The half life for the radioactive decay of carbon-14 to nitrogen-14 is 5.73x 10^3 years. Suppose nuclear chemical analysis shows that there is 0.888 mmol of nitrogen-14 for every 1.000 mmol of carbon-14 in a certain sample of rock. Calculate the age of the rock. Round your answer to 2 significant digits

Chemistry by OpenStax (2015-05-04)
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Chapter12: Kinetics
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Problem 19E: The rate constant for the radioactive decay of 14C is 1.21104 year-1. The products of the decay are...
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The half life for the radioactive decay of carbon-14 to nitrogen-14 is 5.73x 10^3 years. Suppose nuclear chemical analysis shows that there is 0.888 mmol of nitrogen-14 for every 1.000 mmol of carbon-14 in a certain sample of rock. Calculate the age of the rock. Round your answer to 2 significant digits.
The half life for the radioactive decay of carbon-14 to nitrogen-14 is 5.73 x 10° years.
Suppose nuclear chemical analysis shows that there is 0.888 mmol of nitrogen-14 for every 1.000 mmol of
carbon-14 in a certain sample of rock. Calculate the age of the rock.
Round your answer to 2 significant digits.
years
x10
Transcribed Image Text:The half life for the radioactive decay of carbon-14 to nitrogen-14 is 5.73 x 10° years. Suppose nuclear chemical analysis shows that there is 0.888 mmol of nitrogen-14 for every 1.000 mmol of carbon-14 in a certain sample of rock. Calculate the age of the rock. Round your answer to 2 significant digits. years x10
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