Chemistry: The Science in Context (Fifth Edition)
Chemistry: The Science in Context (Fifth Edition)
5th Edition
ISBN: 9780393614046
Author: Thomas R. Gilbert, Rein V. Kirss, Natalie Foster, Stacey Lowery Bretz, Geoffrey Davies
Publisher: W. W. Norton & Company
Question
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Chapter 19, Problem 19.48QP

(a)

Interpretation Introduction

Interpretation: The year of the first and second volcanic eruption and the year of blackened grains found from the site of ancient Jerico are given. The percent difference in the 14C decay rate in the biological samples of the volcanic eruptions and the 14C12C ratio in the blackened grains compared to grains harvested last year is to be calculated.

Concept introduction: The relation between the initial and the final concentration of the carbon decay is given by the formula,

Finalconcentrationof14CInitialconcentrationof14C=eFinaltime×0.693Halflifeof14C

To determine: The percent difference in the 14C decay rate in the biological samples between the two volcanic eruptions.

(a)

Expert Solution
Check Mark

Answer to Problem 19.48QP

Solution:

The percent difference in the 14C decay rate in the biological samples between the two volcanic eruptions is 2.15%_ .

Explanation of Solution

Given

The first volcanic eruption occurs at 1360BCE .

The second volcanic eruption occurs at 1628BCE .

The present year is 2018 . Therefore, for the conversion of BCE into AD , the year 2017 is added to the given BCE year, since 2017 is a completed year.

Therefore, the first volcanic eruption occurred,

1360+2017=3377 years ago

The second volcanic eruption occurred,

1628+2017=3645 years ago

The half life of 14C is 5730 years.

The relation between the initial and the final concentration of the carbon decay is given by the formula,

Finalconcentrationof14CInitialconcentrationof14C=eFinaltime×0.693Halflifeof14C

Substitute the value of final time of first volcanic eruption and half life of 14C in the above equation.

Finalconcentrationof14CInitialconcentrationof14C=e3377×0.6935730=e0.4084=0.665×100=66.5%

Substitute the value of final time of second volcanic eruption and half life of 14C in the above equation.

Finalconcentrationof14CInitialconcentrationof14C=e3645×0.6935730=e0.4408=0.6435×100=64.35%

Therefore, the percent difference in the 14C decay rate in the biological samples between the two volcanic eruptions is,

66.5%64.35%=2.15%_

(b)

Interpretation Introduction

To determine: The 14C12C ratio in the blackened grains compared to grains harvested last year is to be calculated.

(b)

Expert Solution
Check Mark

Answer to Problem 19.48QP

Solution:

The 14C12C ratio in the blackened grains compared to grains harvested last year is to be calculated is 0.6683_ .

Explanation of Solution

Given

The year of blackened grains found from the site of ancient Jerico is 1315BCE .

The present year is 2018 . Therefore, for the conversion of BCE into AD , the year 2017 is added to the given BCE year, since 2017 is a completed year.

The molar mass of hydrogen gas is,

2×1.0079g/mol=2.0158g/mol

The year of blackened grains found from the site of ancient Jerico is,

1315+2017=3332 years ago

The relation between the initial and the final concentration of the carbon decay is given by the formula,

Finalconcentrationof14CInitialconcentrationof14C=eFinaltime×0.693Halflifeof14C

Substitute the value of final time and half life of 14C in the above equation.

Finalconcentrationof14CInitialconcentrationof14C=e3332×0.6935730=e0.403=0.6683

Therefore, the 14C12C ratio in the blackened grains compared to grains harvested last year is to be calculated is 0.6683_ .

