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GF46206514

Eisen

microfoil, disks, 10mm, thinness 0.05μm, specific density 40.44μg/cm2, permanent mylar 3.5μm support, 99.99+%

Synonym(e):

Eisen

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About This Item

Lineare Formel:
Fe
CAS-Nummer:
Molekulargewicht:
55.85
MDL-Nummer:
UNSPSC-Code:
12141721
PubChem Substanz-ID:
NACRES:
NA.23

Assay

99.99%

Form

disc

Hersteller/Markenname

Goodfellow 462-065-14

Widerstandsfähigkeit

9.71 μΩ-cm

Durchm. × Dicke

10 mm × 0.05 μm

bp

2750 °C (lit.)

mp (Schmelzpunkt)

1535 °C (lit.)

Dichte

7.86 g/mL at 25 °C (lit.)

SMILES String

[Fe]

InChI

1S/Fe

InChIKey

XEEYBQQBJWHFJM-UHFFFAOYSA-N

Allgemeine Beschreibung

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

Rechtliche Hinweise

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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
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)
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
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

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