34]Jirí Wiedermann, Lukás Petru:
Communicating Mobile Nano-Machines and Their Computational Power. NanoNet 2008: 123-130 - 2007
- [j11]Jirí Wiedermann:
Autopoietic automata: Complexity issues in offspring-producing evolving processes. Theor. Comput. Sci. 383(2-3): 260-269 (2007) - [c33]Jirí Wiedermann, Lukás Petru:
Computability in Amorphous Structures. CiE 2007: 781-790 - [c32]Jirí Wiedermann, Dana Pardubská:
Wireless Parallel Computing and its Links to Descriptive Complexity. DCFS 2007: 41-56 - [c31]Lukás Petru, Jirí Wiedermann:
A Model of an Amorphous Computer and Its Communication Protocol. SOFSEM (1) 2007: 446-455 - 2006
- [e6]Jirí Wiedermann, Gerard Tel, Jaroslav Pokorný, Mária Bieliková, Julius Stuller:
SOFSEM 2006: Theory and Practice of Computer Science, 32nd Conference on Current Trends in Theory and Practice of Computer Science, Merín, Czech Republic, January 21-27, 2006, Proceedings. Lecture Notes in Computer Science 3831, Springer 2006, ISBN 3-540-31198-X [contents] - 2005
- [c30]Jirí Wiedermann:
Globular Universe and Autopoietic Automata: A Framework for Artificial Life. ECAL 2005: 21-30 - [c29]Jirí Wiedermann:
Computing by Self-reproduction: Autopoietic Automata. UC 2005: 224-236 - 2004
- [j10]Jirí Wiedermann:
Characterizing the super-Turing computing power and efficiency of classical fuzzy Turing machines. Theor. Comput. Sci. 317(1-3): 61-69 (2004) - [c28]Peter Verbaan, Jan van Leeuwen, Jirí Wiedermann:
Complexity of Evolving Interactive Systems. Theory Is Forever 2004: 268-281 - [c27]Jirí Wiedermann:
Building a Bridge between Mirror Neurons and Theory of Embodied Cognition. SOFSEM 2004: 361-372 - 2003
- [j9]Jirí Wiedermann:
Mirror Neurons, Embodied Cognitive Agents and Imitation Learning. Comput. Artif. Intell. 22(6): 545-559 (2003) - [j8]Jirí Wiedermann:
The computational limits to the cognitive power of the neuroidal tabula rasa. J. Exp. Theor. Artif. Intell. 15(3): 267-279 (2003) - 2002
- [j7]Jirí Wiedermann, Jan van Leeuwen:
The emergent computational potential of evolving artificial living systems. AI Commun. 15(4): 205-215 (2002) - [j6]Jirí Wiedermann:
Fuzzy Turing Machines Revised. Comput. Artif. Intell. 21(3): 251-263 (2002) - [c26]Jirí Wiedermann, Jan van Leeuwen:
Relativistic Computers and Non-uniform Complexity Theory. UMC 2002: 287-299 - 2001
- [c25]Jirí Wiedermann, Jan van Leeuwen:
Emergence of a Super-Turing Computational Potential in Artificial Living Systems. ECAL 2001: 55-65 - [c24]Jan van Leeuwen, Jirí Wiedermann:
Beyond the Turing Limit: Evolving Interactive Systems. SOFSEM 2001: 90-109 - 2000
- [c23]Jirí Wiedermann:
Towards a Computational Theory of Everything. IFIP TCS 2000: 614-615 - [c22]Jan van Leeuwen, Jirí Wiedermann:
On the Power of Interactive Computing. IFIP TCS 2000: 619-623 - [c21]Jan van Leeuwen, Jirí Wiedermann:
On Algorithms and Interaction. MFCS 2000: 99-113 - [e5]Václav Hlavác, Keith G. Jeffery, Jirí Wiedermann:
SOFSEM 2000: Theory and Practice of Informatics, 27th Conference on Current Trends in Theory and Practice of Informatics, Milovy, Czech Republic, November 25 - December 2, 2000, Proceedings. Lecture Notes in Computer Science 1963, Springer 2000, ISBN 3-540-41348-0 [contents]
1990 – 1999
- 1999
- [j5]Jirí Wiedermann:
Simulating the Mind: A Gaunlet Thrown to Computer Science. ACM Comput. Surv. 31(3es): 16 (1999) - [c20]Jirí Wiedermann:
The Computational Limits to the Cognitive Power of the Neuroidal Tabula Rasa. ALT 1999: 63-76 - [c19]Jirí Wiedermann:
Computational Power of Neuroidal Nets. SOFSEM 1999: 479-487 - [e4]Jirí Wiedermann, Peter van Emde Boas, Mogens Nielsen:
Automata, Languages and Programming, 26th International Colloquium, ICALP'99, Prague, Czech Republic, July 11-15, 1999, Proceedings. Lecture Notes in Computer Science 1644, Springer 1999, ISBN 3-540-66224-3 [contents] - 1998
