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  2. Emergence - Wikipedia

    en.wikipedia.org/wiki/Emergence

    The canonical example concerns emergent mental states (M and M∗) that supervene on physical states (P and P∗) respectively. Let M and M∗ be emergent properties. Let M∗ supervene on base property P∗. What happens when M causes M∗? Jaegwon Kim says: In our schematic example above, we concluded that M causes M∗ by causing P∗.

  3. Entropic gravity - Wikipedia

    en.wikipedia.org/wiki/Entropic_gravity

    Entropic gravity, also known as emergent gravity, is a theory in modern physics that describes gravity as an entropic force—a force with macro-scale homogeneity but which is subject to quantum-level disorder—and not a fundamental interaction.

  4. Emergentism - Wikipedia

    en.wikipedia.org/wiki/Emergentism

    Emergentism is the belief in emergence, particularly as it involves consciousness and the philosophy of mind.A property of a system is said to be emergent if it is a new outcome of some other properties of the system and their interaction, while it is itself different from them. [1]

  5. Topological order - Wikipedia

    en.wikipedia.org/wiki/Topological_order

    According to condensed matter physics and the principle of emergence, the different properties of materials generally arise from the different ways in which the atoms are organized in the materials. Those different organizations of the atoms (or other particles) are formally called the orders in the materials.

  6. Theory of everything - Wikipedia

    en.wikipedia.org/wiki/Theory_of_everything

    Examples of emergent laws are the second law of thermodynamics and the theory of natural selection. The advocates of emergence argue that emergent laws, especially those describing complex or living systems are independent of the low-level, microscopic laws. In this view, emergent laws are as fundamental as a theory of everything.

  7. Induced gravity - Wikipedia

    en.wikipedia.org/wiki/Induced_gravity

    Induced gravity (or emergent gravity) is an idea in quantum gravity that spacetime curvature and its dynamics emerge as a mean field approximation of underlying microscopic degrees of freedom, similar to the fluid mechanics approximation of Bose–Einstein condensates.

  8. Erik Verlinde - Wikipedia

    en.wikipedia.org/wiki/Erik_Verlinde

    He further argues that this entropy modifies emergent gravity, introducing residual forces when the acceleration due to gravity is very weak. [14] The result provides a candidate explanation for dark matter similar to the Modified Newtonian Dynamics (MOND) proposal and explains the empirical relationship between dark matter and the Hubble constant.

  9. Holism in science - Wikipedia

    en.wikipedia.org/wiki/Holism_in_science

    This principle of emergence in complex systems is often captured in the phrase ′the whole is greater than the sum of its parts′. Living organisms are an example: no knowledge of all the chemical and physical properties of matter can explain or predict the functioning of living organisms.