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unification yegâneš Fr.: unification 1) The process of unifying or uniting; union. Verbal noun of → unify. |
uniform circular motion jonbeš-e dâyereyi-ye yekdis, ~ ~ yeknavâxt Fr.: mouvement circulaire uniforme The motion of an object around a fixed point at a constant angular speed, and at constant radius. |
uniform motion jonbeš-e yekdis, ~ yeknavâxt Fr.: mouvement uniforme Motion at a constant → velocity. The state of rest is a special case of uniform motion. → accelerated motion; → inertial motion. → uniform; motion. |
union yekâyeš Fr.: union General: The act of uniting two or more things. M.E. from O.Fr. union from L.L. unionem (nominative unio) "oneness, unity," from unus, → one, cognate with Pers. yek, as below. Yekâyeš, from yek, → one, + -ây- epenthetic vowel, + -eš verbal noun suffix, → -tion. |
unitary transformation tarâdis-e yekâyi, ~ yekâni Fr.: transformation unitaire A transformation whose reciprocal is equal to its Hermitian conjugate. → unitary; → transformation. |
upper culmination bâlest-e zabarin Fr.: culmination supérieure Same as → superior culmination. → upper; → culmination. |
uranium conversion hâgard-e urâniom Fr.: convesrion de l'uranium A chemical process converting the → yellowcake to → uranium hexafluoride. The uranium hexafluoride is heated to become a gas and loaded into cylinders. When it cools, it condenses into a solid. → uranium; → conversion. |
utilization hudeš Fr.: utilisation The act or process of utilizing. Verbal noun of → utilize. |
vacuum polarization qotbeš-e xala' Fr.: polarisation du vide A quantum field theory a process in which an electromagnetic field gives rise to virtual electron-positron pairs that in turn exert electromagnetic fields of their own, in a manner similar to classical dielectric polarization. → vacuum; → polarization. |
van der Waals equation hamugeš-e van der Waals Fr.: équation de van der Waals An → equation of state that satisfactorily describes the behavior of → real gass over a wide range of temperatures and pressures. It is derived from considerations based on kinetic theory, taking into account to a first approximation the size of a molecule and the cohesive forces between molecules: (P + a / V2) (V - b) = RT, where P, V, and T are pressure, volume, and temperature and R the gas constant. a and b are characteristic constants for a given substance. For a = b = 0, the van der Waals equation reduces to the characteristic equation of an → ideal gas. See also → Dieterici equation. Named after Dutch physicist Johannes Diderik van der Waals (1837-1923), Nobel Prize in Physics 1910; → equation. |
vaporization boxâreš Fr.: vaporisation, évaporation The act of vaporizing. The state of being vaporized. Verbal noun of → vaporize. |
variable star designation nâmgozini-ye setâre-ye vartandé Fr.: designation des étoiles variables A set of conventions used for naming → variable stars. Stars with existing → Bayer designations are not given new designations. Alternatively, the letters R through Z are used followed by the Latin genitive of the name of the hosting constellation. Otherwise, two letters of alphabet are used (334 combinations) with the Latin genitive of the name of the constellation. Finally, the letter V (variable) is used followed by numbers 335, 336, and so on. Some examples are: → P Cygni, → T Tauri, → FU Orionis, → EX Lupi, and → V2052 Oph. → variable; → star; → designation. |
variation varteš Fr.: variation 1) General: An instance of changing, or something that changes. M.E., from O.Fr. variation, from L. variationem (nominative variatio) "difference, change," from variatus, p.p. of variare "to change," → vary. Varteš, verbal noun from vartidan, → vary. |
variational varteši Fr.: variationnel Of or describing a → variation. |
variational principle parvaz-e varteši Fr.: principe variationnel Any of the physical principles that indicate in what way the actual motion of a state of a mechanical system differs from all of its kinematically possible motions or states. Variational principles that express this difference for the motion or state of a system in each given instant of time are called → differential. These principles are equally applicable to both → holonomic and → nonholonomic systems. Variational principles that establish the difference between the actual motion of a system during a finite time interval and all of its kinematically possible motions are said to be → integral. Integral variational principles are valid only for holonomic systems. The main differential variational principles are: the → virtual work principle and → d'Alembert's principle. → variational; → principle. |
vector function karyâ-ye bordâri Fr.: fonction vectorielle A function whose value at each point is n-dimensional, as compared to a scalar function, whose value is one-dimensional. |
vector perturbation partureš-e bordâri Fr.: perturbation vectorielle The perturbation in the → primordial Universe plasma caused by → vorticity. These perturbations cause → Doppler shifts that result in → quadrupole anisotropy. → vector; → perturbation. |
vegetation giyâheš Fr.: végétation 1) All the plants or plant life of a place. Verbal noun from → vegetate. |
velocity dispersion pâšeš-e tondâ Fr.: dispersion de vitesses The → standard deviation of a velocity → distribution. It indicates how objects of the sample move relative to one another. Objects with similar velocities have a small velocity dispersion, whereas objects with very different velocities have a large velocity dispersion. → velocity; → dispersion. |
velocity-distance relation bâzâneš-e tondâ-durâ Fr.: relation vitesse-distance The linear relation wherein all galaxies are moving away from one another, with velocities that are greater with increasing distance of the galaxy. Same as → Hubble's law. |
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