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Chemical compound RbNO3
Rubidium nitrate is an inorganic compound with the formula RbNO3. This alkali metal nitrate salt is a white hygroscopic solid that is highly soluble in
Rubidium_nitrate
Class of chemical compounds
Alkali metal nitrates are chemical compounds consisting of an alkali metal (lithium, sodium, potassium, rubidium and caesium) and the nitrate ion. Only two
Alkali_metal_nitrate
Chemical compound
Sodium nitrate is the chemical compound with the formula NaNO3. This alkali metal nitrate salt is also known as Chile saltpeter (large deposits of which
Sodium_nitrate
Chemical compound
Rubidium azide is an inorganic compound with the formula RbN3. It is the rubidium salt of the hydrazoic acid HN3. Like most azides, it is explosive. At
Rubidium_azide
Chemical compound
Potassium nitrate is a chemical compound with a sharp, salty, bitter taste and the chemical formula KNO3. It is a potassium salt of nitric acid. This
Potassium_nitrate
Chemical compound
potassium nitrate also has a hydrate with 1.5 mol of water. Ceric rubidium nitrate Rb 2[Ce(NO 3) 6] is reddish yellow. Ceric caesium nitrate Cs 2[Ce(NO
Cerium_nitrates
Chemical compound
Lithium nitrate is an inorganic compound with the formula LiNO3. It is the lithium salt of nitric acid (an alkali metal nitrate). The salt is deliquescent
Lithium_nitrate
Variation of solubility of assorted substances
694 900 Rubidium hydrogen carbonate RbHCO3 110 Rubidium hydroxide RbOH 180 Rubidium iodate RbIO3 1.96 Rubidium iodide RbI 144 Rubidium nitrate RbNO3 19
Solubility_table
Rubidium hydroxide – RbOH Rubidium iodide – RbI Rubidium nitrate – RbNO3 Rubidium oxide – Rb2O Rubidium telluride – Rb2Te Rubidium titanyl phosphate — RbTiOPO4
List_of_inorganic_compounds
Chemical compound
qualitative analysis, rubidium permanganate is used as a reagent to detect perchlorate ions. It is produced as an intermediate from rubidium nitrate and potassium
Rubidium_permanganate
Chemical compound CsNO3
Caesium nitrate or cesium nitrate is a salt with the chemical formula CsNO3. An alkali metal nitrate, it is used in pyrotechnic compositions, as a colorant
Caesium_nitrate
rubidium periodate 13465–48–0 RbNO3 rubidium nitrate 13126–12–0 RbOH rubidium hydroxide 1310–82–3 RbO2 rubidium superoxide 12137–25–6 Rb2O rubidium oxide
List of CAS numbers by chemical compound
List_of_CAS_numbers_by_chemical_compound
RbBr rubidium bromide 7789–39–1 RbBrO rubidium hypobromite RbBrO2 rubidium bromite RbBrO3 rubidium bromate RbBrO4 rubidium perbromate RbCl rubidium chloride
Glossary_of_chemical_formulae
Low explosive pyrotechnic devices for entertainment
(preface of 1621, printed 1628) describe recipes, several of which used low-nitrate gunpowder, to create military signal smokes with various colors. In the
Fireworks
Chemical compound that produces coloured flames
anions however influence the flame temperature, both by increasing it (e.g. nitrates, chlorates) and decreasing it (e.g. carbonates, oxalates), indirectly influencing
Pyrotechnic_colorant
Chemical element with atomic number 55 (Cs)
temperature. Caesium has physical and chemical properties similar to those of rubidium and potassium. It is pyrophoric and reacts with water even at −116 °C (−177 °F)
Caesium
Chemical compound
Neptunyl ammonium nitrate is a chemical compound with the chemical formula NH4NpO2(NO3)3. It is prepared by dissolving neptunyl(VI) nitrate (NpO2(NO3)2·xH2O)
Neptunyl_ammonium_nitrate
instead of nitrate, and is similarly sensitive to water. Pentanitratoaluminates have five nitrate groups. Tetranitratoaluminates have only four nitrate groups
Hexanitratoaluminate
Group of highly reactive chemical elements
consist of the chemical elements lithium (Li), sodium (Na), potassium (K), rubidium (Rb), caesium (Cs), and francium (Fr). Together with hydrogen they constitute
Alkali_metal
Chemical compound
