The ideal gas law (PV=nRT) describes the relationship among pressure P. volume V, temperature T, and molar amount. When and V are fixed, the equation can be rearranged to take the following form where k is a constant ==k (7) N = (+) ad (*)mita - () When n and P are fixed, the expression becomes or ▾ Part A The pressure inside a hydrogen-filled container was 2.10 atm at 21 "C. What would the pressure be if the container was heated to 89 "C? Express your answer with the appropriate units. ▸ View Available Hint(s) Plad Submit Part B LA * Incorrect; Try Again Submit Value Provide Feedback Previous Answers At standard temperature and pressure (0"C and 1.00 atm ). 1.00 mol of an ideal gas occupies a volume of 224 L. What volume would the same amount of gas occupy at the same pressure and 35 °C? Express your answer with the appropriate units. View Available Hints) Units A ? Value Units

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<Homework 7B - Attempt 1
+ Changes in Temperature
I
X
T
08
Type here to search
Content
The ideal gas law (PV = nRT) describes the relationship among pressure P, volume V, temperature T, and molar
amount n. When n and V are fixed, the equation can be rearranged to take the following form where k is a constant:
f = ¹/R = k
(²)
(€) = (€)
V
initial
When n and P are fixed, the expression becomes
nR
= k
P
https://session.mastering chemistry.com/myct/itemView?assignment ProblemID=191597252&attemptNo=1&offset=prev
or
or
(\),
MasteringChemistry: HomeworlX +
6:
20
initial
=
final
(7) final
Part A
The pressure inside a hydrogen-filled container was 2.10 atm at 21 °C. What would the pressure be if the container was heated to 89 °C ?
Express your answer with the appropriate units.
► View Available Hint(s)
Pfinal =
Submit
Part B
X Incorrect; Try Again
Vfinal =
μA
Submit
Value
Provide Feedback
Previous Answers
At standard temperature and pressure (0 °C and 1.00 atm ), 1.00 mol of an ideal gas occupies a volume of 22.4 L. What volume would the same amount of gas occupy at the same pressure and 35 °C ?
Express your answer with the appropriate units.
► View Available Hint(s)
μᾶ
Units
Value
?
Units
?
<
63
↓
0
1 of 6
Review | Constants | Periodic Table
>
Next >
5:55 PM
10/21/2022
x
=
Transcribed Image Text:Welcome | my.REDLANDScc <Homework 7B - Attempt 1 + Changes in Temperature I X T 08 Type here to search Content The ideal gas law (PV = nRT) describes the relationship among pressure P, volume V, temperature T, and molar amount n. When n and V are fixed, the equation can be rearranged to take the following form where k is a constant: f = ¹/R = k (²) (€) = (€) V initial When n and P are fixed, the expression becomes nR = k P https://session.mastering chemistry.com/myct/itemView?assignment ProblemID=191597252&attemptNo=1&offset=prev or or (\), MasteringChemistry: HomeworlX + 6: 20 initial = final (7) final Part A The pressure inside a hydrogen-filled container was 2.10 atm at 21 °C. What would the pressure be if the container was heated to 89 °C ? Express your answer with the appropriate units. ► View Available Hint(s) Pfinal = Submit Part B X Incorrect; Try Again Vfinal = μA Submit Value Provide Feedback Previous Answers At standard temperature and pressure (0 °C and 1.00 atm ), 1.00 mol of an ideal gas occupies a volume of 22.4 L. What volume would the same amount of gas occupy at the same pressure and 35 °C ? Express your answer with the appropriate units. ► View Available Hint(s) μᾶ Units Value ? Units ? < 63 ↓ 0 1 of 6 Review | Constants | Periodic Table > Next > 5:55 PM 10/21/2022 x =
Expert Solution
Step 1

Temperature and pressure are linearly related, and if the temperature is on the kelvin scale, then P and T are directly proportional (again, when volume and moles of gas are held constant).

And 

The volume of a given gas sample is directly proportional to its absolute temperature at constant pressure.

 

 

 

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