The atomic mass of an element is equal to its molar mass in grams/mol.
This is sum of the atomic weights of elements contained in the formula.
weight...'
the Atomic Mass in g/ml is the molar mass of the element
To calculate the grams of an element in a compound, you need to find the molar mass of the element and the compound. Then, use the formula: (mass of element/molar mass of compound) x molar mass of element. This will give you the grams of the element in the compound.
The atomic mass of an element is equal to its molar mass in grams/mol.
This is sum of the atomic weights of elements contained in the formula.
hydrogen
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the Atomic Mass in g/ml is the molar mass of the element
the Atomic Mass in g/ml is the molar mass of the element
An element's molar mass represents the mass of one mole of that element in grams. It tells you the average atomic mass of the element, which is the sum of the protons and neutrons in the nucleus of its atoms. Molar mass helps in determining the amount of substance in moles when given the mass of the sample.
To calculate the grams of an element in a compound, you need to find the molar mass of the element and the compound. Then, use the formula: (mass of element/molar mass of compound) x molar mass of element. This will give you the grams of the element in the compound.
To determine the number of moles of an element from its known mass, you can use the formula: moles = mass / molar mass. First, find the molar mass of the element from the periodic table. Then, divide the given mass of the element by its molar mass to find the number of moles.
According to the periodic table, the atomic mass of rubidium, Rb is 85.5. This is numerically equal to the molar mass in g/mol. Therefore the mass of 1 mol of Rb is 85.5g.Mass of 1 mol means the molar mass of the element. Molar mass of Rubidium is 85.47 gmol-1. Rb is in the 1st group.
The molar mass of the element potassium is 39 g/mol.
To calculate the molar mass of TiCl4, first find the molar mass of each element: Ti (Titanium) has a molar mass of 47.87 g/mol, and Cl (Chlorine) has a molar mass of 35.45 g/mol. Next, multiply the molar mass of each element by the number of atoms in the compound: Ti(Cl)4 = 47.87 + 4(35.45) = 47.87 + 141.8 = 189.67 g/mol. Therefore, the molar mass of TiCl4 is 189.67 g/mol.