aluminium and nitrate groups with formula [Al(NO3)4]− that can form salts called tetranitratoaluminates. It is unusual in being a nitrate complex of a
Tetranitratoaluminate
Solute that (almost) completely ionizes or dissociates in solution
Lithium hydroxide, LiOH Sodium hydroxide, NaOH Potassium hydroxide, KOH Rubidium hydroxide, RbOH Caesium hydroxide, CsOH Calcium hydroxide, Ca(OH)2 Strontium
Strong_electrolyte
Substance that can explode
industry tends to use nitrate-based explosives such as emulsions of fuel oil and ammonium nitrate solutions, mixtures of ammonium nitrate prills (fertilizer
Explosive
Tropane alkaloid and stimulant drug
hydrochloride (HCl) salt, although other salts such as the sulfate (SO42−) and nitrate (NO3−) are occasionally observed. The solubility of these salts varies
Cocaine
Polyatomic cation
(rionic = 148 pm), it is intermediate in size between potassium (144 pm) and rubidium ions (152 pm) when in an octahedral environment. The vibrational spectrum
Ammonium
Type of anion
alkali metal hexafluorouranates, which include lithium, sodium, potassium, rubidium, and two salts of caesium, one of which uses the uranium in the +4 oxidation
Hexafluorouranate
Oxide that shows basic properties
to produce potassium hydroxide: K2O + H2O → 2 KOH Rubidium oxide reacts with water to produce rubidium hydroxide: Rb2O + H2O → 2 RbOH Caesium oxide reacts
Basic_oxide
Chemical element with atomic number 7 (N)
in 1790 when it was found that nitrogen was present in nitric acid and nitrates. Antoine Lavoisier suggested instead the name azote, from the Ancient Greek:
Nitrogen
Chemical compound
organometallic chemistry as a precipitating agent for potassium, ammonium, rubidium, and caesium ions, and some organic nitrogen compounds. Sodium tetraphenylborate
Sodium_tetraphenylborate
Compounds containing at least one atom of francium
other caesium salts, including the iodate, the picrate, the tartrate (also rubidium tartrate), the chloroplatinate, and the silicotungstate. It also coprecipitates
Francium_compounds
Chart describing whether ionic compounds dissolve or precipitate
Solubility rules Compounds that include ammonium (NH+ 4), chlorate (ClO− 3), or nitrate (NO− 3) are soluble without exceptions. Compounds that include carbonate
Solubility_chart
Fifth row of the periodic table
vertical columns. The fifth period contains 18 elements, beginning with rubidium and ending with xenon. As a rule, period 5 elements fill their 5s shells
Period_5_element
Chemical compound
include K+[ClOF4]− (potassium tetrafluorooxochlorate(V)), Rb+[ClOF4]− (rubidium tetrafluorooxochlorate(V)), and Cs+[ClOF4]− (caesium tetrafluorooxochlorate(V))
Chlorosyl_trifluoride
Chemical element with atomic number 47 (Ag)
Silver nitrate is used in many ways in organic synthesis, e.g. for deprotection and oxidations. Ag+ binds alkenes reversibly, and silver nitrate has been
Silver
1 Didymium nitrate UN 1466 5.1 Ferric nitrate UN 1467 5.1 Guanidine nitrate UN 1468 ? (UN No. no longer in use) UN 1469 5.1 Lead nitrate UN 1470 5.1
List of UN numbers 1401 to 1500
List_of_UN_numbers_1401_to_1500
Anion
crystallize as water-soluble hydrates with the exception of potassium, rubidium, and cesium. Fluoroborate is often used to isolate highly electrophilic
Tetrafluoroborate
Class of chemical compounds
salts. The singly charged ion can be any of the full range of potassium, rubidium, cesium, ammonium (NH4), or thallium. As a mineral the ammonium nickel
Nickel_double_salts
American physicist
University, where he submitted his PhD thesis on "Lattice energies of rubidium bromide and sodium chloride and electron affinities of their halogens"
Lindsay_Helmholz
First period of the Paleoproterozoic Era
has also been detected through the beta decay and radiometric dating of rubidium (Rb–Sr), and is mainly connected to the deposition of volcanic rocks. At
Siderian
Salt or ester of carbonic acid
