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  2. Atomic diffusion - Wikipedia

    en.wikipedia.org/wiki/Atomic_diffusion

    In chemical physics, atomic diffusion is a diffusion process whereby the random, thermally-activated movement of atoms in a solid results in the net transport of atoms. For example, helium atoms inside a balloon can diffuse through the wall of the balloon and escape, resulting in the balloon slowly deflating.

  3. Balloon - Wikipedia

    en.wikipedia.org/wiki/Balloon

    The process by which a substance or solute migrates from a region of high concentration, through a barrier or membrane, to a region of lower concentration is called diffusion. The inside of balloons can be treated with a special gel (for instance, the polymer solution sold under the "Hi Float" brand) which coats the inside of the balloon to ...

  4. Diffusion process - Wikipedia

    en.wikipedia.org/wiki/Diffusion_process

    Diffusion process is stochastic in nature and hence is used to model many real-life stochastic systems. Brownian motion , reflected Brownian motion and Ornstein–Uhlenbeck processes are examples of diffusion processes.

  5. Molecular diffusion - Wikipedia

    en.wikipedia.org/wiki/Molecular_diffusion

    The self-diffusion coefficient of neat water is: 2.299·10 −9 m 2 ·s −1 at 25 °C and 1.261·10 −9 m 2 ·s −1 at 4 °C. [2] Chemical diffusion occurs in a presence of concentration (or chemical potential) gradient and it results in net transport of mass. This is the process described by the diffusion equation.

  6. Anomalous diffusion - Wikipedia

    en.wikipedia.org/wiki/Anomalous_diffusion

    Anomalous diffusion is a diffusion process with a non-linear relationship between the mean squared displacement (MSD), ... In 1926, using weather balloons, ...

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    mail.aol.com

    Get AOL Mail for FREE! Manage your email like never before with travel, photo & document views. Personalize your inbox with themes & tabs. You've Got Mail!

  8. Diffusion - Wikipedia

    en.wikipedia.org/wiki/Diffusion

    Diffusion is a stochastic process due to the inherent randomness of the diffusing entity and can be used to model many real-life stochastic scenarios. Therefore, diffusion and the corresponding mathematical models are used in several fields beyond physics, such as statistics , probability theory , information theory , neural networks , finance ...

  9. You'll Actually Want to Sip and Savor These Non-Alcoholic Wines

    www.aol.com/youll-actually-want-sip-savor...

    $22.00 at boisson.co. Drink Proxies Gold Crush Sparkling White Wine. You'll want to toast to this drink! Not only is it bubbly, but it's also both chef and sommelier approved with a light ...