- [j4]Jirí Síma, Jirí Wiedermann:
Theory of Neuromata. J. ACM 45(1): 155-178 (1998) - [c18]Jirí Wiedermann:
Towards Algorithmic Explanation of Mind Evolution and Functioning. MFCS 1998: 152-166 - [c17]Jirí Wiedermann:
Speeding-Up Nondeterministic Single-Tape Off-Line Computations by One Alternation. MFCS 1998: 607-615 - 1997
- [c16]Jirí Wiedermann:
Towards Machines That Can Think. SOFSEM 1997: 122-141 - 1996
- [c15]Jirí Wiedermann:
Speeding-up Single-Tape Nondeterministic Computations by Single Alternation, with Separation Results. ICALP 1996: 381-392 - 1995
- [c14]Jirí Síma, Jirí Wiedermann:
Neural Language Acceptors. Developments in Language Theory 1995: 430-439 - [c13]Jirí Wiedermann:
Parallel Machine Models: How They Are and Where Are They Going. SOFSEM 1995: 1-30 - [p1]Jirí Wiedermann:
Quo Vadetis, Parallel Machine Models? Computer Science Today 1995: 101-114 - [e3]Jirí Wiedermann, Petr Hájek:
Mathematical Foundations of Computer Science 1995, 20th International Symposium, MFCS'95, Prague, Czech Republic, August 28 - September 1, 1995, Proceedings. Lecture Notes in Computer Science 969, Springer 1995, ISBN 3-540-60246-1 [contents] - [e2]Miroslav Bartosek, Jan Staudek, Jirí Wiedermann:
SOFSEM '95, 22nd Seminar on Current Trends in Theory and Practice of Informatics, Milovy, Czech Republic, November 23 - December 1, 1995, Proceedings. Lecture Notes in Computer Science 1012, Springer 1995, ISBN 3-540-60609-2 [contents] - 1992
- [c12]Juraj Wiedermann:
Optimal Algorithms for Sorting on Single-tape Turing Machines. IFIP Congress (1) 1992: 306-314 - [c11]Juraj Wiedermann:
Weak Parallel Machines: a New Class of Physically Feasible Parallel Machine Models. MFCS 1992: 95-111 - 1991
- [j3]Juraj Wiedermann:
On the Computational Efficiency of Symmetric Neural Networks. Theor. Comput. Sci. 80(2): 337-345 (1991) - [c10]Juraj Wiedermann:
Efficient simulations of nondeterministic computations and their speed-up by the ring of cooperating machines. FAIR 1991: 59-70 - 1990
- [c9]Juraj Wiedermann:
Normalizing and Accelerating RAM Computations and the Problem of Reasonable Space Measures. ICALP 1990: 125-138 - [c8]Juraj Wiedermann:
Complexity Issues in Discrete Neurocomputing. IMYCS 1990: 93-108
1980 – 1989
- 1989
- [j2]Juraj Wiedermann:
On the Power of Synchronization. J. Inf. Process. Cybern. 25(10): 499-506 (1989) - [c7]Juraj Wiedermann:
On the Computational Efficiency of Symmetric Neural Networks. MFCS 1989: 545-552 - 1987
- [j1]Jan van Leeuwen, Jirí Wiedermann:
Array Processing Machines: An Abstract Model. BIT 27(1): 25-43 (1987) - 1986
- [e1]Jozef Gruska, Branislav Rovan, Juraj Wiedermann:
Mathematical Foundations of Computer Science 1986, Bratislava, Czechoslovakia, August 25-29, 1996, Proceedings. Lecture Notes in Computer Science 233, Springer 1986, ISBN 3-540-16783-8 [contents] - 1985
- [c6]Jan van Leeuwen, Jirí Wiedermann:
Array processing machines. FCT 1985: 257-268 - 1983
- [c5]Juraj Wiedermann:
Deterministic and Nondeterministic Simulation of the RAM by the Turing Machine. IFIP Congress 1983: 163-168 - 1981
- [c4]Juraj Wiedermann:
Preserving Total Order in Constant Expected Time. MFCS 1981: 554-562
1970 – 1979
- 1979
- [c3]Juraj Wiedermann:
The Complexity of Lexicographic Sorting and Searching. MFCS 1979: 517-522 - 1977
- [c2]Peter Ruzicka, Juraj Wiedermann:
How Good Is the Adversary Lower Bound? MFCS 1977: 465-474 - 1976
- [c1]Peter Ruzicka, Juraj Wiedermann:
On the Lower Bound for Minimum Comparison Selection. MFCS 1976: 495-502
Coauthor Index
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last updated on 2024-11-25 22:48 CET by the dblp team
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