francium oor Indonesies

francium

/ˈfɹansɪəm/ naamwoord
en
A metallic chemical element (symbol Fr) with an atomic number of 87.

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fransium

naamwoord
en
Chemical element with symbol Fr and atomic number 87, alkali metal.
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Fransium

en
element with the atomic number of 87
id
Unsur dengan nomor atom 87
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Rhenium (Latin: Rhenus meaning: "Rhine") was the second last-discovered of the elements that have a stable isotope (other new elements discovered in nature since then, such as francium, are radioactive).
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The relativistic stabilisation of the 8s orbital also increases ununennium's electron affinity far beyond that of caesium and francium; indeed, ununennium is expected to have an electron affinity higher than all the alkali metals lighter than it.
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Four more elements have melting points slightly above room temperature: francium, caesium, gallium and rubidium.
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Additionally, francium superoxide (FrO2) is expected to have significant covalent character, unlike the other alkali metal superoxides, because of bonding contributions from the 6p electrons of francium.
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What little is known about francium shows that it is very close in behaviour to caesium, as expected.
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Francium should also have a higher electron affinity than caesium and the Fr− ion should be more polarizable than the Cs− ion.
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Francium-223 is the fifth product of the actinium decay series as the daughter isotope of actinium-227.
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All of the discovered alkali metals occur in nature as their compounds: in order of abundance, sodium is the most abundant, followed by potassium, lithium, rubidium, caesium, and finally francium, which is very rare due to its extremely high radioactivity; francium occurs only in the minutest traces in nature as an intermediate step in some obscure side branches of the natural decay chains.
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Francium has seven metastable nuclear isomers.
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Francium is an alkali metal whose chemical properties mostly resemble those of caesium.
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Francium's melting point was calculated to be around 27 °C (80 °F, 300 K).
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The physical properties of francium are even sketchier because the bulk element has never been observed; hence any data that may be found in the literature are certainly speculative extrapolations.
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Bulk francium has never been viewed.
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In a given sample of uranium, there is estimated to be only one francium atom for every 1 × 1018 uranium atoms.
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The least stable ground state isotope is francium-215, with a half-life of 0.12 μs: it undergoes a 9.54 MeV alpha decay to astatine-211.
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The chemistry of francium is not well established due to its extreme radioactivity; thus, the presentation of its properties here is limited.
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All of the alkali metals except lithium and caesium have at least one naturally occurring radioisotope: sodium-22 and sodium-24 are trace radioisotopes produced cosmogenically, potassium-40 and rubidium-87 have very long half-lives and thus occur naturally, and all isotopes of francium are radioactive.
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francium Fr 87
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The remaining 6 transient elements (technetium, promethium, astatine, francium, neptunium, and plutonium) occur only rarely, as products of rare decay modes or nuclear reaction processes involving uranium or other heavy elements.
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Francium-223 is the most stable isotope, with a half-life of 21.8 minutes, and it is highly unlikely that an isotope of francium with a longer half-life will ever be discovered or synthesized.
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This is unusual as periodic trends, ignoring relativistic effects would predict ununennium to be even more reactive than caesium and francium.
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Due to its instability and rarity, there are no commercial applications for francium.
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The necessary data are available for almost all elements, and this method allows the estimation of electronegativities for elements that cannot be treated by the other methods, e.g. francium, which has an Allen electronegativity of 0.67.
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Whilst francium and radium do show typical properties of groups 1 and 2, respectively, the actinides display a much greater variety of behaviour and oxidation states than the lanthanides.
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The CsFr molecule is polarised as Cs+Fr−, showing that the 7s subshell of francium is much more strongly affected by relativistic effects than the 6s subshell of caesium.
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61 sinne gevind in 7 ms. Hulle kom uit baie bronne en word nie nagegaan nie.