nonlinear diffusion - перевод на русский
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nonlinear diffusion - перевод на русский

SYSTEM IN WHICH THE CHANGE OF THE OUTPUT IS NOT PROPORTIONAL TO THE CHANGE OF THE INPUT
Non-linear; Nonlinear; Nonlinear dynamics; Nonlinear systems; Non-linearity; Non-linear system; Nonlinear Dynamics; Non-linear equation; Nonlinear equation; Nonlinearly; Nonlinearity; Nonlinear differential equation; Non-linear differential equation; Nonlinear function; Nonlinear simultaneous equations; Nonlinear system of equations; Nonlinear science; Non-linear function; Systems of nonlinear differential equations; Systems of nonlinear equations; Nonlinear systems of equations; System of nonlinear equations; Nonlinear Systems; Nonlinear recurrence relations; System of nonlinear differential equations; Non-linear differential equations; Simultaneous nonlinear equations
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nonlinear diffusion      

математика

нелинейная диффузия

diffusion welding         
  • Animation of the Diffusion Welding process
  • Animation of sheet forming process using diffusion welding (see also [[hydroforming]]).
  • Animation of Diffusion Bonding Process
Diffusion welding; User:IdRatherBeLearning/sandbox

общая лексика

диффузионная сварка

diffuse         
  • Diffusion furnaces used for [[thermal oxidation]]
  • Diffusion in the monolayer: oscillations near temporary equilibrium positions and jumps to the nearest free places.
  • Diffusion from a microscopic and  b macroscopic point of view. Initially, there are [[solute]] molecules on the left side of a barrier (purple line) and none on the right. The barrier is removed, and the solute diffuses to fill the whole container. <u>Top:</u> A single molecule moves around randomly. <u>Middle:</u> With more molecules, there is a statistical trend that the solute fills the container more and more uniformly. <u>Bottom:</u> With an enormous number of solute molecules, all randomness is gone: The solute appears to move smoothly and deterministically from high-concentration areas to low-concentration areas. There is no microscopic [[force]] pushing molecules rightward, but there ''appears'' to be one in the bottom panel. This apparent force is called an ''[[entropic force]]''.
  • Time lapse video of diffusion of a dye dissolved in water into a gel.
  • The apparent random motion of atoms, ions or molecules explained. Substances appear to move randomly due to collisions with other substances. From the iBook ''Cell Membrane Transport'', free license granted by IS3D, LLC, 2014.
  • Random collisions of particles in a gas.
NET MOVEMENT OF MOLECULES OR ATOMS FROM A REGION OF HIGH CONCENTRATION (OR HIGH CHEMICAL POTENTIAL) TO A REGION OF LOW CONCENTRATION (OR LOW CHEMICAL POTENTIAL)
Diffuse; Diffusion rate; Rate of diffusion; Diffusibility; Heterogenous diffusion
1) распространяться (напр. о нововведениях)
2) растрачивать, расходовать
diffuse         
  • Diffusion furnaces used for [[thermal oxidation]]
  • Diffusion in the monolayer: oscillations near temporary equilibrium positions and jumps to the nearest free places.
  • Diffusion from a microscopic and  b macroscopic point of view. Initially, there are [[solute]] molecules on the left side of a barrier (purple line) and none on the right. The barrier is removed, and the solute diffuses to fill the whole container. <u>Top:</u> A single molecule moves around randomly. <u>Middle:</u> With more molecules, there is a statistical trend that the solute fills the container more and more uniformly. <u>Bottom:</u> With an enormous number of solute molecules, all randomness is gone: The solute appears to move smoothly and deterministically from high-concentration areas to low-concentration areas. There is no microscopic [[force]] pushing molecules rightward, but there ''appears'' to be one in the bottom panel. This apparent force is called an ''[[entropic force]]''.
  • Time lapse video of diffusion of a dye dissolved in water into a gel.
  • The apparent random motion of atoms, ions or molecules explained. Substances appear to move randomly due to collisions with other substances. From the iBook ''Cell Membrane Transport'', free license granted by IS3D, LLC, 2014.
  • Random collisions of particles in a gas.
NET MOVEMENT OF MOLECULES OR ATOMS FROM A REGION OF HIGH CONCENTRATION (OR HIGH CHEMICAL POTENTIAL) TO A REGION OF LOW CONCENTRATION (OR LOW CHEMICAL POTENTIAL)
Diffuse; Diffusion rate; Rate of diffusion; Diffusibility; Heterogenous diffusion
diffuse 1. adj. 1) рассеянный (о свете и т. п.) 2) распространенный, разбросанный 3) многословный, расплывчатый Syn: see verbose 2. v. 1) рассеивать (свет, тепло и т. п.) 2) распространять to diffuse learning/knowledge - распространять знания 3) распылять; рассыпать, разбрасывать 4) phys. диффундировать (о газах и жидкостях) Syn: see scatter
diffusion         
  • Diffusion furnaces used for [[thermal oxidation]]
  • Diffusion in the monolayer: oscillations near temporary equilibrium positions and jumps to the nearest free places.
  • Diffusion from a microscopic and  b macroscopic point of view. Initially, there are [[solute]] molecules on the left side of a barrier (purple line) and none on the right. The barrier is removed, and the solute diffuses to fill the whole container. <u>Top:</u> A single molecule moves around randomly. <u>Middle:</u> With more molecules, there is a statistical trend that the solute fills the container more and more uniformly. <u>Bottom:</u> With an enormous number of solute molecules, all randomness is gone: The solute appears to move smoothly and deterministically from high-concentration areas to low-concentration areas. There is no microscopic [[force]] pushing molecules rightward, but there ''appears'' to be one in the bottom panel. This apparent force is called an ''[[entropic force]]''.
  • Time lapse video of diffusion of a dye dissolved in water into a gel.
  • The apparent random motion of atoms, ions or molecules explained. Substances appear to move randomly due to collisions with other substances. From the iBook ''Cell Membrane Transport'', free license granted by IS3D, LLC, 2014.
  • Random collisions of particles in a gas.
NET MOVEMENT OF MOLECULES OR ATOMS FROM A REGION OF HIGH CONCENTRATION (OR HIGH CHEMICAL POTENTIAL) TO A REGION OF LOW CONCENTRATION (OR LOW CHEMICAL POTENTIAL)
Diffuse; Diffusion rate; Rate of diffusion; Diffusibility; Heterogenous diffusion

