Use the data given in the following table to calculate the molar mass of naturally occuring argon isotopes:
| Isotope | Isotopic molar mass | Abundance |
|---|---|---|
| 0.337% | ||
| 0.063% | ||
| 99.600% |
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Start your 14-day free trial to unlock the full solution →The molar mass of naturally occurring argon is calculated as a weighted average of its isotopic masses based on their abundances, resulting in .
When we refer to the molar mass of an element, such as argon, we are typically talking about the average molar mass of its naturally occurring isotopes. Elements in nature are often a mixture of different isotopes, which are atoms of the same element with different numbers of neutrons and thus different masses. The periodic table lists these average molar masses.
To calculate this average molar mass, we use a weighted average. Each isotope's molar mass is "weighted" by its relative abundance in nature. This means that isotopes present in higher percentages contribute more to the overall average molar mass.
Here's how to calculate the molar mass of naturally occurring argon:
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Understand the given data:
We are provided with the isotopic molar mass and the natural abundance for each of argon's three main isotopes:
Isotope Isotopic molar mass () Abundance () -
Convert percentage abundances to fractional abundances:
For the weighted average calculation, we need to express the abundances as decimal fractions (where corresponds to ). To do this, divide each percentage by .
- For :
- For :
- For :
TipAlways check that your fractional abundances sum up to (or very close to due to rounding). In this case, , which confirms our conversions are correct.
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Apply the weighted average formula:
The average molar mass () is calculated by summing the products of each isotope's molar mass () and its corresponding fractional abundance ().
For argon, this expands to:
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Calculate the contribution of each isotope:
Multiply the isotopic molar mass by its fractional abundance for each isotope.
- For :
- For : …
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