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Molar Mass, Molecular Weight and Elemental Composition Calculator

Molar mass of C6H4NO6F7Cl6Br3Ag3I4Na2He4Ca6K3Li3Mg7Cr2Ne5Mn4 is 2638.0941 g/mol

Convert between C6H4NO6F7Cl6Br3Ag3I4Na2He4Ca6K3Li3Mg7Cr2Ne5Mn4 weight and moles
CompoundMolesWeight, g
C6H4NO6F7Cl6Br3Ag3I4Na2He4Ca6K3Li3Mg7Cr2Ne5Mn4

Elemental composition of C6H4NO6F7Cl6Br3Ag3I4Na2He4Ca6K3Li3Mg7Cr2Ne5Mn4
ElementSymbolAtomic weightAtomsMass percent
CarbonC12.010762.7317
HydrogenH1.0079440.1528
NitrogenN14.006710.5309
OxygenO15.999463.6389
FluorineF18.998403275.0411
ChlorineCl35.45368.0633
BromineBr79.90439.0866
SilverAg107.8682312.2666
IodineI126.90447419.2418
SodiumNa22.9897692821.7429
HeliumHe4.00260240.6069
CalciumCa40.07869.1152
PotassiumK39.098334.4462
LithiumLi6.94130.7893
MagnesiumMg24.305076.4492
ChromiumCr51.996123.9419
NeonNe20.179753.8247
ManganeseMn54.93804548.3300

Computing molar mass step by step

First, compute the number of each atom in C6H4NO6F7Cl6Br3Ag3I4Na2He4Ca6K3Li3Mg7Cr2Ne5Mn4:
C: 6, H: 4, N: 1, O: 6, F: 7, Cl: 6, Br: 3, Ag: 3, I: 4, Na: 2, He: 4, Ca: 6, K: 3, Li: 3, Mg: 7, Cr: 2, Ne: 5, Mn: 4

Then, lookup atomic weights for each element in periodic table:
C: 12.0107, H: 1.00794, N: 14.0067, O: 15.9994, F: 18.9984032, Cl: 35.453, Br: 79.904, Ag: 107.8682, I: 126.90447, Na: 22.98976928, He: 4.002602, Ca: 40.078, K: 39.0983, Li: 6.941, Mg: 24.305, Cr: 51.9961, Ne: 20.1797, Mn: 54.938045

Now, compute the sum of products of number of atoms to the atomic weight:
Molar mass (C6H4NO6F7Cl6Br3Ag3I4Na2He4Ca6K3Li3Mg7Cr2Ne5Mn4) = ∑ Counti * Weighti =
Count(C) * Weight(C) + Count(H) * Weight(H) + Count(N) * Weight(N) + Count(O) * Weight(O) + Count(F) * Weight(F) + Count(Cl) * Weight(Cl) + Count(Br) * Weight(Br) + Count(Ag) * Weight(Ag) + Count(I) * Weight(I) + Count(Na) * Weight(Na) + Count(He) * Weight(He) + Count(Ca) * Weight(Ca) + Count(K) * Weight(K) + Count(Li) * Weight(Li) + Count(Mg) * Weight(Mg) + Count(Cr) * Weight(Cr) + Count(Ne) * Weight(Ne) + Count(Mn) * Weight(Mn) =
6 * 12.0107 + 4 * 1.00794 + 1 * 14.0067 + 6 * 15.9994 + 7 * 18.9984032 + 6 * 35.453 + 3 * 79.904 + 3 * 107.8682 + 4 * 126.90447 + 2 * 22.98976928 + 4 * 4.002602 + 6 * 40.078 + 3 * 39.0983 + 3 * 6.941 + 7 * 24.305 + 2 * 51.9961 + 5 * 20.1797 + 4 * 54.938045 =
2638.0941 g/mol


Mass percent compositionAtomic percent composition

Formula in Hill system is C6H4Ag3Br3Ca6Cl6Cr2F7He4I4K3Li3Mg7Mn4NNa2Ne5O6

Computing molar mass (molar weight)

To calculate molar mass of a chemical compound enter its formula and click 'Compute'. In chemical formula you may use:
  • Any chemical element. Capitalize the first letter in chemical symbol and use lower case for the remaining letters: Ca, Fe, Mg, Mn, S, O, H, C, N, Na, K, Cl, Al.
  • Functional groups: D, T, Ph, Me, Et, Bu, AcAc, For, Tos, Bz, TMS, tBu, Bzl, Bn, Dmg
  • parenthesis () or brackets [].
  • Common compound names.
Examples of molar mass computations: NaCl, Ca(OH)2, K4[Fe(CN)6], CuSO4*5H2O, nitric acid, potassium permanganate, ethanol, fructose, caffeine, water.

Molar mass calculator also displays common compound name, Hill formula, elemental composition, mass percent composition, atomic percent compositions and allows to convert from weight to number of moles and vice versa.

Computing molecular weight (molecular mass)

To calculate molecular weight of a chemical compound enter it's formula, specify its isotope mass number after each element in square brackets.
Examples of molecular weight computations: C[14]O[16]2, S[34]O[16]2.

Definitions

  • Molecular mass (molecular weight) is the mass of one molecule of a substance and is expressed in the unified atomic mass units (u). (1 u is equal to 1/12 the mass of one atom of carbon-12)
  • Molar mass (molar weight) is the mass of one mole of a substance and is expressed in g/mol.
  • Mole is a standard scientific unit for measuring large quantities of very small entities such as atoms and molecules. One mole contains exactly 6.022 ×1023 particles (Avogadro's number)

Steps to calculate molar mass

  1. Identify the compound: write down the chemical formula of the compound. For example, water is H2O, meaning it contains two hydrogen atoms and one oxygen atom.
  2. Find atomic masses: look up the atomic masses of each element present in the compound. The atomic mass is usually found on the periodic table and is given in atomic mass units (amu).
  3. Calculate molar mass of each element: multiply the atomic mass of each element by the number of atoms of that element in the compound.
  4. Add them together: add the results from step 3 to get the total molar mass of the compound.

Example: calculating molar mass

Let's calculate the molar mass of carbon dioxide (CO2):

  • Carbon (C) has an atomic mass of about 12.01 amu.
  • Oxygen (O) has an atomic mass of about 16.00 amu.
  • CO2 has one carbon atom and two oxygen atoms.
  • The molar mass of carbon dioxide is 12.01 + (2 × 16.00) = 44.01 g/mol.

Lesson on computing molar mass

Weights of atoms and isotopes are from NIST article.

Related: Molecular weights of amino acids

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