Conclusion:

  1. a. The percent difference in the 14C decay rate in the biological samples between the two volcanic eruptions is 2.15%_ .
  2. b. The 14C12C ratio in the blackened grains compared to grains harvested last year is to be calculated is 0.6683_

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Chapter 19 Solutions

Chemistry: The Science in Context (Fifth Edition)

Ch. 19 - Prob. 19.5VPCh. 19 - Prob. 19.6VPCh. 19 - Prob. 19.7VPCh. 19 - Prob. 19.8VPCh. 19 - Prob. 19.9VPCh. 19 - Prob. 19.10VPCh. 19 - Prob. 19.11QPCh. 19 - Prob. 19.12QPCh. 19 - Prob. 19.13QPCh. 19 - Prob. 19.14QPCh. 19 - Prob. 19.15QPCh. 19 - Prob. 19.16QPCh. 19 - Prob. 19.17QPCh. 19 - Prob. 19.18QPCh. 19 - Prob. 19.19QPCh. 19 - Prob. 19.20QPCh. 19 - Prob. 19.21QPCh. 19 - Prob. 19.22QPCh. 19 - Prob. 19.23QPCh. 19 - Prob. 19.24QPCh. 19 - Prob. 19.25QPCh. 19 - Prob. 19.26QPCh. 19 - Prob. 19.27QPCh. 19 - Prob. 19.28QPCh. 19 - Prob. 19.29QPCh. 19 - Prob. 19.30QPCh. 19 - Prob. 19.31QPCh. 19 - Prob. 19.32QPCh. 19 - Prob. 19.33QPCh. 19 - Prob. 19.34QPCh. 19 - Prob. 19.35QPCh. 19 - Prob. 19.36QPCh. 19 - Prob. 19.37QPCh. 19 - Prob. 19.38QPCh. 19 - Prob. 19.39QPCh. 19 - Prob. 19.40QPCh. 19 - Prob. 19.41QPCh. 19 - Prob. 19.42QPCh. 19 - Prob. 19.43QPCh. 19 - Prob. 19.44QPCh. 19 - Prob. 19.45QPCh. 19 - Prob. 19.46QPCh. 19 - Prob. 19.47QPCh. 19 - Prob. 19.48QPCh. 19 - Prob. 19.49QPCh. 19 - Prob. 19.50QPCh. 19 - Prob. 19.51QPCh. 19 - Prob. 19.52QPCh. 19 - Prob. 19.53QPCh. 19 - Prob. 19.54QPCh. 19 - Prob. 19.55QPCh. 19 - Prob. 19.56QPCh. 19 - Prob. 19.57QPCh. 19 - Prob. 19.58QPCh. 19 - Prob. 19.59QPCh. 19 - Prob. 19.60QPCh. 19 - Prob. 19.61QPCh. 19 - Prob. 19.62QPCh. 19 - Prob. 19.63QPCh. 19 - Prob. 19.64QPCh. 19 - Prob. 19.65QPCh. 19 - Prob. 19.66QPCh. 19 - Prob. 19.67QPCh. 19 - Prob. 19.68QPCh. 19 - Prob. 19.69QPCh. 19 - Prob. 19.70QPCh. 19 - Prob. 19.71QPCh. 19 - Prob. 19.72QPCh. 19 - Prob. 19.73QPCh. 19 - Prob. 19.74QPCh. 19 - Prob. 19.75QPCh. 19 - Prob. 19.76QPCh. 19 - Prob. 19.77QPCh. 19 - Prob. 19.78QPCh. 19 - Prob. 19.79QPCh. 19 - Prob. 19.80QPCh. 19 - Prob. 19.81QPCh. 19 - Prob. 19.82QPCh. 19 - Prob. 19.83QPCh. 19 - Prob. 19.84QPCh. 19 - Prob. 19.85APCh. 19 - Prob. 19.86APCh. 19 - Prob. 19.87APCh. 19 - Prob. 19.88APCh. 19 - Prob. 19.89APCh. 19 - Prob. 19.90APCh. 19 - Prob. 19.91APCh. 19 - Prob. 19.92APCh. 19 - Prob. 19.93APCh. 19 - Prob. 19.94APCh. 19 - Prob. 19.95APCh. 19 - Prob. 19.96APCh. 19 - Prob. 19.97APCh. 19 - Prob. 19.98APCh. 19 - Prob. 19.99APCh. 19 - Prob. 19.100AP
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