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Measurement problem
Degruyter Opphil Opphil-2020-0010 147..160 ++
A Simple Proof That the Many-Worlds Interpretation of Quantum Mechanics Is Inconsistent
Abstract for Non Ideal Measurements by David Albert (Philosophy, Columbia) and Barry Loewer (Philosophy, Rutgers)
1 Does Consciousness Really Collapse the Wave Function?
Collapse Theories
Stochastic Quantum Potential Noise and Quantum Measurement
Measurement Problem
Empty Waves, Wavefunction Collapse and Protective Measurement in Quantum Theory
Observables and Measurements in Quantum Mechanics
Machine Learning Framework for Control Inclassical and Quantum
UC Berkeley UC Berkeley Electronic Theses and Dissertations
Chapter 11 Observables and Measurements in Quantum Mechanics 159 Story
The Measurement Problem: Decoherence and Convivial Solipsism Herve Zwirn
The Measurement Problem from the Perspective of an Information-Theoretic Interpretation of Quantum Mechanics
A Classical Resolution of the Cosmological Constant Problem
A Simple Approach to Measurement in Quantum Mechanics
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Measurement Problem in Quantum Mechanics and the Surjection Hypothesis
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Quantum Bayesianism Assessed 1 Introduction
On Some Metaphysical Problems of Many Worlds Interpretation of Quantum Mechanics
Niels Bohr on the Wave Function and the Classical/Quantum Divide 1
Arxiv:2101.02464V2 [Quant-Ph] 2 Apr 2021
Gleason-Type Derivations of the Quantum Probability Rule For
Observables and Unobservables in Quantum Mechanics: How the No-Hidden-Variables Theorems Support the Bohmian Particle Ontology
The Quantum Measurement Problem: State of Play
Path Integral Implementation of Relational Quantum Mechanics Jianhao M
A Generic Model for Quantum Measurements
Towards Better Understanding Qbism
On an Argument of David Deutsch
Quantum Nonequilibrium in De Broglie-Bohm Theory and Its Effects in Black Holes and the Early Universe
1. Why Is Measurement a Problem?
Path Integrals, Spontaneous Localisation, and the Classical Limit
Quantum Measurement Theory
De Broglie-Bohm and Feynman Path Integrals Marius Oltean University of Waterloo
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Quantum Machine Learning
Foundations of Quantum Mechanics & Quantum Information