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To find the number of moles in 171 g of CF4, you first need to calculate the molar mass of CF4. Carbon has a molar mass of 12.01 g/mol and each fluorine atom has a molar mass of 19.00 g/mol, giving a total molar mass of CF4 as 88.01 g/mol. Then divide 171 g by the molar mass of CF4 to get the number of moles.
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 oxidation number of each hydrogen in H2CO2 is +1, while the oxidation number of each carbon in CO2 is +4. This is because hydrogen usually has an oxidation number of +1, and oxygen usually has an oxidation number of -2.
The oxidation number of nitrosyl (NO) is +1. Nitrogen typically has an oxidation number of -3, and oxygen typically has an oxidation number of -2. In NO, nitrogen has a -3 oxidation number and oxygen has a -2 oxidation number, leading to an overall oxidation number of +1 for the nitrosyl ion.
To calculate the number of molecules, first determine the molar mass of carbon tetrafluoride (CF4), which is 88.004 g/mol. Next, divide the given mass (8.69 g) by the molar mass to find the number of moles. Finally, use Avogadro's number (6.022 x 10^23 molecules/mol) to convert moles to molecules.
There are four fluorine atoms in one molecule of CF4. To find the number of moles of CF4 in 65g, we would divide the mass by the molar mass of CF4. Then, knowing that there are four fluorine atoms per molecule, we can calculate the total number of fluorine atoms in 65g of CF4.
To find the number of moles in 171 g of CF4, you first need to calculate the molar mass of CF4. Carbon has a molar mass of 12.01 g/mol and each fluorine atom has a molar mass of 19.00 g/mol, giving a total molar mass of CF4 as 88.01 g/mol. Then divide 171 g by the molar mass of CF4 to get the number of moles.
Hydrogen's oxidation number is +1.Chlorin's oxidation number is +1.Oxygen's oxidation number is -2.
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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 oxidation number of each hydrogen in H2CO2 is +1, while the oxidation number of each carbon in CO2 is +4. This is because hydrogen usually has an oxidation number of +1, and oxygen usually has an oxidation number of -2.
Silicon's oxidation number is +4.Oxygen's oxidation number is -2
To find the mass of 1.36 mol of carbon tetrafluoride (CF4), you need to multiply the molar mass of CF4 by the number of moles given. The molar mass of CF4 is approximately 88.004 g/mol. Therefore, the mass of 1.36 mol of CF4 would be 119.684 g.
The oxidation number of nitrosyl (NO) is +1. Nitrogen typically has an oxidation number of -3, and oxygen typically has an oxidation number of -2. In NO, nitrogen has a -3 oxidation number and oxygen has a -2 oxidation number, leading to an overall oxidation number of +1 for the nitrosyl ion.
Oxidation number of Nb is +4. Oxidation number of O is -2.
The oxidation number for H is +1, and the oxidation number for O is -1.
MnCl2: oxidation number +2MnO2: oxidation number +4KMnO4: oxidation number +7