variety of bonding modes. [citation needed] Lithium, sodium, potassium, rubidium, caesium, and ammonium carbonates are water-soluble salts, but carbonates
Carbonate
German nuclear chemist and Nobel laureate (1879–1968)
discovered the phenomena of atomic recoil and nuclear isomerism, and pioneered rubidium–strontium dating. In 1938, Hahn, Meitner and Fritz Strassmann discovered
Otto_Hahn
Chemical element with atomic number 19 (K)
Illustrating the thermal stability typical for these materials, potassium nitrate, sodium nitrate, and sodium nitrite form a eutectic, which remains liquid from
Potassium
Chemical element with atomic number 31 (Ga)
point. Gallium is one of the four non-radioactive metals (with caesium, rubidium, and mercury) that are known to be liquid at, or near, normal room temperature
Gallium
Chemical element with atomic number 58 (Ce)
compound ceric ammonium nitrate (CAN) (NH4)2[Ce(NO3)6] is the most common cerium compound encountered in the laboratory. The six nitrate ligands bind as bidentate
Cerium
orange rubidium sodium chloride 7Rb+·Na+·2Cl−·3Rb 2C 10N 4O2− 2·CH 3CH 2OH, orange, loses 1 ethanol at 96 °C, stable to 361 °C magnesium disodium nitrate, Mg2+·2Na+C
1,3-Bis(dicyanomethylene)squarate
1,3-Bis(dicyanomethylene)squarate
Lake in Washington, United States
Mars. As of 2000[update]: Less than 0.01 mg/L of aluminum, iron, copper, rubidium, lithium, strontium, barium, chromium, lead, manganese, titanium, vanadium
Soap_Lake
Uranium oxyanion associated with a monovalent or divalent cation
Egmond, A. B.; Cordfunke, E. H. P. (1976). "Investigations on potassium and rubidium uranates". Journal of Inorganic and Nuclear Chemistry. 38 (12): 2245–2247
Uranate
Chemical compound
condensed aerosol fire suppression, although as the byproduct of potassium nitrate;[citation needed] as an ingredient in welding fluxes, and in the flux coating
Potassium_carbonate
Chemical element with atomic number 11 (Na)
lithium but higher than those of the heavier alkali metals potassium, rubidium, and caesium, following periodic trends down the group. These properties
Sodium
(UN No. no longer in use) UN 2676 2 Stibine UN 2677 8 Rubidium hydroxide solution UN 2678 8 Rubidium hydroxide UN 2679 8 Lithium hydroxide solution UN 2680
List of UN numbers 2601 to 2700
List_of_UN_numbers_2601_to_2700
Chemical element with atomic number 81 (Tl)
by Robert Bunsen and Gustav Kirchhoff and the discovery of caesium and rubidium in the years 1859 to 1860, flame spectroscopy became an approved[by whom
Thallium
Chemical compound
Alternatively and more conveniently, K2O is synthesized by heating potassium nitrate with metallic potassium: 2 KNO3 + 10 K → 6 K2O + N2 ↑ Other possibility
Potassium_oxide
Chemical element with atomic number 71 (Lu)
common exception of the iodide, which is brown. The soluble salts, such as nitrate, sulfate and acetate form hydrates upon crystallization. The oxide, hydroxide
Lutetium
Chemical element with atomic number 97 (Bk)
quantities of americium for the target material. First, americium (241Am) nitrate solution was coated on a platinum foil, the solution was evaporated and
Berkelium
Chemical compound
A second method involves heating a mixture of sodium azide and sodium nitrate: 5 NaN3 + NaNO3 → 3 Na2O + 8 N2 Burning sodium in air produces a mixture
Sodium_oxide
Chemical compound
to its ability to nitrosate ketones under certain conditions. Lithium nitrate (LiNO3) will undergo thermal decomposition above 500 °C to yield the evolution
Lithium_nitrite
Chemical compound
the production of aqua fortis (nitric acid, HNO3) from nitre (potassium nitrate, KNO3) and oil of vitriol (sulphuric acid, H2SO4) via Glauber's process:
Potassium_sulfate
Particle, atom or molecule with a net electrical charge
An electrostatic potential map of the nitrate ion (NO3−). The 3-dimensional shell represents a single arbitrary isopotential.
