69
To determine the number of moles in nickel acetate, you need to know the mass of nickel acetate. Once you know the mass, you can use the formula: moles = mass / molar mass. The molar mass of nickel acetate is 176.7 g/mol.
The oxidation number of acetate (CH3COO-) is -1. The carbon atom has an oxidation number of +3, each hydrogen atom has an oxidation number of +1, and the oxygen atoms have an oxidation number of -2.
the answer is that it is called a atomic number.
There are (5.24 \times 10^{22}) molecules of sodium acetate in 0.87 moles of sodium acetate. This is calculated by multiplying Avogadro's number (6.022 x 10^23 molecules/mol) by the number of moles given (0.87 mol).
The formula for sodium acetate is CH3COONa and the equivalent weight is the same as the molecular weight (molar mass) which is 82.0343 g/mol.
To determine the number of moles in nickel acetate, you need to know the mass of nickel acetate. Once you know the mass, you can use the formula: moles = mass / molar mass. The molar mass of nickel acetate is 176.7 g/mol.
Li is the atomic symbol on the periodic table for Lithium, and C2H3O2 is the configuration for acetate. Together, this reads "Lithium acetate"
The exact molar mass of calcium acetate is 158.17 g/mol.
The oxidation number of acetate (CH3COO-) is -1. The carbon atom has an oxidation number of +3, each hydrogen atom has an oxidation number of +1, and the oxygen atoms have an oxidation number of -2.
Yes, it is possible to convert iron acetate into iron oxide using simple procedures. You can do this by heating the iron acetate in air at a high temperature, which will result in the decomposition of iron acetate and the formation of iron oxide. This process can be done using a regular household oven or a hot plate.
The formula mass of calcium acetate (Ca(C2H3O2)2) is calculated by adding the atomic masses of all the atoms in the formula. For calcium acetate, the atomic masses are: Ca (40.08 g/mol) + 2(C) + 3(H) + 2(O). By adding these values, the formula mass for calcium acetate is calculated to be 158.17 g/mol.
this elemnt has an atomic number that is double the atomic number of silicon?
the answer is that it is called a atomic number.
The element with an atomic number that is double the atomic number of silicon is germanium, with an atomic number of 32. Silicon has an atomic number of 14.
The element with an atomic number that is double the atomic number of silicon is germanium, with atomic number 32. Silicon has an atomic number of 14.
The atomic number is equal to the number of the protons in the atomic nucleus.
Synthetic ElementsQuasi-synthetic elements:Technetium, atomic number 43Promethium, atomic number 61Astatine, atomic number 85Francium, atomic number 87Neptunium, atomic number 93Plutonium, atomic number 94Transuranium elementsAmericium symbol Am, atomic number 95Curium symbol Cm, atomic number 96Berkelium symbol Bk, atomic number 97Californium symbol Cf, atomic number 98Einsteinium symbol Es, atomic number 99Fermium symbol Fm, atomic number 100Mendelevium symbol Md, atomic number 101Nobelium symbol No, atomic number 102Lawrencium symbol Lr, atomic number 103Transactinide elements Rutherfordium symbol Rf, atomic number 104Dubnium symbol Db, atomic number 105Seaborgium symbol Sg, atomic number 106Bohrium symbol Bh, atomic number 107Hassium symbol Hs, atomic number 108Meitnerium symbol Mt, atomic number 109Darmstadtium symbol Ds, atomic number 110Roentgenium symbol Rg, atomic number 111Copernicium symbol Cn atomic number 112Provisional names of Recently observed synthetic elements:Ununtrium symbol Uut, atomic number 113Ununquadium symbol Uuq, atomic number 114Ununpentium symbol Uup, atomic number 115Ununhexium symbol Uuh, atomic number 116Ununseptium symbol Uus, atomic number 117.Ununoctium symbol Uuo, atomic number 118