17.A balloon filled with 3.0 L of He at 210 K and 2.00 atm is slowly cooled to 70 K under isobaric conditions. What is the final volume of the balloon? а. 1.0L b. 6.0 L c. 12.0 L d. 16.0 L
17.A balloon filled with 3.0 L of He at 210 K and 2.00 atm is slowly cooled to 70 K under isobaric conditions. What is the final volume of the balloon? а. 1.0L b. 6.0 L c. 12.0 L d. 16.0 L
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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![17.A balloon filled with 3.0 L of He at 210 K and 2.00 atm is slowly cooled
to 70 K under isobaric conditions. What is the final volume of the
balloon?
а. 1.0L
b. 6.0 L
с. 12.0 L
d. 16.0 L
18. For which of the following wavelengths of light is the energy the second
least?
а. 324 nm
b. 417 nm
c. 568 nm
d. 607 nm
19. Which orbital(s) exist in n=3?
a. s
b. s,p
c. s.p,d
d. s,p,d,f
20. Under what laboratory conditions would a real gas exhibit properties
LEAST consistent with those of an ideal gas?
a. Low temperature, low pressure
b. Low temperature, high pressure
c. High temperature, low pressure
d. High temperature, high pressure](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F1d156f8b-a332-4b15-823e-29984fed74bd%2F6b714b83-9494-4f6b-876d-16dd754b66a2%2F7tjtg0d_processed.png&w=3840&q=75)
Transcribed Image Text:17.A balloon filled with 3.0 L of He at 210 K and 2.00 atm is slowly cooled
to 70 K under isobaric conditions. What is the final volume of the
balloon?
а. 1.0L
b. 6.0 L
с. 12.0 L
d. 16.0 L
18. For which of the following wavelengths of light is the energy the second
least?
а. 324 nm
b. 417 nm
c. 568 nm
d. 607 nm
19. Which orbital(s) exist in n=3?
a. s
b. s,p
c. s.p,d
d. s,p,d,f
20. Under what laboratory conditions would a real gas exhibit properties
LEAST consistent with those of an ideal gas?
a. Low temperature, low pressure
b. Low temperature, high pressure
c. High temperature, low pressure
d. High temperature, high pressure
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