Ion
Shallow saline lake in California, United States
lithium (202 ppm ± 20%, i.e. more than in the Dead Sea, which is 30–40 ppm), rubidium (110 ppm ± 47%), caesium (19.8 ppm ± 15%), bromine (91 ppm ± 31% vs 5000
Salton_Sea
Chemical compound
at 100 °C it explodes exothermically forming chlorine and oxygen. When rubidium perchloratoborate is reacted with extra perchloric acid, it forms RbBO(ClO4)2
Perchloratoborate
Crystallographic system where the unit cell is in the shape of a cube
Examples of compounds with this structure include zincblende itself, lead(II) nitrate, many compound semiconductors (such as gallium arsenide and cadmium telluride)
Cubic_crystal_system
Potassium compound and alternative to salt
minerals. It is a by-product of the production of nitric acid from potassium nitrate and hydrochloric acid. Most potassium chloride is produced as agricultural
Potassium_chloride
Class of chemical compounds
Isostructural compounds KNpO2CO3, RbNpO2CO3, and CsNpO2CO3, containing potassium, rubidium, and caesium ions respectively, are also known. These compounds have space
Neptunyl_carbonates
Chemical element with atomic number 87 (Fr)
other caesium salts, including the iodate, the picrate, the tartrate (also rubidium tartrate), the chloroplatinate, and the silicotungstate. It also coprecipitates
Francium
Chemical compound
1016/s0378-7753(02)00041-1. Audette, R. J.; Quail, J. W. (1972). "Potassium, rubidium, cesium, and barium ferrates(VI). Preparations, infrared spectra, and magnetic
Barium_ferrate
Chemical element with atomic number 48 (Cd)
forming cadmium chloride (CdCl2), cadmium sulfate (CdSO4), and cadmium nitrate (Cd(NO3)2) respectively. The oxidation state +1 can be produced by dissolving
Cadmium
Chemical element with atomic number 59 (Pr)
calculated to have a very large atomic radius; with a radius of 247 pm, barium, rubidium and caesium are larger. However, observationally, it is usually 185 pm
Praseodymium
Underground fungal networks that connect individual plants together
Zasoski, R. J. (January 2008). "Hyphal-mediated transfer of nitrate, arsenic, cesium, rubidium, and strontium between arbuscular mycorrhizal forbs and grasses
Mycorrhizal_network
Chemical element with atomic number 30 (Zn)
solutions, this hydroxide is dissolved to form zincates ([Zn(OH)4]2− ). The nitrate Zn(NO3) 2, chlorate Zn(ClO3) 2, sulfate ZnSO 4, phosphate Zn 3(PO4) 2,
Zinc
Anion, salt, functional group or ester derived from a phosphoric acid
in water at standard temperature and pressure. The sodium, potassium, rubidium, caesium, and ammonium phosphates are all water-soluble. Most other phosphates
Phosphate
Chemical element with atomic number 84 (Po)
carbonate, citrate, chromate, cyanide, formate, (II) or (IV) hydroxide, nitrate, selenate, selenite, monosulfide, sulfate, disulfate or sulfite salts.
Polonium
Chemical element with atomic number 83 (Bi)
H2O + Bi2(SO4)3 + 3 SO2 It reacts with nitric acid to make bismuth(III) nitrate (which decomposes into nitrogen dioxide when heated). Bi + 6 HNO3 → 3 H2O
Bismuth
Chemical element with atomic number 80 (Hg)
bromine, one of the halogens, though metals such as caesium, gallium, and rubidium melt just above room temperature. Compared to other metals, mercury is
Mercury_(element)
Abbreviations used in chemistry
"quicksilver", and in a few archaic terms such as lunar caustic (silver nitrate) and saturnism (lead poisoning). The following symbols were employed by
Chemical_symbol
Chemical element with atomic number 27 (Co)
hexaaquocobalt(II) [Co(H2O)6]2+ is found in several routine cobalt salts such as the nitrate and sulfate. A large inventory of complexes exists for cobalt(III) bound
Cobalt
Chemical element with atomic number 33 (As)
CAO combine the oxidation of As(III) with the reduction of oxygen or nitrate. They use obtained energy to fix produce organic carbon from CO2. HAO cannot
Arsenic
Chemical element with atomic number 56 (Ba)
produces the sulfate, with nitric acid the nitrate, with aqueous carbon dioxide the carbonate, and so on. The nitrate can be thermally decomposed to yield the
Barium
Avogadro Americium Amethyst Amide Amine Amino acid Ammonia Ammonium Ammonium nitrate Ammonium perchlorate Amphibole Analcim Analcite Analytical chemistry Anatase
Index_of_chemistry_articles
Chemical element with atomic number 61 (Pm)
salt, PmCl3, is produced; similarly, when dissolved in nitric acid, a nitrate results, Pm(NO3)3. The latter is also well-soluble; when dried, it forms
Promethium
(2025-01-27). "Enhanced Coplanarity and Giant Birefringence in Hydroxypyridinium Nitrate via Hydrogen Bonding between Planar Donors and Planar Acceptors". Angewandte
