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equations of motion

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  • Equations of motion — Classical mechanics Newton s Second Law History of classical mechanics  …   Wikipedia

  • motion, equation of — Mathematical formula that describes the motion of a body relative to a given frame of reference, in terms of the position, velocity, or acceleration of the body. In classical mechanics, the basic equation of motion is Newton s second law (see… …   Universalium

  • Équations différentielles stochastiques — Équation différentielle stochastique Une équation différentielle stochastique (EDS) est une généralisation de la notion d équation différentielle prenant en compte un terme de bruit blanc. Les EDS permettent de modéliser des trajectoires… …   Wikipédia en Français

  • Equations of condition — Equation E*qua tion, n. [L. aequatio an equalizing: cf. F. [ e]quation equation. See {Equate}.] 1. A making equal; equal division; equality; equilibrium. [1913 Webster] Again the golden day resumed its right, And ruled in just equation with the… …   The Collaborative International Dictionary of English

  • Motion graphs and derivatives — The green line shows the slope of the velocity time graph at the particular point where the two lines touch. Its slope is the acceleration at that point. In mechanics, the derivative of the position vs. time graph of an object is equal to the… …   Wikipedia

  • Mechanics of planar particle motion — Classical mechanics Newton s Second Law History of classical mechanics  …   Wikipedia

  • Navier–Stokes equations — Continuum mechanics …   Wikipedia

  • Centrifugal force (planar motion) — In classical mechanics, centrifugal force (from Latin centrum center and fugere to flee ) is one of the three so called inertial forces or fictitious forces that enter the equations of motion when Newton s laws are formulated in a non inertial… …   Wikipedia

  • Maxwell's equations — For thermodynamic relations, see Maxwell relations. Electromagnetism …   Wikipedia

  • Derivation of the Navier–Stokes equations — The intent of this article is to highlight the important points of the derivation of the Navier–Stokes equations as well as the application and formulation for different families of fluids. Contents 1 Basic assumptions 2 The material derivative 3 …   Wikipedia

  • Bloch equations — underconstruction. In physics and chemistry, specifically in NMR (nuclear magnetic resonance) or MRI (magnetic resonance imaging), or ESR (electron spin resonance) the Bloch equations are a set of macroscopic equations that are used to calculate… …   Wikipedia

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