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  2. Diósi–Penrose model - Wikipedia

    en.wikipedia.org/wiki/Diósi–Penrose_model

    The Diósi–Penrose model was introduced as a possible solution to the measurement problem, where the wave function collapse is related to gravity. The model was first suggested by Lajos Diósi when studying how possible gravitational fluctuations may affect the dynamics of quantum systems.

  3. Objective-collapse theory - Wikipedia

    en.wikipedia.org/wiki/Objective-collapse_theory

    In the late 1980s and 1990s, Diosi [11] [12] and Penrose [13] [14] and others [4]: 508 independently formulated the idea that the wave function collapse is related to gravity. The dynamical equation is structurally similar to the CSL equation.

  4. Como Roundhouse, Railroad Depot and Hotel Complex

    en.wikipedia.org/wiki/Como_Roundhouse,_Railroad...

    Bricks salvaged from the fire and part of the foundation were used in building the existing hotel, which was called the South Park Hotel by the Railroad. The last train through Como was in April 1937; the tracks were pulled up the following year. Track has now been relaid connecting the Depot and Roundhouse roughly 800 ft to the southeast.

  5. Orchestrated objective reduction - Wikipedia

    en.wikipedia.org/wiki/Orchestrated_objective...

    (Neither Penrose or Hameroff claim that depolymerization is the mechanism of action for Orch OR.) [45] [46] At ~1 MAC halothane, reported minor changes in tubulin protein expression (~1.3-fold) in primary cortical neurons after exposure to halothane and isoflurane are not evidence that tubulin directly interacts with general anesthetics, but ...

  6. Penrose interpretation - Wikipedia

    en.wikipedia.org/wiki/Penrose_interpretation

    Penrose's idea is inspired by quantum gravity because it uses both the physical constants and .It is an alternative to the Copenhagen interpretation which posits that superposition fails when an observation is made (but that it is non-objective in nature), and the many-worlds interpretation, which states that alternative outcomes of a superposition are equally "real," while their mutual ...

  7. Schrödinger–Newton equation - Wikipedia

    en.wikipedia.org/wiki/Schrödinger–Newton_equation

    The Schrödinger–Newton equation, sometimes referred to as the Newton–Schrödinger or Schrödinger–Poisson equation, is a nonlinear modification of the Schrödinger equation with a Newtonian gravitational potential, where the gravitational potential emerges from the treatment of the wave function as a mass density, including a term that represents interaction of a particle with its own ...