Molar mass calculator

Molar mass in g/mol and mass percent composition of any chemical formula, with brackets and hydrates such as CuSO4·5H2O, from IUPAC 2021 atomic weights.

更新日 検証済みの例:6

Case matters: Co is cobalt, CO is carbon monoxide. Hydrates: CuSO4·5H2O, CuSO4.5H2O or CuSO4*5H2O
試す
モル質量
g/mol
モル質量: 180.156 g/mol
小数点以下の桁数:3;最も近い値へ、等距離ならゼロから遠い値へ
Hill formula
C6H12O6
Mass percent
C 40.00%, H 6.71%, O 53.28%
Atoms per formula unit
24
Different elements
3
Mass of one formula unit
2.99156 × 10⁻²²g

One mole of C₆H₁₂O₆ weighs 180.156 g; oxygen contributes the most mass (53.28%).

Mass percent by element

180.156g/mol
C40.00%H6.71%O53.28%
Composition 行数:3
ElementAtomsAtomic weightMass (g/mol)Mass %
C (Carbon)612.01172.06640.00%
H (Hydrogen)121.008012.0966.71%
O (Oxygen)615.99995.99453.28%
計算方法 S
  1. Count the atoms

    C:6, H:12, O:6\mathrm{C}: 6,\ \mathrm{H}: 12,\ \mathrm{O}: 6

    Brackets multiply everything inside; a hydrate's leading number multiplies its whole part. Hill formula: C6H12O6.

  2. Add the atomic weights

    M=6×12.011+12×1.0080+6×15.999=180.156 g/molM = 6\times 12.011 + 12\times 1.0080 + 6\times 15.999 = 180.156\ \mathrm{g/mol}

    Shown to 3 decimals: the IUPAC abridged atomic weights carry about 5 significant figures, and some (Li, S, Cl, Pb…) fewer.

  3. Mass of one formula unit

    m=MNA=180.1566.02214076×1023=2.99156×10−22 gm = \frac{M}{N_A} = \frac{180.156}{6.02214076\times10^{23}} = 2.99156 \times 10^{-22}\ \mathrm{g}

Molar mass calculatorについて

Molar mass is the mass of one mole of a substance, in grams per mole. The calculator reads the formula, counts the atoms of each element (multiplying through brackets and hydrate dots) and adds count × standard atomic weight, using the IUPAC 2021 abridged values. Each element's share of the total is its mass percent.

Chemists need molar mass to convert between grams and moles when weighing reagents. Glucose, C6H12O6, comes to 180.156 g/mol, of which oxygen supplies 53.28 %; a single molecule weighs 2.99 × 10⁻²² g.

Results are shown to three decimals because the abridged atomic weights carry about five significant figures. For elements with no standard atomic weight, such as technetium, the mass number of a long-lived isotope stands in, and the page says so.

計算例

Water

Chemical formula
H2O
モル質量
18.015 g/mol
Mass percent
H 11.19%, O 88.81%
Atoms per formula unit
3

照合元:Python 3.8 decimal with IUPAC 2021 abridged weights: 2 × 1.0080 + 15.999 = 18.015 (PubChem 18.015)

Glucose

Chemical formula
C6H12O6
モル質量
180.156 g/mol
Hill formula
C6H12O6

照合元:Python 3.8 decimal: 6 × 12.011 + 12 × 1.0080 + 6 × 15.999 = 180.156 (PubChem 180.16)

Copper sulfate pentahydrate

Chemical formula
CuSO4·5H2O
モル質量
249.677 g/mol
Hill formula
CuH10O9S

照合元:Python 3.8 decimal: 63.546 + 32.06 + 9 × 15.999 + 10 × 1.0080 = 249.677 (PubChem 249.69 with older S = 32.065)

Hydrate written with a plain dot

Chemical formula
CuSO4.5H2O
モル質量
249.677 g/mol

照合元:Same compound as above; '.' is read as the hydrate dot

よくある質問

Is molar mass the same as molecular weight?

Numerically, yes. Molar mass carries units of g/mol, while molecular weight (relative molecular mass, Mr) is the same number without units, measured against one twelfth of the mass of a carbon-12 atom. Water has a molar mass of 18.015 g/mol and a relative molecular mass of 18.015. For ionic solids such as NaCl, which have no discrete molecules, the usual term is formula mass.

How do you calculate molar mass by hand?

Multiply each element's atom count by its atomic weight and add the products. For water, H2O: 2 × 1.008 + 15.999 = 18.015 g/mol. Brackets multiply everything inside them, so Ca3(PO4)2 holds 2 phosphorus and 8 oxygen atoms. A hydrate's water counts in full: CuSO4·5H2O adds 10 hydrogen and 5 oxygen atoms to copper sulfate, for 249.677 g/mol.

Why does my textbook give a slightly different molar mass?

Atomic weights are revised as isotope measurements improve, and books round them differently. IUPAC's 2021 abridged table gives sulfur as 32.06 where older tables used 32.065, so copper sulfate pentahydrate comes to 249.677 g/mol here and 249.69 g/mol on PubChem. A difference in the second decimal place is normal; use whichever table your course or method specifies.

What does mass percent composition tell you?

It is the share of a compound's mass that each element contributes: the element's mass in one formula unit divided by the molar mass, times 100. Glucose is 40.00 % carbon, 6.71 % hydrogen and 53.28 % oxygen. Chemists compare these figures with percentages measured by combustion analysis to confirm a sample's identity or work out an empirical formula.

Why does capitalisation matter in a chemical formula?

Every element symbol starts with a capital letter and any second letter is lowercase, so case decides which atoms you mean. Co is cobalt, 58.933 g/mol, while CO is carbon monoxide, one carbon and one oxygen atom, 28.010 g/mol. Likewise NO is nitric oxide but No is nobelium. Type formulas with standard capitalisation to get the compound you intend.

「Molar mass calculator」の精度はどのくらいですか?

精度は入力値と計算方法の前提に依存します。十進演算には有効数字50桁を使いますが、推定、数値計算手法、元データの精度はそれより低い場合があります。表示の丸め処理でこれらの制約がなくなるわけではありません。 独立した出典の解答と照合した計算例:6。 例えば、「Water」はPython 3.8 decimal with IUPAC 2021 abridged weights: 2 × 1.0080 + 15.999 = 18.015 (PubChem 18.015)と照合しています。

この計算方法の出典は何ですか?

IUPAC CIAAW — Standard atomic weights of the elements 2021 (Prohaska et al., Pure Appl. Chem. 94, 573, 2022), abridged values; PubChem compound pages (molecular weight cross-check).

この計算機について

M=∑ini Ar(i)  g/mol,wi=niAr(i)MM = \sum_i n_i\,A_r(i)\ \ \mathrm{g/mol},\qquad w_i = \frac{n_i A_r(i)}{M}

出典

  1. IUPAC CIAAW — Standard atomic weights of the elements 2021 (Prohaska et al., Pure Appl. Chem. 94, 573, 2022), abridged values
  2. PubChem compound pages (molecular weight cross-check)

出典と照合済み

この計算機には、独立した出典の解答を使った計算例が 6 件あります。テストに組み込まれており、ここでも実行できます。

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