read this! recall that all isotopes of an element have the same physical and chemical properties, with the…

read this! recall that all isotopes of an element have the same physical and chemical properties, with the exception of atomic mass (and for unstable isotopes, radioactivity). therefore, the periodic table lists a weighted average atomic mass for each element. in order to calculate this quantity, the natural abundance and atomic mass of each isotope must be provided. 15. use one of the methods in model 3 that gave the correct answer for average atomic mass to calculate the average atomic mass for oxygen. isotope information is provided below. show all of your work and check your answer against the mass listed on the periodic table. isotope, natural abundance on earth (%), atomic mass (amu); ¹⁶o, 99.76, 15.9949; ¹⁷o, 0.04, 16.9991; ¹⁸o, 0.20, 17.9992 16. consider the individual atomic masses for magnesium isotopes given in model 2. a. which isotope has an atomic mass closest to the average atomic mass listed on the periodic table? b. give a mathematical reason for your answer to part a. 17. boron has two naturally occurring isotopes: boron - 10 and boron - 11. which isotope is more abundant on earth? use grammatically correct sentences to explain how your group determined the answer.
Answer
Explanation:
Step1: Recall average - atomic - mass formula
The average atomic mass $A$ of an element with isotopes is calculated as $A=\sum_{i}x_im_i$, where $x_i$ is the natural - abundance (in decimal form) of the $i$ - th isotope and $m_i$ is the atomic mass of the $i$ - th isotope.
Step2: Convert percentages to decimals
For oxygen isotopes:
- $x_1 = 99.76%=0.9976$, $m_1 = 15.9949$ amu
- $x_2 = 0.04% = 0.0004$, $m_2 = 16.9991$ amu
- $x_3 = 0.20%=0.0020$, $m_3 = 17.9992$ amu
Step3: Calculate the average atomic mass
$A=x_1m_1 + x_2m_2+x_3m_3$ $A=(0.9976\times15.9949)+(0.0004\times16.9991)+(0.0020\times17.9992)$ $A = 0.9976\times15.9949=15.9664$ (first term) $A_2=0.0004\times16.9991 = 0.0068$ $A_3=0.0020\times17.9992=0.0360$ $A=15.9664 + 0.0068+0.0360=15.9992$ amu
Answer:
The average atomic mass of oxygen is $15.9992$ amu.