A balloon filled with 2.00 L of helium initially at 1.65 atm of pressure rises into the atmosphere. When the surrounding pressure reaches 500. mmHg, the balloon will burst. If 1 atm = 760. mmHg, what volume will the balloon occupy in the instant before it bursts? Express your answer with the appropriate units.

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter5: Gases
Section: Chapter Questions
Problem 151CWP: A certain flexible weather balloon contains helium gas at a volume of 855 L. Initially, the balloon...
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Part C - Practice the steps for a multi-step problem
Sometimes the problem will give the initial and final states in different units. In this case, you need to identify all of the pressures and all of the volumes by organizing them into a table
(step 1 of our problem-solving method). Then, you need to convert all of your pressures to the same units (usually atmospheres works best) and all of your volumes to the same units
(usually liters). Then you can set up the problem and solve.
A balloon filled with 2.00 L of helium initially at 1.65 atm of pressure rises into the atmosphere. When the surrounding pressure reaches 500. mmHg, the balloon will burst. If 1 atm =
760. mmHg, what volume will the balloon occupy in the instant before it bursts?
Express your answer with the appropriate units.
• View Available Hint(s)
V =
Value
Units
Transcribed Image Text:Item 9 9 of 16 Part C - Practice the steps for a multi-step problem Sometimes the problem will give the initial and final states in different units. In this case, you need to identify all of the pressures and all of the volumes by organizing them into a table (step 1 of our problem-solving method). Then, you need to convert all of your pressures to the same units (usually atmospheres works best) and all of your volumes to the same units (usually liters). Then you can set up the problem and solve. A balloon filled with 2.00 L of helium initially at 1.65 atm of pressure rises into the atmosphere. When the surrounding pressure reaches 500. mmHg, the balloon will burst. If 1 atm = 760. mmHg, what volume will the balloon occupy in the instant before it bursts? Express your answer with the appropriate units. • View Available Hint(s) V = Value Units
Item 9
9 of 16
>
Part B - Practice the steps for a one-step problem
Once you've identified the initial and final conditions, you're ready to solve for the unknown quantity in your problem. Boyle's Law expresses the pressure-volume relationship as
PV1 = P2V2, so you will need to solve this equation for the unknown quantity and then plug in your known values to calculate the unknown.
What pressure would it take to compress 200. L of helium gas initially at 1.00 atm into a 2.00 L tank at constant temperature?
Express your answer with the appropriate units.
• View Available Hint(s)
HẢ
P =
Value
Units
Transcribed Image Text:Item 9 9 of 16 > Part B - Practice the steps for a one-step problem Once you've identified the initial and final conditions, you're ready to solve for the unknown quantity in your problem. Boyle's Law expresses the pressure-volume relationship as PV1 = P2V2, so you will need to solve this equation for the unknown quantity and then plug in your known values to calculate the unknown. What pressure would it take to compress 200. L of helium gas initially at 1.00 atm into a 2.00 L tank at constant temperature? Express your answer with the appropriate units. • View Available Hint(s) HẢ P = Value Units
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