Browse SubjectsChemistry — Semester B
Chemistry · Semester B TEKS 14A-14C
HardCalcWord

Uranium-238 decays (through a long series of steps) to lead-206, with an overall effective half-life of 4.47 billion years, used in geological dating of very old rock samples. A rock sample that trapped no lead when it crystallized now contains U-238 and Pb-206 in a 4:3 mole ratio. Determine the rock's age, correctly reconstructing the INITIAL amount of U-238 before using the half-life formula, since the ratio here is not a clean power-of-two fraction.

A≈3.61 billion years, from reconstructing the original U-238 as 4+3=7 parts (surviving fraction 4/7) and solving n=log(4/7)/log(0.5) for a non-whole half-life count
B13.41 billion years, misreading the ratio's second number (3) directly as a count of 3 half-lives
C31.29 billion years, misreading the reconstructed total (7) as a direct count of half-lives instead of using it in the fraction
D4.47 billion years, assuming only 1 whole half-life has passed and skipping the log-based calculation the ratio actually requires. This shortcut ignores the ratio entirely and simply reports the isotope's raw half-life value as if it were the answer.

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