Giant_birefringence
Chemical element with atomic number 29 (Cu)
oxyanions form complexes; these include copper(II) acetate, copper(II) nitrate, and copper(II) carbonate. Copper(II) sulfate forms a blue crystalline
Copper
2053-29-4 CH3NO formamide 75-12-7 CH3NO2 methyl nitrite 624-91-9 CH3NO3 methyl nitrate 598-58-3 CH3NS methanethioamide 115-08-2 CH3NSi isocyano silane 18081-38-4
List of compounds with carbon number 1
List_of_compounds_with_carbon_number_1
Any of the fifteen lanthanides plus scandium and yttrium
Gustav Mosander, an assistant of Berzelius, separated ceria by heating the nitrate and dissolving the product in nitric acid. He called the oxide of the soluble
Rare-earth_element
Astrophysical phenomenon
are a major source of elements in the interstellar medium from oxygen to rubidium. The expanding shock waves of supernovae can trigger the formation of new
Supernova
Chemical element with atomic number 17 (Cl)
unstable chlorine derivatives of other oxoacids: examples include chlorine nitrate (ClONO2, vigorously reactive and explosive), and chlorine fluorosulfate
Chlorine
Chemical element with atomic number 88 (Ra)
almost exactly the same as those of the heavier alkali metals potassium, rubidium, and caesium. Solid radium compounds are white as radium ions provide no
Radium
Interruption of cardiac blood supply
sestamibi (MIBI scans) or tetrofosmin; or a PET scan using Fludeoxyglucose or rubidium-82. These nuclear medicine scans can visualize the perfusion of heart muscle
Myocardial_infarction
Anion with formula OCN and charge –1
KOCN tetragonal I4/mcm a = 6.091 c = 7.052 261.6 2.056 melts at 315 °C Rubidium cyanate RbOCN tetragonal I4/mcm a = 6.35 c = 7.38 297.58 2.85 Cesium cyanate
Cyanate
Chemical element with atomic number 98 (Cf)
ion in solution have failed. The element forms a water-soluble chloride, nitrate, perchlorate, and sulfate and is precipitated as a fluoride, oxalate, or
Californium
Chemical element with atomic number 92 (U)
colors. Uranium was also used in photographic chemicals (especially uranium nitrate as a toner), in lamp filaments for stage lighting bulbs, to improve the
Uranium
Chemical element with atomic number 68 (Er)
fluoride is a pinkish powder that can be produced by reacting erbium(III) nitrate and ammonium fluoride. It can be used to make infrared light-transmitting
Erbium
Chemical element with atomic number 13 (Al)
hydrolysis takes place for salts with strong acids, such as the halides, nitrate, and sulfate. For similar reasons, anhydrous aluminium salts cannot be
Aluminium
Chemical element with atomic number 57 (La)
Swedish chemist Carl Gustaf Mosander in 1839 as an impurity in cerium nitrate – hence the name lanthanum, from the ancient Greek λανθάνειν (lanthanein)
Lanthanum
Form of metal
states through sulfides and silicates to halides and chlorates, iodates, nitrates and others. Natural alloys of copper (particularly with silver; the two
Native_metal
Chemical element with atomic number 28 (Ni)
useful for electroplating nickel. Common salts of nickel, such as chloride, nitrate, and sulfate, dissolve in water to give green solutions of the metal aquo
Nickel
Chemical element with atomic number 90 (Th)
fluoride or fluorosilicate ions; if these are not present, passivation by the nitrate can occur, as with uranium and plutonium. Most binary compounds of thorium
Thorium
Chemical element with atomic number 24 (Cr)
large number of chromium(III) compounds are known, such as chromium(III) nitrate, chromium(III) acetate, and chromium(III) oxide. Chromium(III) can be obtained
Chromium
Chemical element with atomic number 8 (O)
the gaseous byproduct released by the thermal decomposition of potassium nitrate. However, this important connection was not understood by contemporary
Oxygen
Chemical element with atomic number 91 (Pa)
sulfates, phosphates, nitrates, etc. The nitrate is usually white but can be brown due to radiolytic decomposition. Heating the nitrate in air at 400 °C converts
Protactinium
Chemical element with atomic number 53 (I)
impurities in the caliche, found in Chile, whose main product is sodium nitrate. In total, they can contain at least 0.02% and at most 1% iodine by mass
Iodine
Chemical element with atomic number 94 (Pu)
with most other metals. Exceptions include lithium, sodium, potassium, rubidium and caesium of the alkali metals; and magnesium, calcium, strontium, and
Plutonium
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RUBIDIUM NITRATE
RUBIDIUM NITRATE
RUBIDIUM NITRATE
RUBIDIUM NITRATE
RUBIDIUM NITRATE
RUBIDIUM NITRATE
RUBIDIUM NITRATE
RUBIDIUM NITRATE
RUBIDIUM NITRATE
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