15. If the concentration of ClO. in the South Pole air is 2.0 x 10° molecules/cm3 at 1 atm and -83°C, calculate its concentration in pptv (parts per trillion). A. 52 pptv В. 33 pptv С. 23 pptv D. 12 pptv E. 8.2 pptv
15. If the concentration of ClO. in the South Pole air is 2.0 x 10° molecules/cm3 at 1 atm and -83°C, calculate its concentration in pptv (parts per trillion). A. 52 pptv В. 33 pptv С. 23 pptv D. 12 pptv E. 8.2 pptv
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If the concentration of ClO- in the South Pole air is 2.0 x 109 molecules/cm3 at 1 atm and -83 degrees C, calculate its concentration in pptv (parts per trillion).
![**Question 15**
If the concentration of ClO· in the South Pole air is \(2.0 \times 10^9\) molecules/cm³ at 1 atm and -83°C, calculate its concentration in pptv (parts per trillion).
A. 52 pptv
B. 33 pptv
C. 23 pptv
D. 12 pptv
E. 8.2 pptv
**Explanation**: This question requires converting a given concentration from molecules/cm³ to parts per trillion volume (pptv). The conditions provided are for atmospheric pressure and temperature, which are critical for the conversion.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F9269888f-6fb9-4d4f-8484-919fffe14161%2Fe72de2e0-2670-4bf5-a9b5-e83550348247%2F3w1qag_processed.jpeg&w=3840&q=75)
Transcribed Image Text:**Question 15**
If the concentration of ClO· in the South Pole air is \(2.0 \times 10^9\) molecules/cm³ at 1 atm and -83°C, calculate its concentration in pptv (parts per trillion).
A. 52 pptv
B. 33 pptv
C. 23 pptv
D. 12 pptv
E. 8.2 pptv
**Explanation**: This question requires converting a given concentration from molecules/cm³ to parts per trillion volume (pptv). The conditions provided are for atmospheric pressure and temperature, which are critical for the conversion.
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