If a compound has the formula X4Y3, then that means that 4 atoms of imaginary element X are combined with 3 atoms of imaginary element Y. The overall charge of the compound is neutral, and so the charges of the 4 X's and the charges on the 3 Y's must cancel out. We need to find the charge on each atom in the compound to figure out the number of electrons in the outer shell. Once we figure out the charge, finding the number of electrons is easy.
So what must the charge on each atom be for this to work out? X is written first, and so it is going to be a positive ion, which means that Y is a negative ion. If you try some different combinations of +1 or +2 ions with -1 or -2 ions, you'll find it doesn't work out right -- there is always a net charge on the final compound when you combine them in a 4 to 3 ratio. The only way it works out is this:
If X has a charge of +3 and Y has a charge of -4.
Now if X has a charge of +3, it must have lost 3 electrons, which means that it has 3 electrons more than a stable octet. That means X has 3 valence electrons (3 + 0 = 3).
If Y has a charge of -4, it has gained 4 electrons, which means that it has 4 electrons less than a stable octet. That means that Y has 4 valence electrons (8 - 4 = 4).
See the Related Questions to the left for more information about counting electrons and the octet rule in chemistry.
To find the mass of an element in a compound, you can use the formula: mass of element (mass of compound) x (percent composition of element in compound). This formula helps you calculate the mass of a specific element within a compound based on its percentage composition.
Zinc carbonate is an ionic compound with the formula ZnCO3.
The element that forms the cation (positive ion) comes first in the formula for an ionic compound.
The compound with the formula XY2 consists of one atom of element X and two atoms of element Y.
A line in the structural formula of a compound represents two electrons. This is used to show the sharing of a pair of electrons between two atoms in a covalent bond.
To find the mass of an element in a compound, you can use the formula: mass of element (mass of compound) x (percent composition of element in compound). This formula helps you calculate the mass of a specific element within a compound based on its percentage composition.
Zinc carbonate is an ionic compound with the formula ZnCO3.
This compound is a molecule, so NOT an element, nor mixture. Chem. formula: C6H12O6 (an example of carbohydrate)
The element that forms the cation (positive ion) comes first in the formula for an ionic compound.
The compound with the formula XY2 consists of one atom of element X and two atoms of element Y.
Ammonia is not an element. It is a compound with chemical formula of NH3.
This formula tells you that the compound has one atom of the element Barium and two atoms of the element Fluorine. It is called Barium Fluoride.
A line in the structural formula of a compound represents two electrons. This is used to show the sharing of a pair of electrons between two atoms in a covalent bond.
A compound: any formula that contains more than one kind of atomic symbols represents a compound.
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 element that forms a compound with chlorine with the general formula MCl is metal. The "M" in MCl represents an arbitrary metal element.
It is a compound. It's chemical formula is C2H5OH.