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  2. Plant bioacoustics - Wikipedia

    en.wikipedia.org/wiki/Plant_bioacoustics

    A possible mechanism behind this is the activation of mechanoreceptors by sound waves, which causes a flux of Ca 2+ into the plant cell causing it to depolarize [11] Because of the specific frequencies produced by the pollinators’ wings, perhaps only a distinct amount of Ca 2+ enters the cell, which would ultimately determine the plant ...

  3. MHV amplitudes - Wikipedia

    en.wikipedia.org/wiki/MHV_Amplitudes

    These amplitudes are called MHV amplitudes, because at tree level, they violate helicity conservation to the maximum extent possible. The tree amplitudes in which all gauge bosons have the same helicity or all but one have the same helicity vanish. MHV amplitudes may be calculated very efficiently by means of the Parke–Taylor formula.

  4. Plant (control theory) - Wikipedia

    en.wikipedia.org/wiki/Plant_(control_theory)

    A plant in control theory is the combination of process and actuator. A plant is often referred to with a transfer function (commonly in the s-domain ) which indicates the relation between an input signal and the output signal of a system without feedback, commonly determined by physical properties of the system.

  5. Computational electromagnetics - Wikipedia

    en.wikipedia.org/wiki/Computational_electromagnetics

    The CdH-MoM has been originally applied to time-domain performance studies of cylindrical and planar antennas [9] and, more recently, to the TD EM scattering analysis of transmission lines in the presence of thin sheets [10] and electromagnetic metasurfaces, [11] [12] for example.

  6. Natural frequency - Wikipedia

    en.wikipedia.org/wiki/Natural_frequency

    Natural frequency, measured in terms of eigenfrequency, is the rate at which an oscillatory system tends to oscillate in the absence of disturbance. A foundational example pertains to simple harmonic oscillators , such as an idealized spring with no energy loss wherein the system exhibits constant-amplitude oscillations with a constant frequency.

  7. Kubo formula - Wikipedia

    en.wikipedia.org/wiki/Kubo_formula

    The Kubo formula, named for Ryogo Kubo who first presented the formula in 1957, [1] [2] is an equation which expresses the linear response of an observable quantity due to a time-dependent perturbation.

  8. Conjugate variables - Wikipedia

    en.wikipedia.org/wiki/Conjugate_variables

    Examples of canonically conjugate variables include the following: Time and frequency: the longer a musical note is sustained, the more precisely we know its frequency, but it spans a longer duration and is thus a more-distributed event or 'instant' in time. Conversely, a very short musical note becomes just a click, and so is more temporally ...

  9. List of physics mnemonics - Wikipedia

    en.wikipedia.org/wiki/List_of_physics_mnemonics

    A Magic Triangle image mnemonic - when the terms of Ohm's law are arranged in this configuration, covering the unknown gives the formula in terms of the remaining parameters. It can be adapted to similar equations e.g. F = ma, v = fλ, E = mcΔT, V = π r 2 h and τ = rF sinθ.