GF34105643
Iron
rod, 50mm, diameter 6.0mm, as drawn, 99.99+%
Sinônimo(s):
Iron, FE007945
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About This Item
Produtos recomendados
Ensaio
99.99%
forma
rod
fabricante/nome comercial
Goodfellow 341-056-43
resistividade
9.71 μΩ-cm
C × diâmetro
50 mm × 6.0 mm
pb
2750 °C (lit.)
pf
1535 °C (lit.)
densidade
7.86 g/mL at 25 °C (lit.)
cadeia de caracteres SMILES
[Fe]
InChI
1S/Fe
chave InChI
XEEYBQQBJWHFJM-UHFFFAOYSA-N
Categorias relacionadas
Descrição geral
For updated SDS information please visit www.goodfellow.com.
Informações legais
Product of Goodfellow
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Infection and immunity, 82(6), 2356-2367 (2014-03-26)
Hypervirulent (hypermucoviscous) Klebsiella pneumoniae (hvKP) strains are an emerging variant of "classical" K. pneumoniae (cKP) that cause organ and life-threatening infection in healthy individuals. An understanding of hvKP-specific virulence mechanisms that enabled evolution from cKP is limited. Observations by our
Proceedings of the National Academy of Sciences of the United States of America, 111(14), 5171-5176 (2014-04-08)
The enzymes PhnY and PhnZ comprise an oxidative catabolic pathway that enables marine bacteria to use 2-aminoethylphosphonic acid as a source of inorganic phosphate. PhnZ is notable for catalyzing the oxidative cleavage of a carbon-phosphorus bond using Fe(II) and dioxygen
Infection and immunity, 82(6), 2203-2210 (2014-03-20)
In order to survive inside macrophages, Salmonella produces a series of proteins encoded by genes within Salmonella pathogenicity island 2 (SPI-2). In the present study, we report that Fur, a central regulator of iron utilization, negatively controls the expression of
Hypoferremia of infection: a double-edged sword?
Nature medicine, 20(4), 335-337 (2014-04-09)
Nature medicine, 20(4), 419-424 (2014-03-25)
In response to microbial infection, expression of the defensin-like peptide hepcidin (encoded by Hamp) is induced in hepatocytes to decrease iron release from macrophages. To elucidate the mechanism by which Salmonella enterica var. Typhimurium (S. typhimurium), an intramacrophage bacterium, alters
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