There are only two naturally-occuring stable isotopes of boron. The mass and natural abundance of one of them is listed in the table below. Use whatever data you need from the ALEKS Periodic Table to determine the identity, mass and natural abundance of the other isotope, and complete the table. Be sure your answers have the correct number of significant digits. isotope OB 11B mass (amu) 0 11.009 natural abundance 0% 80.1% 10 X
There are only two naturally-occuring stable isotopes of boron. The mass and natural abundance of one of them is listed in the table below. Use whatever data you need from the ALEKS Periodic Table to determine the identity, mass and natural abundance of the other isotope, and complete the table. Be sure your answers have the correct number of significant digits. isotope OB 11B mass (amu) 0 11.009 natural abundance 0% 80.1% 10 X
Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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![The text outlines a task related to the naturally occurring stable isotopes of boron. Here's the transcription:
---
There are only two naturally-occurring stable isotopes of boron. The mass and natural abundance of one of them is listed in the table below. Use whatever data you need from the ALEKS Periodic Table to determine the identity, mass, and natural abundance of the other isotope, and complete the table.
Be sure your answers have the correct number of significant digits.
| Isotope | Mass (amu) | Natural Abundance (%) |
|---------|------------|------------------------|
| \[_B\] | \[_\] | \[_\]% |
| \(^{11}\text{B}\) | 11.009 | 80.1% |
---
The diagram is a table with columns labeled "isotope," "mass (amu)," and "natural abundance." The table has two rows for the isotopes of boron. The second isotope, \(^{11}\text{B}\), is listed with a mass of 11.009 amu and a natural abundance of 80.1%. The first isotope's details need to be calculated.
A small information icon and an "X" are shown, likely for interactive elements on a website but not directly related to the task.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F48d9bd7f-73f1-43d3-ab6b-78b35e559c7c%2Fa4719f94-bdca-45b0-86cb-e81dba44ae5d%2F97alyrq_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The text outlines a task related to the naturally occurring stable isotopes of boron. Here's the transcription:
---
There are only two naturally-occurring stable isotopes of boron. The mass and natural abundance of one of them is listed in the table below. Use whatever data you need from the ALEKS Periodic Table to determine the identity, mass, and natural abundance of the other isotope, and complete the table.
Be sure your answers have the correct number of significant digits.
| Isotope | Mass (amu) | Natural Abundance (%) |
|---------|------------|------------------------|
| \[_B\] | \[_\] | \[_\]% |
| \(^{11}\text{B}\) | 11.009 | 80.1% |
---
The diagram is a table with columns labeled "isotope," "mass (amu)," and "natural abundance." The table has two rows for the isotopes of boron. The second isotope, \(^{11}\text{B}\), is listed with a mass of 11.009 amu and a natural abundance of 80.1%. The first isotope's details need to be calculated.
A small information icon and an "X" are shown, likely for interactive elements on a website but not directly related to the task.
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