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Chlorine, which exists in nature in two isotopic forms, has an atomic mass of 35.5 amu. This means that:

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Note: If you want to turn this into a complete question, you might consider adding options or additional context to clarify what is being asked. For example:

Chlorine, which exists in nature in two isotopic forms, has an atomic mass of 35.5 amu. This means that:

A. One isotope of chlorine is more abundant than the other.
B. The atomic mass is an average of the masses of its isotopes.
C. The isotopic masses are exactly 35.5 amu each.
D. All isotopes of chlorine have the same mass.

Make sure to adjust based on the actual question or context provided.

Answer :

Final answer:

Chlorine's atomic mass of 35.5 amu accounts for its naturally occurring isotopes, Cl-35 and Cl-37, which exist in approximately 75.76% and 24.24% proportions respectively.

Explanation:

Chlorine, which exists in nature in two isotopic forms, Cl-35 and Cl-37, has an average atomic mass recorded as 35.5 amu. This value is a weighted average, taking into account the relative abundance of different isotopes. Therefore, solving an equation that considers the relative abundances and atomic masses of each of these isotopes will yield a proportion of approximately 75.76% for Cl-35 and 24.24% for Cl-37. These percentages mean that a typical sample of chlorine will contain these proportions of the different isotopes.

Learn more about Chlorine Isotopes here:

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