Lanthanum Nitrate 0.1 mol/l (0.1N) volumetric solution

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Name Lanthanum Nitrate 0.1 mol/L (0.1N) Volumetric Solution
Concentration 0.1 mol/L
Molarity 0.1N
Formula La(NO3)3
Molecular Weight 333.01 g/mol
Appearance Colorless to slightly yellow liquid
Solubility Soluble in water
Purity Minimum 99%
Storage Conditions Store in a cool, dry place
Usage Used in analytical chemistry and volumetric analysis
Packaging Available in various sizes, typically in glass bottles
Shelf Life Stable for at least 2 years when stored properly
Manufacturing Process Prepared by dissolving Lanthanum Nitrate hexahydrate in water and adjusting the concentration
FAQ
What is Lanthanum Nitrate 0.1M Volumetric Solution?
Lanthanum nitrate is a chemical compound with the formula La(NO3)3. The 0.1M volumetric solution means that it has a concentration of 0.1 mol/L, which is equivalent to 0.1N (normality).

How is Lanthanum Nitrate 0.1M Volumetric Solution prepared?
Lanthanum Nitrate 0.1M Volumetric Solution can be prepared by dissolving the appropriate amount of Lanthanum Nitrate in a specific volume of water to achieve a concentration of 0.1 mol/L. The solution should be thoroughly mixed to ensure homogeneity.

What are the applications of Lanthanum Nitrate 0.1M Volumetric Solution?
Lanthanum Nitrate 0.1M Volumetric Solution has various applications in analytical chemistry, as a reagent for the determination of phosphate and sulfate ions. It can also be used in the synthesis of other lanthanum compounds and as a catalyst in organic reactions.

How should Lanthanum Nitrate 0.1M Volumetric Solution be stored?
Lanthanum Nitrate 0.1M Volumetric Solution should be stored in a cool, dry place away from direct sunlight and heat sources. It should be kept tightly sealed to prevent contamination and degradation. Proper labeling with the concentration and date of preparation is essential for traceability.

Can Lanthanum Nitrate 0.1M Volumetric Solution be used for titration purposes?
Yes, Lanthanum Nitrate 0.1M Volumetric Solution can be used for titration purposes, especially in complexometric titrations. It can be used to determine the concentration of various anions, including phosphate and sulfate ions, in aqueous solutions.
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