DIFFUSION - traducción al árabe
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DIFFUSION - traducción al árabe


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

ألاسم

إِذَاعَة ; تَصَعُّد ; تَطَايُر ; تَفَرُّق ; ضَوْع

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
اِنْتِشَار
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
نشر ، انتشار انبثاث اسهاب انتشار

Definición

diffusion

Wikipedia

Diffusion
Diffusion is the net movement of anything (for example, atoms, ions, molecules, energy) generally from a region of higher concentration to a region of lower concentration. Diffusion is driven by a gradient in Gibbs free energy or chemical potential.
Ejemplos de uso de DIFFUSION
1. A natural consequence of this outward diffusion is the return flow, the counter– diffusion, from non–Europe.
2. So diffusion gave way to "indigenism", which emphasised local invention together with diffusion of ideas, rather than people.
3. The Japanese currency rallied despite the diffusion index of leading economic indicators being downwardly revised.
4. There are two commonly used methods of enriching uranium – gaseous diffusion and gas centrifuges.
5. Elsewhere Japan‘s diffusion index of leading economic indicators rose sharply in October, compared to September.