The ideal gas equation is PV=nRTPV=nRT where PP is pressure, VV is volume, nn is the number of moles, RR is a constant, and TT is temperature. You are told that a sample of gas has a pressure of PP = 883 torrtorr , a volume of VV = 4310 mLmL , and a temperature of TT = 298 KK . If you use RR = 8.206×10−2 L⋅atm/(K⋅mol)L⋅atm/(K⋅mol) , which of the following conversions would be necessary before you could find the number of moles of gas, nn Check all that apply. View Available Hint(s)     Check all that apply. Convert the pressure to atmospheres (atmatm). Convert the pressure to pascals (PaPa). Convert the volume to cubic meters (m3m3). Convert the volume to liters (LL). Convert the temperature to degrees Celsius (∘C∘C). Convert the temperature to degrees Fahrenheit (∘F∘F).

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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The ideal gas equation is

PV=nRTPV=nRT

where PP is pressure, VV is volume, nn is the number of moles, RR is a constant, and TT is temperature.

You are told that a sample of gas has a pressure of PP = 883 torrtorr , a volume of VV = 4310 mLmL , and a temperature of TT = 298 KK . If you use RR = 8.206×10−2 L⋅atm/(K⋅mol)L⋅atm/(K⋅mol) , which of the following conversions would be necessary before you could find the number of moles of gas, nn

Check all that apply.
View Available Hint(s)
 
 
Check all that apply.
Convert the pressure to atmospheres (atmatm).
Convert the pressure to pascals (PaPa).
Convert the volume to cubic meters (m3m3).
Convert the volume to liters (LL).
Convert the temperature to degrees Celsius (∘C∘C).
Convert the temperature to degrees Fahrenheit (∘F∘F).
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