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GF21695722

Iron

wire reel, 2m, diameter 0.13mm, hard, 99.99+%

Sinônimo(s):

Iron, FE005125

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About This Item

Fórmula linear:
Fe
Número CAS:
Peso molecular:
55.85
Número MDL:
Código UNSPSC:
12141721
ID de substância PubChem:
NACRES:
NA.23

Ensaio

99.99%

forma

wire

fabricante/nome comercial

Goodfellow 216-957-22

resistividade

9.71 μΩ-cm

C × diâmetro

2 m × 0.13 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

Descrição geral

For updated SDS information please visit www.goodfellow.com.

Informações legais

Product of Goodfellow

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Busque Certificados de análise (COA) digitando o Número do Lote do produto. Os números de lote e remessa podem ser encontrados no rótulo de um produto após a palavra “Lot” ou “Batch”.

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50 years ago in the Journal of Pediatrics: Iron metabolism in premature infants: II. Prevention of iron deficiency.
Pamela J Kling
The Journal of pediatrics, 164(4), 768-768 (2014-03-22)
Thomas A Russo et al.
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
Laura M van Staalduinen et al.
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
Joseph D Mancias et al.
Nature, 509(7498), 105-109 (2014-04-04)
Autophagy, the process by which proteins and organelles are sequestered in double-membrane structures called autophagosomes and delivered to lysosomes for degradation, is critical in diseases such as cancer and neurodegeneration. Much of our understanding of this process has emerged from
Chenyan Lv et al.
Biochemistry, 53(14), 2232-2241 (2014-04-01)
From an evolutionary point of view, plant and animal ferritins arose from a common ancestor, but plant ferritin exhibits different features as compared with the animal analogue. One major difference is that the 4-fold channels naturally occurring in plant ferritin

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