KnowraBell's theoremLinked fromLinked fromThe 29 pages that link to Bell's theorem, each with the reason it gives.All 29Broader topic 4Related 21Narrower topic 1Compared with 3Niels BohrRelated: Later experiments transformed the debate over the assumptions behind Einstein’s challenge to Bohr.Quantum entanglementRelated: It connects entanglement to experimentally testable limits on local hidden-variable explanations.Copenhagen interpretationRelated: Its experimental consequences constrain classical accounts of measurement and quantum reality.WavefunctionRelated: Its experimental consequences test alternatives to the quantum-state description.Heisenberg uncertainty principleCompared with: It addresses quantum correlations and locality rather than joint precision of observables.Hidden-variable theoryRelated: It constrains which hidden-variable mechanisms can match quantum experiments.Measurement problemRelated: It rules out some classical explanations but does not alone solve the measurement problem.Quantum nonlocalityRelated: It establishes why observed correlations challenge local hidden-variable explanations.ComplementarityRelated: Its experimental consequences sharpen questions about the limits of classical accounts of quantum systems.Pilot-wave theoryRelated: It clarifies why pilot-wave theory must be nonlocal to match quantum predictions.Bell inequalityNarrower topic: The inequalities turn Bell's incompatibility result into testable correlation bounds.Classical limitCompared with: Classical intuition about local properties can remain inadequate even when macroscopic motion looks classical.Action at a distanceBroader topic: Bell’s result turns quantum nonlocality into experimentally testable constraints on local explanations.Quantum theoryRelated: Experiments testing its inequalities constrain classical alternatives to quantum predictions.Wigner’s friendRelated: Its framework inspires inequalities that test whether observer-relative quantum predictions can be jointly maintained.Bohr–Einstein debatesRelated: It converted a central implication of the EPR dispute into constraints testable by experiment.John Stewart BellBroader topic: Bell’s 1964 result turned his central insight into experimentally testable constraints.Quantum contextualityCompared with: It rules out local explanations, whereas contextuality concerns dependence on compatible measurement arrangements.CHSH inequalityRelated: CHSH translated Bell’s general result into a specific inequality for experiments.Locality (physics)Related: It turns the locality dispute into experimentally testable inequalities.Quantum indeterminacyRelated: It rules out a broad class of local explanations for quantum outcome probabilities.Einstein–Podolsky–Rosen paradoxBroader topic: Bell converted the EPR tension into inequalities that distinguish local theories from quantum mechanics.De Broglie–Bohm theoryRelated: It clarifies why Bohmian mechanics must accept nonlocal dynamics.Free Will TheoremRelated: It clarifies why locality assumptions about separated measurements matter.No-communication theoremRelated: Bell correlations exceed classical limits without enabling faster-than-light communication.Quantum potentialRelated: It constrains how any realist account of quantum dynamics, including Bohmian mechanics, can be local.History of quantum mechanicsRelated: It turned the EPR dispute into experimentally testable inequalities.Interpretations of quantum mechanicsRelated: It places rigorous limits on local accounts of quantum reality.Foundations of quantum mechanicsBroader topic: It transformed foundational disputes into experimentally testable constraints.
KnowraBell's theoremLinked fromLinked fromThe 29 pages that link to Bell's theorem, each with the reason it gives.All 29Broader topic 4Related 21Narrower topic 1Compared with 3Niels BohrRelated: Later experiments transformed the debate over the assumptions behind Einstein’s challenge to Bohr.Quantum entanglementRelated: It connects entanglement to experimentally testable limits on local hidden-variable explanations.Copenhagen interpretationRelated: Its experimental consequences constrain classical accounts of measurement and quantum reality.WavefunctionRelated: Its experimental consequences test alternatives to the quantum-state description.Heisenberg uncertainty principleCompared with: It addresses quantum correlations and locality rather than joint precision of observables.Hidden-variable theoryRelated: It constrains which hidden-variable mechanisms can match quantum experiments.Measurement problemRelated: It rules out some classical explanations but does not alone solve the measurement problem.Quantum nonlocalityRelated: It establishes why observed correlations challenge local hidden-variable explanations.ComplementarityRelated: Its experimental consequences sharpen questions about the limits of classical accounts of quantum systems.Pilot-wave theoryRelated: It clarifies why pilot-wave theory must be nonlocal to match quantum predictions.Bell inequalityNarrower topic: The inequalities turn Bell's incompatibility result into testable correlation bounds.Classical limitCompared with: Classical intuition about local properties can remain inadequate even when macroscopic motion looks classical.Action at a distanceBroader topic: Bell’s result turns quantum nonlocality into experimentally testable constraints on local explanations.Quantum theoryRelated: Experiments testing its inequalities constrain classical alternatives to quantum predictions.Wigner’s friendRelated: Its framework inspires inequalities that test whether observer-relative quantum predictions can be jointly maintained.Bohr–Einstein debatesRelated: It converted a central implication of the EPR dispute into constraints testable by experiment.John Stewart BellBroader topic: Bell’s 1964 result turned his central insight into experimentally testable constraints.Quantum contextualityCompared with: It rules out local explanations, whereas contextuality concerns dependence on compatible measurement arrangements.CHSH inequalityRelated: CHSH translated Bell’s general result into a specific inequality for experiments.Locality (physics)Related: It turns the locality dispute into experimentally testable inequalities.Quantum indeterminacyRelated: It rules out a broad class of local explanations for quantum outcome probabilities.Einstein–Podolsky–Rosen paradoxBroader topic: Bell converted the EPR tension into inequalities that distinguish local theories from quantum mechanics.De Broglie–Bohm theoryRelated: It clarifies why Bohmian mechanics must accept nonlocal dynamics.Free Will TheoremRelated: It clarifies why locality assumptions about separated measurements matter.No-communication theoremRelated: Bell correlations exceed classical limits without enabling faster-than-light communication.Quantum potentialRelated: It constrains how any realist account of quantum dynamics, including Bohmian mechanics, can be local.History of quantum mechanicsRelated: It turned the EPR dispute into experimentally testable inequalities.Interpretations of quantum mechanicsRelated: It places rigorous limits on local accounts of quantum reality.Foundations of quantum mechanicsBroader topic: It transformed foundational disputes into experimentally testable constraints.