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Source: The Open Library

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1Arsenite of zinc and lead chromate as remedies against the Colorado potato beetle [Leptinotarsa decemlineata Say]

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“Arsenite of zinc and lead chromate as remedies against the Colorado potato beetle [Leptinotarsa decemlineata Say]” Metadata:

  • Title: ➤  Arsenite of zinc and lead chromate as remedies against the Colorado potato beetle [Leptinotarsa decemlineata Say]
  • Author:
  • Language: English
  • Number of Pages: Median: 56
  • Publisher: Govt. Print. Off.
  • Publish Date:
  • Publish Location: Washington

“Arsenite of zinc and lead chromate as remedies against the Colorado potato beetle [Leptinotarsa decemlineata Say]” Subjects and Themes:

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Access and General Info:

  • First Year Published: 1912
  • Is Full Text Available: No
  • Is The Book Public: No
  • Access Status: No_ebook

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Zinc

Zn(CN) 2, arsenite Zn(AsO2) 2, arsenate Zn(AsO4) 2·8H 2O and the chromate ZnCrO 4 (one of the few colored zinc compounds) are a few examples of other common

Zinc compounds

as white pigment), zinc chromate ZnCrO 4 (one of the few colored zinc compounds), zinc arsenite Zn(AsO2)2 (colorless powder) and zinc arsenate octahydrate

List of UN numbers 1701 to 1800

UN1701 to UN1800 as assigned by the United Nations Committee of Experts on the Transport of Dangerous Goods are as follows: n.o.s. = not otherwise specified

Arsenic

Chemoautotrophic arsenite oxidizers (CAO) and heterotrophic arsenite oxidizers (HAO) convert As(III) into As(V). CAO combine the oxidation of As(III) with

Arakiite

Långban manganese skarn deposit in Sweden. Other minerals bearing both arsenite and zinc include kraisslite and mcgovernite. The mineral crystallizes in the

List of inorganic pigments

hydroxide (Cu2CO3(OH)2). Scheele's Green (also called Schloss green): cupric arsenite (CuHAsO3). Brunswick green: various pigments, some with copper. Other pigments

Iodometry

determination of arsenic(VI) compounds is the reverse of the standardization of iodine solution with sodium arsenite, where a known and excess amount of iodide

Arsenate

and an electron acceptor, with an electrode potential of +0.56 V for its reduction to arsenite. Due to arsenic having the same valency and similar atomic

Arsenic poisoning

thus reacting with a variety of proteins and inhibiting their activity. It was also proposed that binding of arsenite at nonessential sites might contribute

Nascent hydrogen

reduction of arsenate (AsO3− 4) and arsenite (AsO3− 3) into arsine (AsH 3)), hydrogen is generated by contacting zinc powder with hydrochloric acid. So