surface charge image - translation to ρωσικά
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surface charge image - translation to ρωσικά

ELECTRICAL CHARGES PRESENT AT THE SURFACE OF A SOLID AS A METAL ELECTRODE OR A CLAY MINERAL
Electric surface charge; Surface charges; Surface potential
  • Diagram depicting electro-osmosis through a glass capillary submerged in an aqueous solution.
  • Multiple layers of negative charge accumulate near a positively charged surface to form a double layer.
  • A simplified overlay of multiple layers of ions, and electric potential with increasing Debye length. The first layer of absorbed ions is referred to as the inner Helmholtz plane. Next is a layer of non-specifically absorbed, hydrated counterions which represent an outer Helmholtz plane.<ref name=Butt />

surface charge image      
поверхностное зарядное изображение; поверхностный зарядный рельеф
charge d'affaires         
HEAD OF DIPLOMATIC MISSION WHEN NO HIGHER OFFICIAL EXISTS
Charge D'affaires; Charge d'affaires; Charge d'affair; Chargé d'Affaires; Charges d'Affaires; Charge d'Affaires; Chargé d’affaires; Chargé d'affaires a.i.; Charge d'affairs; Charge d’affaires; Charge d'affaires a.i.; Chargé d’Affaires; Chargé d'affaires ad interim; Charge d'affaires ad interim; Chargés d’affaires ad interim; Charge D'Affaires; Chargé d'Affaires a.i.; Chargé d'Affaires ad interim; Chargés d'affaires; Chargé d’affairs; Chargés d'Affaires; Charge daffaires; Chargée d’Affaires; Chargés d'affaires ad interim; Chargée d'affaires; Chargé D'Affaires; Charges d'affaires

[ʃɑ:ʒei|dæ'feə]

дипломатия

поверенный в делах

существительное

дипломатия

charge's d'affaires поверенный в делах

electrostatic charge         
  • torsion balance]]
  • Diagram showing field lines and [[equipotential]]s around an [[electron]], a negatively charged particle. In an electrically neutral [[atom]], the number of electrons is equal to the number of protons (which are positively charged), resulting in a net zero overall charge
PHYSICAL PROPERTY THAT QUANTIFIES AN OBJECT'S INTERACTION WITH ELECTRIC FIELDS
Electric Charge; Electrical charge; Positive charge; Negative charge; Positive static charge; Electric charges; Electrically charged; Electrostatic charge; Negative Charge; Positive Charge; Q (electricity); Electrically neutral; Positive electricity; Positively charged; Negatively charged; Electrification by friction; Elementary electrostatic charge; Capacitor charge; Vitreous charge; Resinous charge; Charge neutrality

общая лексика

электростатический заряд

Ορισμός

Поверенный в делах

Βικιπαίδεια

Surface charge

A surface charge is an electric charge present on a two-dimensional surface. These electric charges are constrained on this 2-D surface, and surface charge density, measured in coulombs per square meter (C•m−2), is used to describe the charge distribution on the surface. The electric potential is continuous across a surface charge and the electric field is discontinuous, but not infinite; this is unless the surface charge consists of a dipole layer. In comparison, the potential and electric field both diverge at any point charge or linear charge.

In physics, at equilibrium, an ideal conductor has no charge on its interior; instead, the entirety of the charge of the conductor resides on the surface. However, this only applies to the ideal case of infinite electrical conductivity; the majority of the charge of an actual conductor resides within the skin depth of the conductor's surface. For dielectric materials, upon the application of an external electric field, the positive charges and negative charges in the material will slightly move in opposite directions, resulting in polarization density in the bulk body and bound charge at the surface.

In chemistry, there are many different processes which can lead to a surface being charged, including adsorption of ions, protonation or deprotonation, and, as discussed above, the application of an external electric field. Surface charge emits an electric field, which causes particle repulsion and attraction, affecting many colloidal properties.

Surface charge practically always appears on the particle surface when it is placed into a fluid. Most fluids contain ions, positive (cations) and negative (anions). These ions interact with the object surface. This interaction might lead to the adsorption of some of them onto the surface. If the number of adsorbed cations exceeds the number of adsorbed anions, the surface would have a net positive electric charge.

Dissociation of the surface chemical group is another possible mechanism leading to surface charge.

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