What is the Vanderwall Radius

Translation of "ionic radius" in German

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A bioresorbable biomaterial tricalcium phosphate compound comprising calcium, oxygen and phosphorous, wherein a portion of at least one of said elements is substituted with an element having an ionic radius of approximately 0.1 to 0.4Å.
Bioresorbable biomaterial tricalcium phosphate compound comprising calcium, oxygen and phosphorus, wherein a part of at least one of the said elements with an element, the one Ionic radius from about 0.1 to 0.4 Å is substituted.
A biomaterial compound according to claim 1, wherein a portion of the phosphorous is substituted by at least one element having an ionic radius of approximately 0.1 to 0.4Å.
Biomaterial compound according to claim 1, wherein a part of the phosphorus by at least one element, the one Ionic radius from about 0.1 to 0.4 Å is substituted.
Process according to one or more of claims 1-7, wherein use is made of a further metal source M wherein M represents a bivalent metal ion having an ionic radius between 0.050 and 0.085 nm, preferably nickel and / or cobalt or lithium.
The method according to one or more of claims 1 to 7, in which a further metal source M, where M is a divalent metal ion with a Ionic radius between 0.050 nm and 0.085 nm, preferably nickel and / or cobalt or lithium is used.
The method of Claim 26, wherein the melt further includes an element β, wherein said β is a trivalent cation that has an ionic radius greater than trivalent aluminum.
The method of claim 26, wherein the melt additionally contains an element β, said β being a trivalent cation having a Ionic radiusthat is greater than that of trivalent aluminum.
The optical data storage medium according to claim 1 or 2, wherein a dye contained in said dye containing layer is cyanine dye and a counter-ion of said cyanine dye has an ionic radius larger than 0.294 nm.
The optical data storage medium according to claim 1 or 2, wherein a dye contained in the dye-containing layer is cyanine dye, and wherein a counter ion of the cyanine dye is one Ionic radius greater than 0.294 nm.
Such techniques rely on empirical correlations, which relate the uptake of trace metals in calcite (measured in laboratory tests) with selected chemical properties of the coprecipitated metals (e.g. ionic radius, sorption properties, solubility products of the pure trace metal carbonates).
These techniques are based on empirical correlations that determine the uptake of trace metals (measured in laboratory experiments) in calcite with selected chemical properties of the trace metal such as Ionic radius, the sorption properties or the solubility of the pure carbonate.
Apparatus as claimed in claim 1, in which the ionic radius of the ceramic oxide is within a factor of 0.75 of the ionic radius of the first and second dopants.
Apparatus according to claim 1, in which the Ionic radius of ceramic oxide within 0.75 times the Ionic radius of the first and second dopants.
A solid electrolyte as defined in any one of the preceding claims wherein the ionic radius of said ceramic oxide is within a factor of 0.75 of the ionic radius of said dopants.
Solid electrolyte according to one of the preceding claims, wherein the Ionic radius of the ceramic oxide within a factor of 0.75 des Ionic radius the doping lies.
An electron emitting device according to claim 1, wherein the ionic radius of the most stable ion of said first metal element is greater than the ionic radius of the most stable ion of said second metal element.
The electron-emitting device of claim 1, wherein the Ionic radius of the most stable ion of the first metallic element is greater than that Ionic radius of the most stable ion of the second metallic element.
Use according to one of Claims 1 to 6, characterized in that iron or aluminum ions, fluoride ions or other ions having a small ionic radius are used additionally.
Use according to one of Claims 1 to 6, characterized in that, in addition, iron or aluminum ions, fluoride ions or other ions with low ion radius can be added.
The foamable composition of Claim 1, wherein said inorganic salt satisfies the relationships and wherein: r = crystal ionic radius of said cation, in angstrom units q = valence of said cation pKa = -logKa Ka = equilibrium ionization constant of the anion acid.
The foamable composition of claim 1, wherein the inorganic salt satisfies the following relationships: and wherein: r = Crystal ion radius of the cation in Ångström units q = valence of the cation pKa = -logKa Ka = equilibrium ionization constant of the anionic acid.
Therefore, the ionic radius is smaller than the atomic radius.
when one element in a mineral can be replaced by one or more other elements of similar chemical nature and the same or very similar ionic radius, without markedly changing the crystal structure.
One speaks of isomorphic replacement or an isomorphic mixed crystal row when an element of a mineral is replaced by other elements of a similar chemical nature and the same or very similar ion radius can be replaced without significantly changing the crystal structure.
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