verb

definition

To make something form into crystals

example

I crystallized the copper sulphate by slowly cooling a saturated solution.

definition

To assume a crystalline form

example

The copper sulphate crystallized from solution.

definition

To give something a definite or precise form

example

After some thought, I crystallized my ideas for the paper.

definition

To take a definite form

example

My ideas crystallized overnight.

definition

To coat something with crystals, especially with sugar

example

We crystallized the fruit by coating in sugar.

Examples of crystallizes in a Sentence

It crystallizes in needles and is soluble in water.

It crystallizes in orange-red needles and its alcoholic solution fluoresces strongly.

It crystallizes in needles and is soluble in alcohol.

Potassium phenolate, C 6 H 5 OK, crystallizes in fine needles, is very hygroscopic and oxidizes rapidly on exposure.

The book of Deuteronomy crystallizes a doctrine; it is the codification of teaching which presupposes a carefully prepared soil.

The story of this scribe (now combined with the memoirs of Nehemiah) crystallizes the new movement inaugurated after a return of exiles from Babylonia.

It crystallizes in octahedra isomorphous with stannic oxide.

Potassium ruthenium cyanide, K4Ru(CN) 6.3H 2 O, formed when potassium ruthenate is boiled with a solution of potassium cyanide, crystallizes in colourless plates which are soluble in water.

Potassium ruthenate, K2Ru04 H20, obtained by fusion of the metal with caustic potash and nitre, crystallizes in prisms which become covered with a black deposit on exposure to moist air.

Ammonium iodide assumes cubic forms with perfect cubic cleavage; tetramethyl ammonium iodide is tetragonal with perfect cleavages parallel to {100} and {o01} - a difference due to the lengthening of the a axes; tetraethyl ammonium iodide also assumes tetragonal forms, but does not exhibit the cleavage of the tetramethyl compound; while tetrapropyl ammonium iodide crystallizes in rhombic form.

It crystallizes in fine silky needles and is soluble in water and alcohol.

Lead chloride, PbC1 2, occurs in nature as the mineral cotunnite, which crystallizes in the rhombic system, and is found in the neighbourhood of volcanic craters.

It crystallizes in prisms with four molecules of water; when.

This solution is allowed to stand for some time (in order that any calcium sulphate and basic ferric sulphate may separate), and is then evaporated until ferrous sulphate crystallizes on cooling; it is then drawn off and evaporated until it attains a specific gravity of 1.40.

It crystallizes (in long needles) more easily when gently agitated during the cooling, or when mixed with such substances as kieselguhr.

It crystallizes in needles which rapidly decompose when exposed to moist air.

This is generally effected by adding the calculated amount of potassium chloride (of which immense quantities are obtained as a by-product in the Stassfurt salt industry) dissolved in hot water to a saturated boiling solution of sodium nitrate; the common salt, which separates on boiling down the solution, is removed from the hot solution, and on cooling the potassium nitrate crystallizes out and is separated and dried.

The salt crystallizes out on cooling with 7 molecules of water, forming colourless orthorhombic prisms, usually small and needle-shaped.

The whole mass dissolves on heating, and the anthracene crystallizes out on cooling.

It crystallizes in quadratic prisms and has a bitter taste.

By warming its aqueous solution with an excess of silver oxide it is converted into tetramethylammonium hydroxide, N(CH3)40H, which crystallizes in hygroscopic needles, and has a very alkaline reaction.

The residue crystallizes slowly, and the crystalline product is almost wholly d-benzyl-allyl-phenyl-ammonium-d-sulphonate, the corresponding /-compound remaining as a syrupy residue.

It crystallizes in small colourless needles and is easily soluble in water; the concentrated aqueous solution dissolves bromine and iodine readily.

It crystallizes from water (in which it is very soluble) in monoclinic prisms which approximate in composition to Sr(N03)2.4H20 or Sr(N03)2.5H20.

The hydrated acid crystallizes in prisms which effloresce in air, and are readily soluble in water.

The native metal crystallizes in the cubic system, the octahedron being the commonest form, but other and complex combinations have been observed.

It crystallizes in short hard prisms, which are readily soluble in water but insoluble in alcohol.

Caesium nitrate, CsNO 3, is obtained by dissolving the carbonate in nitric acid, and crystallizes in glittering prisms, which melt readily, and on heating evolve oxygen and leave a residue of caesium nitrite.

Potassium osmiate, K 2 0sO 4 2H 2 0, formed when an alkaline solution of the tetroxide is decomposed by alcohol, or by potassium nitrite, crystallizes in red octahedra.

It crystallizes in dark red octahedra which are almost insoluble in cold water.

If the carbonate be in excess, the salt Na4Zr04 results, which when treated with water gives Na2Zr8017 12H20, which crystallizes in hexagonal plates.

As the mineral thenardite or mirabilite, which crystallizes in the rhombic system, it occurs in many parts of the world, as in Spain, the western states of North America and the Russian Caucasus; in the last-named region, about 25 m.

It crystallizes in colourless prisms, possessing a saline taste; it sublimes on heating and is easily soluble in water.

It crystallizes in small prisms, having a sharp saline taste, and is exceedingly soluble in water.

It is easily soluble in water, from which it crystallizes in cubes, and also in alcohol.

It crystallizes in large transparent prisms, which melt on heating and decompose, leaving a residue of metaphosphoric acid, (HP03).

It crystallizes in quadratic prisms.

Pyrazine, C4H4N2, crystallizes from water in prisms, which have a heliotrope odour.

The carnallite principally dissolves and crystallizes out relatively pure on cooling.

To purify the crude product it is dissolved in hot water and the solution filtered and allowed to cool, when the bulk of the dissolved salt crystallizes out with characteristic promptitule.

It crystallizes from water in colourless rhombic prisms, containing four molecules of water of crystallization, and possesses a very acid reaction.

It crystallizes in long yellow needles and decomposes readily on heating into the monochloride and chlorine.

The salt crystallizes in large yellow plates, containing three molecules of water of crystallization.

It crystallizes in dark red monoclinic prisms which are readily soluble in water.

Hydroferricyanic acid, H 3 Fe(NC)s, obtained by adding concentrated hydrochloric acid to a cold saturated solution of potassium ferricyanide, crystallizes in brown needles, and is easily decomposed.

It crystallizes in dark red prisms which are readily soluble in water; it is a valuable reagent for the detection of sulphur, this element when in the form of an alkaline sulphide giving a characteristic purple blue coloration with the nitroprusside.

As the sapphire crystallizes in the hexagonal system it is dichroic, but in pale stones this character may not be well marked.

Epsom salts crystallizes in the orthorhombic system, being isomorphous with the corresponding zinc and nickel sulphates, and also with magnesium chromate.

If the violet solution is allowed to evaporate slowly at ordinary temperatures the sulphate crystallizes out as Cr2(S04)3.15H20, but the green solution on evaporation leaves only an amorphous mass.

The nitrate, Cr(NO 3) 3.9H 2 0, crystallizes in purple prisms and results on dissolving the hydroxide in nitric acid, its solution turns green on boiling.

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