[di'fju:ʒ(ə)n]

общая лексика

диффузия

размывание

расплывание

рассеяние

медицина

диффузионный (относящийся к диффузии)

Смотрите также

annular diffusion; autonomous diffusion; barrier diffusion; bridge diffusion; conservative diffusion; convergent diffusion; counter-current diffusion; dummy diffusion; eddy diffusion; fixed-geometry diffusion; forced diffusion; hole diffusion; inlet diffusion; isentropic diffusion; isotropic diffusion; linear diffusion; multidimensional diffusion; nonlinear diffusion; nonsingular diffusion; one-dimensional diffusion; open diffusion; outward diffusion; pore diffusion; recurrent diffusion; reflecting diffusion; screw diffusion; steady-state diffusion; stopped diffusion; subsonic diffusion; transiont diffusion; unsteady-state diffusion; vaned diffusion; wide-angle diffusion; air diffusion; turbulent diffusion; gas diffusion

существительное

общая лексика

распространение

многословие

расплывчатость

физика

рассеивание

диффузия

рассеивание, диффузия

diffusion         
  • Diffusion furnaces used for [[thermal oxidation]]
  • Diffusion in the monolayer: oscillations near temporary equilibrium positions and jumps to the nearest free places.
  • Diffusion from a microscopic and  b macroscopic point of view. Initially, there are [[solute]] molecules on the left side of a barrier (purple line) and none on the right. The barrier is removed, and the solute diffuses to fill the whole container. <u>Top:</u> A single molecule moves around randomly. <u>Middle:</u> With more molecules, there is a statistical trend that the solute fills the container more and more uniformly. <u>Bottom:</u> With an enormous number of solute molecules, all randomness is gone: The solute appears to move smoothly and deterministically from high-concentration areas to low-concentration areas. There is no microscopic [[force]] pushing molecules rightward, but there ''appears'' to be one in the bottom panel. This apparent force is called an ''[[entropic force]]''.
  • Time lapse video of diffusion of a dye dissolved in water into a gel.
  • The apparent random motion of atoms, ions or molecules explained. Substances appear to move randomly due to collisions with other substances. From the iBook ''Cell Membrane Transport'', free license granted by IS3D, LLC, 2014.
  • Random collisions of particles in a gas.
NET MOVEMENT OF MOLECULES OR ATOMS FROM A REGION OF HIGH CONCENTRATION (OR HIGH CHEMICAL POTENTIAL) TO A REGION OF LOW CONCENTRATION (OR LOW CHEMICAL POTENTIAL)
Diffuse; Diffusion rate; Rate of diffusion; Diffusibility; Heterogenous diffusion
1) рассеивание (распространение влияния одного знака ключа на много знаков шифротекста) 2) преобразование (размывание) открытого текста для нарушения его статистической структуры - cryptoperiod diffusion
- key diffusion
diffuse         
  • Diffusion furnaces used for [[thermal oxidation]]
  • Diffusion in the monolayer: oscillations near temporary equilibrium positions and jumps to the nearest free places.
  • Diffusion from a microscopic and  b macroscopic point of view. Initially, there are [[solute]] molecules on the left side of a barrier (purple line) and none on the right. The barrier is removed, and the solute diffuses to fill the whole container. <u>Top:</u> A single molecule moves around randomly. <u>Middle:</u> With more molecules, there is a statistical trend that the solute fills the container more and more uniformly. <u>Bottom:</u> With an enormous number of solute molecules, all randomness is gone: The solute appears to move smoothly and deterministically from high-concentration areas to low-concentration areas. There is no microscopic [[force]] pushing molecules rightward, but there ''appears'' to be one in the bottom panel. This apparent force is called an ''[[entropic force]]''.
  • Time lapse video of diffusion of a dye dissolved in water into a gel.
  • The apparent random motion of atoms, ions or molecules explained. Substances appear to move randomly due to collisions with other substances. From the iBook ''Cell Membrane Transport'', free license granted by IS3D, LLC, 2014.
  • Random collisions of particles in a gas.
NET MOVEMENT OF MOLECULES OR ATOMS FROM A REGION OF HIGH CONCENTRATION (OR HIGH CHEMICAL POTENTIAL) TO A REGION OF LOW CONCENTRATION (OR LOW CHEMICAL POTENTIAL)
Diffuse; Diffusion rate; Rate of diffusion; Diffusibility; Heterogenous diffusion

