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210512 ||| eng |
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|a 9783038977148
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|a books978-3-03897-715-5
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|a 9783038977155
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100 |
1 |
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|a Khrennikov, Andrei
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245 |
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|a Quantum Probability and Randomness
|h Elektronische Ressource
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260 |
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|b MDPI - Multidisciplinary Digital Publishing Institute
|c 2019
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300 |
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|a 1 electronic resource (276 p.)
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653 |
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|a Greechie diagrams
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653 |
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|a social atom
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653 |
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|a random numbers
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653 |
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|a contextuality
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653 |
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|a Copenhagen interpretation
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|a randomness
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|a quantum information field
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653 |
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|a holistic semantics
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|a potentiality
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|a correlations
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|a vacuum state
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|a reality
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|a Bayes' formula
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|a probability
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|a model selection
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|a partially defined algebras
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|a bandwagon effect
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|a epistemic operations
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|a quantum logic
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|a information interpretation of quantum theory
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|a indeterminism
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|a algebra
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|a Bell inequalities
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|a Borel normality
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|a orthogonality
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|a operational approach
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|a algorithmic complexity
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|a viable cultures
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|a three-qubit random states
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|a causation
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|a random number generators
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|a bit commitment
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|a resonator of social laser
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|a quantum contextuality
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|a quantum-like models
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|a maximization of quantum conditional min-entropy
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|a realism
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|a quantum dynamics
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|a quantum information
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|a Gram-Schmidt process
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|a quantum probability
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|a master equation for socio-information excitations
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|a quantum technology
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|a quantum random number
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|a entanglement polytope
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|a MMP hypergraphs
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|a quantum foundations
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|a complementarity
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|a quantum entanglement
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|a uncertainty relations
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653 |
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|a quasigroups
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|a anisotropic invariants
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|a probability representation
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|a entanglement
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|a irreducible randomness
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|a groups
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|a causality
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|a geometry
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|a quantum computation
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|a Bose-Einstein statistics
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|a entropy
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|a quantum logics
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|a qubits
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|a social thermodynamics
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|a Kochen-Specker sets
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|a quantum information theory
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|a social laser
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|a entanglement classes
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|a social energy
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|a quantum-like models for social stochasticity
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|a protocol
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|a indefiniteness
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|a Bayesian inference
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1 |
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|a Svozil, Karl
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041 |
0 |
7 |
|a eng
|2 ISO 639-2
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989 |
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|b DOAB
|a Directory of Open Access Books
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500 |
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|a Creative Commons (cc), https://creativecommons.org/licenses/by-nc-nd/4.0/
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028 |
5 |
0 |
|a 10.3390/books978-3-03897-715-5
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856 |
4 |
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|u https://www.mdpi.com/books/pdfview/book/1247
|7 0
|x Verlag
|3 Volltext
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856 |
4 |
2 |
|u https://directory.doabooks.org/handle/20.500.12854/57454
|z DOAB: description of the publication
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|a 000
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|a 333
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|a 700
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|a 600
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|a The last few years have been characterized by a tremendous development of quantum information and probability and their applications, including quantum computing, quantum cryptography, and quantum random generators. In spite of the successful development of quantum technology, its foundational basis is still not concrete and contains a few sandy and shaky slices. Quantum random generators are one of the most promising outputs of the recent quantum information revolution. Therefore, it is very important to reconsider the foundational basis of this project, starting with the notion of irreducible quantum randomness. Quantum probabilities present a powerful tool to model uncertainty. Interpretations of quantum probability and foundational meaning of its basic tools, starting with the Born rule, are among the topics which will be covered by this issue. Recently, quantum probability has started to play an important role in a few areas of research outside quantum physics—in particular, quantum probabilistic treatment of problems of theory of decision making under uncertainty. Such studies are also among the topics of this issue.
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