Chemical formula of iron (III) sulfide is Fe₂S₃.
A chemical formula is a way of presenting information about the chemical proportions of atoms that constitute a particular chemical compound or molecule, using chemical element symbols, numbers, and sometimes also other symbols, such as parentheses, dashes, brackets, commas and plus and minus signs.
We can write a chemical formula by following steps-
1. Write both the atoms that are present in the chemical compound.
2. Write the valencies of both the atoms that are present in the chemical compound.
3. Now cross multiply both the atoms such that 1 atom's valency goes to the subscript of another atom and vice versa.
Given,
oxidation state of Fe = +3
Valency of Fe = 3
Valency of sulphide ion = 2
When we cross multiply both the atom's valencies we get chemical formula of iron (III) sulfide as Fe₂S₃.
Therefore, chemical formula of iron (III) sulfide is Fe₂S₃.
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Density is an intensive property as it does not depend on the quantity of the substances Whereas mass and volume are extensive property. Therefore, Clis the only gaseous element has the greatest density at STP.
Density tells about the compactness of the substances, how much dense is the substances in other words. Object that is more denser than water they just sink in the water.
Mathematically,
Density = Mass of the element ÷volume marked on the graduated cylinder
From formula we can see that density is directly proportional to molar mass of the given element. the increasing order of molar mass is N< O<F<Cl. The increasing order of density would be N< O<F<Cl.
Therefore, Cl is the only gaseous element has the greatest density at STP.
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Answer:
What's more, according to Scientific American since [most] plastic isn't biodegradable, it ends up either in landfills or as litter on the landscape and in waterways and the ocean. Some plastics - PVD and PVC as well as Saran coatings and certain inks - even release toxins into our soil and water table
Explanation:
Answer: The two isotopes of boron differs in mass number rather than atomic number.
Explanation:
Isotopes are defined as the chemical species that have same atomic number but differ in their mass number.
Boron is the 5th element of the periodic table and have 2 naturally occurring isotopes. The isotopes are : B-10 and B-11
For isotope:
Percentage abundance of this isotope = 20 %
Atomic number = 5
Mass number = 10
For isotope:
Percentage abundance of this isotope = 80 %
Atomic number = 5
Mass number = 11
Hence, the two isotopes of boron differs in mass number rather than atomic number.
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