[di'fju:s]

общая лексика

диффузный

разбросанный

распространённый

широко ветвящийся

широко расстилающийся

медицина

диффузный (рассеянный)

диффундировать

прилагательное

[di'fju:z]

общая лексика

раскинувшийся

разбросанный

рассеянный (о свете и т. п.)

многословный

болтливый

говорливый

рассеянный (о свете и т. п.)

распространенный, разбросанный

многословный, расплывчатый

физика

диффузный

медицина

разлитой

синоним

verbose

глагол

общая лексика

распространять

распространяться

распылять

рассыпать

разбрызгивать

растрачивать

расходовать

широко раскидываться (о растении)

рассеивать (свет, тепло и т. п.)

рассыпать, разбрасывать

физика

рассеивать (свет и т. п.)

рассеиваться (о свете и т. п.)

диффундировать (о газах и жидкостях)

диспергировать

диффундировать (о газах и жидкостях)

синоним

scatter

diffusion         
  • Diffusion furnaces used for [[thermal oxidation]]
  • Diffusion in the monolayer: oscillations near temporary equilibrium positions and jumps to the nearest free places.
  • Diffusion from a microscopic and  b macroscopic point of view. Initially, there are [[solute]] molecules on the left side of a barrier (purple line) and none on the right. The barrier is removed, and the solute diffuses to fill the whole container. <u>Top:</u> A single molecule moves around randomly. <u>Middle:</u> With more molecules, there is a statistical trend that the solute fills the container more and more uniformly. <u>Bottom:</u> With an enormous number of solute molecules, all randomness is gone: The solute appears to move smoothly and deterministically from high-concentration areas to low-concentration areas. There is no microscopic [[force]] pushing molecules rightward, but there ''appears'' to be one in the bottom panel. This apparent force is called an ''[[entropic force]]''.
  • Time lapse video of diffusion of a dye dissolved in water into a gel.
  • The apparent random motion of atoms, ions or molecules explained. Substances appear to move randomly due to collisions with other substances. From the iBook ''Cell Membrane Transport'', free license granted by IS3D, LLC, 2014.
  • Random collisions of particles in a gas.
NET MOVEMENT OF MOLECULES OR ATOMS FROM A REGION OF HIGH CONCENTRATION (OR HIGH CHEMICAL POTENTIAL) TO A REGION OF LOW CONCENTRATION (OR LOW CHEMICAL POTENTIAL)
Diffuse; Diffusion rate; Rate of diffusion; Diffusibility; Heterogenous diffusion
1) диффузия; проникание
2) распространение, рассредоточение
- diffusion of investment
- diffusion of ownership
- diffusion of profits
- technological diffusion
diffusion         
  • Diffusion furnaces used for [[thermal oxidation]]
  • Diffusion in the monolayer: oscillations near temporary equilibrium positions and jumps to the nearest free places.
  • Diffusion from a microscopic and  b macroscopic point of view. Initially, there are [[solute]] molecules on the left side of a barrier (purple line) and none on the right. The barrier is removed, and the solute diffuses to fill the whole container. <u>Top:</u> A single molecule moves around randomly. <u>Middle:</u> With more molecules, there is a statistical trend that the solute fills the container more and more uniformly. <u>Bottom:</u> With an enormous number of solute molecules, all randomness is gone: The solute appears to move smoothly and deterministically from high-concentration areas to low-concentration areas. There is no microscopic [[force]] pushing molecules rightward, but there ''appears'' to be one in the bottom panel. This apparent force is called an ''[[entropic force]]''.
  • Time lapse video of diffusion of a dye dissolved in water into a gel.
  • The apparent random motion of atoms, ions or molecules explained. Substances appear to move randomly due to collisions with other substances. From the iBook ''Cell Membrane Transport'', free license granted by IS3D, LLC, 2014.
  • Random collisions of particles in a gas.
NET MOVEMENT OF MOLECULES OR ATOMS FROM A REGION OF HIGH CONCENTRATION (OR HIGH CHEMICAL POTENTIAL) TO A REGION OF LOW CONCENTRATION (OR LOW CHEMICAL POTENTIAL)
Diffuse; Diffusion rate; Rate of diffusion; Diffusibility; Heterogenous diffusion
1) диффузия
2) рассеяние
diffusion         
  • Diffusion furnaces used for [[thermal oxidation]]
  • Diffusion in the monolayer: oscillations near temporary equilibrium positions and jumps to the nearest free places.
  • Diffusion from a microscopic and  b macroscopic point of view. Initially, there are [[solute]] molecules on the left side of a barrier (purple line) and none on the right. The barrier is removed, and the solute diffuses to fill the whole container. <u>Top:</u> A single molecule moves around randomly. <u>Middle:</u> With more molecules, there is a statistical trend that the solute fills the container more and more uniformly. <u>Bottom:</u> With an enormous number of solute molecules, all randomness is gone: The solute appears to move smoothly and deterministically from high-concentration areas to low-concentration areas. There is no microscopic [[force]] pushing molecules rightward, but there ''appears'' to be one in the bottom panel. This apparent force is called an ''[[entropic force]]''.
  • Time lapse video of diffusion of a dye dissolved in water into a gel.
  • The apparent random motion of atoms, ions or molecules explained. Substances appear to move randomly due to collisions with other substances. From the iBook ''Cell Membrane Transport'', free license granted by IS3D, LLC, 2014.
  • Random collisions of particles in a gas.
NET MOVEMENT OF MOLECULES OR ATOMS FROM A REGION OF HIGH CONCENTRATION (OR HIGH CHEMICAL POTENTIAL) TO A REGION OF LOW CONCENTRATION (OR LOW CHEMICAL POTENTIAL)
Diffuse; Diffusion rate; Rate of diffusion; Diffusibility; Heterogenous diffusion
сущ.
1) диффузия, распространение; проникновение одних элементов в другие при их соприкосновении;
2) распространение элементов культуры одного общества на другое;
3) многословие, расплывчатость.

