C6H12O6 Molar Mass Calculator

Calculate glucose molar mass element contributions composition percentages grams moles molecules and formula weight with clear steps downloadable results and adjustable precision.

C₆H₁₂O₆

Calculator Result

180.156 g/mol

Formula weight: 180.156 g/mol   |   Molecular mass: 180.156 Da   |   Total atoms: 24

Moles to grams: 1 mol = 180.156 g

Convert C6H12O6 Amounts

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Scientific notation is supported. Example: 6.022e23.

C6H12O6 Element Breakdown

Molar mass180.156 g/mol
Molecular mass180.156 Da
Total atoms24
Elements3
Element Atomic Mass Atoms Mass Contribution Mass Percentage
Carbon (C) 12.011 6 72.066 g/mol 40.00%
Hydrogen (H) 1.008 12 12.096 g/mol 6.71%
Oxygen (O) 15.999 6 95.994 g/mol 53.28%
Total 24 180.156 g/mol 100.00%

Formula Used

The calculator adds every element contribution within C₆H₁₂O₆.

Molar mass = (6 × 12.011) + (12 × 1.008) + (6 × 15.999)

Molar mass = 72.066 + 12.096 + 95.994 = 180.156 g/mol

  • Grams = moles × 180.156
  • Moles = grams ÷ 180.156
  • Molecules = moles × 6.02214076 × 10²³
  • Moles = molecules ÷ 6.02214076 × 10²³

How to Use This Calculator

  1. Select the conversion you need.
  2. Enter a nonnegative amount.
  3. Choose your preferred decimal precision.
  4. Press Calculate to update the result.
  5. Copy, print, or download the result.

C6H12O6 Molar Mass Explained

C6H12O6 is a molecular formula commonly associated with glucose. It contains carbon, hydrogen, and oxygen atoms. Each molecule has six carbon atoms. It also has twelve hydrogen atoms. Six oxygen atoms complete the formula.

Molar mass describes one mole of a substance. One mole contains Avogadro's number of particles. That constant equals 6.02214076 × 10²³ particles. The calculator combines standard atomic masses. Carbon uses 12.011 grams per mole. Hydrogen uses 1.008 grams per mole. Oxygen uses 15.999 grams per mole. Multiplying each mass by its atom count gives contributions. Those contributions total 180.156 grams per mole.

Why Elemental Composition Matters

Elemental composition shows each element's share of total mass. Carbon contributes about forty percent. Hydrogen contributes about 6.71 percent. Oxygen contributes about 53.29 percent. These percentages help with chemistry exercises. They also support formulation and composition checks. Percentage calculations use each element's mass contribution. That value is divided by total molar mass.

Using Grams, Moles, and Molecules

Molar mass connects laboratory mass with chemical amount. Divide grams by 180.156 to find moles. Multiply moles by 180.156 to find grams. Molecule conversions also use Avogadro's constant. Multiply moles by Avogadro's constant for molecules. Divide molecules by that constant for moles. The calculator combines these relationships automatically. Scientific notation helps with very large particle counts.

Understanding Formula Weight and Molecular Mass

Formula weight and molar mass are closely related values. For C6H12O6, the numerical value is 180.156. Molar mass is normally expressed in g/mol. Molecular mass is commonly expressed in daltons. The displayed value can vary slightly. Atomic-weight rounding causes those small differences. This calculator uses fixed standard values for consistency.

Practical Calculation Tips

Choose enough decimal places for your assignment. Avoid excessive rounding during intermediate calculations. Keep units beside every recorded result. Confirm whether your question asks for grams or molecules. Large particle counts are clearer in scientific notation. Downloaded results can support records and worksheets. Always follow the atomic masses required by your course. Consistent inputs produce clear and repeatable chemistry calculations.

Accuracy, Units, and Reporting

Accurate chemistry work depends on consistent units and values. A mole describes quantity rather than physical size. Grams describe mass measured with a balance. Molecules describe the number of individual particles present. Conversions should preserve the requested unit throughout each step. Significant figures may depend on classroom or laboratory instructions. This tool lets you control displayed decimal places. Its calculation constants remain unchanged during every conversion. That approach keeps repeated results consistent across different input amounts.

C6H12O6 Reference Table

Quantity Equivalent Notes
1 mol C6H12O6180.156 gBased on this calculator's atomic masses.
0.5 mol C6H12O690.078 gHalf of one molar mass.
2 mol C6H12O6360.312 gTwice the molar mass.
1 mol C6H12O66.02214076 × 10²³ moleculesUses Avogadro's constant.
180.156 g C6H12O61 molStandard mass-to-mole example.
18.0156 g C6H12O60.1 molUseful smaller example.

Frequently Asked Questions

1. What is the molar mass of C6H12O6?

Using the atomic masses in this calculator, C6H12O6 equals 180.156 g/mol.

2. How many atoms are in one C6H12O6 molecule?

There are 24 atoms total: six carbon, twelve hydrogen, and six oxygen atoms.

3. How do I convert C6H12O6 grams to moles?

Divide the mass in grams by 180.156 g/mol.

4. How do I convert moles to molecules?

Multiply the mole amount by 6.02214076 × 10²³ molecules per mole.

5. Why can another source show a slightly different molar mass?

Different sources may round atomic weights differently, creating small numerical differences.

6. Does C6H12O6 always mean glucose?

No. Other compounds can share this molecular formula, but their molar mass remains the same.

7. Can I enter scientific notation?

Yes. Inputs such as 6.022e23 are accepted for large molecule quantities.


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