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  2. Neuman systems model - Wikipedia

    en.wikipedia.org/wiki/Neuman_systems_model

    The Neuman systems model is a nursing theory based on the individual's relationship to stress, the reaction to it, and reconstitution factors that are dynamic in nature. [1] The theory was developed by Betty Neuman, a community health nurse, professor and counselor. The central core of the model consists of energy resources (normal temperature ...

  3. Neumann lines - Wikipedia

    en.wikipedia.org/wiki/Neumann_lines

    Neumann lines, or Neumann bands, are fine patterns of parallel lines seen in cross-sections of many hexahedrite iron meteorites in the kamacite phase, although they may appear also in octahedrites provided the kamacite phase is about 30 micrometres wide. They can be seen after a polished meteorite cross-section is treated with acid.

  4. Curie's principle - Wikipedia

    en.wikipedia.org/wiki/Curie's_principle

    Thus, it is sometimes known as the Neuman–Minnigerode–Curie principle. [5] Later physicists have interpreted Curie's principle in the context of thermodynamics. Dynamics close to equilbrium are described by a set of transport coefficients whose symmetries must match the symmetries of the system, according to Curie's principle. [6]

  5. Path of least resistance - Wikipedia

    en.wikipedia.org/wiki/Path_of_least_resistance

    The path of least resistance is the physical or metaphorical pathway that provides the least resistance to forward motion by a given object or entity, among a set of alternative paths. The concept is often used to describe why an object or entity takes a given path. The way in which water flows is often given as an example for the idea.

  6. Current–voltage characteristic - Wikipedia

    en.wikipedia.org/wiki/Current–voltage...

    An I–V curve which is a straight line through the origin with positive slope represents a linear or ohmic resistor, the most common type of resistance encountered in circuits. It obeys Ohm's law; the current is proportional to the applied voltage over a wide range. Its resistance, equal to the reciprocal of the slope of the line, is constant ...

  7. Distributed-element model - Wikipedia

    en.wikipedia.org/wiki/Distributed-element_model

    A well-known example of this is the horn antenna. Where reflections are present on the line, quite short lengths of line can exhibit effects that are simply not predicted by the lumped-element model. A quarter wavelength line, for instance, will transform the terminating impedance into its dual. This can be a wildly different impedance.

  8. Koopman–von Neumann classical mechanics - Wikipedia

    en.wikipedia.org/wiki/Koopman–von_Neumann...

    The Koopman-von Neumann theory is often used today to refer to a reformulation of classical mechanics in which a classical system's probability density on phase space is expressed in terms of an underlying wavefunction, meaning that the vectors of the classical Hilbert space are wavefunctions, rather than physical observables.

  9. Maximum power transfer theorem - Wikipedia

    en.wikipedia.org/wiki/Maximum_power_transfer_theorem

    Simplified model for powering a load with resistance R L by a source with voltage V S and resistance R S.. The theorem was originally misunderstood (notably by Joule [4]) to imply that a system consisting of an electric motor driven by a battery could not be more than 50% efficient, since the power dissipated as heat in the battery would always be equal to the power delivered to the motor when ...