Определение

diffuse
I. v. a.
Disperse, scatter, disseminate, spread, circulate, propagate, distribute, pour out, send abroad, spread abroad.
II. a.
1.
Prolix, copious, rambling, loose, verbose, wordy, long-winded, long-spun, spun out.
2.
(Med.) Spreading, ill-defined, vaguely defined.

Википедия

Nonlinear system

In mathematics and science, a nonlinear system (or a non-linear system) is a system in which the change of the output is not proportional to the change of the input. Nonlinear problems are of interest to engineers, biologists, physicists, mathematicians, and many other scientists since most systems are inherently nonlinear in nature. Nonlinear dynamical systems, describing changes in variables over time, may appear chaotic, unpredictable, or counterintuitive, contrasting with much simpler linear systems.

Typically, the behavior of a nonlinear system is described in mathematics by a nonlinear system of equations, which is a set of simultaneous equations in which the unknowns (or the unknown functions in the case of differential equations) appear as variables of a polynomial of degree higher than one or in the argument of a function which is not a polynomial of degree one. In other words, in a nonlinear system of equations, the equation(s) to be solved cannot be written as a linear combination of the unknown variables or functions that appear in them. Systems can be defined as nonlinear, regardless of whether known linear functions appear in the equations. In particular, a differential equation is linear if it is linear in terms of the unknown function and its derivatives, even if nonlinear in terms of the other variables appearing in it.

As nonlinear dynamical equations are difficult to solve, nonlinear systems are commonly approximated by linear equations (linearization). This works well up to some accuracy and some range for the input values, but some interesting phenomena such as solitons, chaos, and singularities are hidden by linearization. It follows that some aspects of the dynamic behavior of a nonlinear system can appear to be counterintuitive, unpredictable or even chaotic. Although such chaotic behavior may resemble random behavior, it is in fact not random. For example, some aspects of the weather are seen to be chaotic, where simple changes in one part of the system produce complex effects throughout. This nonlinearity is one of the reasons why accurate long-term forecasts are impossible with current technology.

Some authors use the term nonlinear science for the study of nonlinear systems. This term is disputed by others:

Using a term like nonlinear science is like referring to the bulk of zoology as the study of non-elephant animals.

Как переводится nonlinear diffusion на Русский язык