General, Organic, and Biological Chemistry
General, Organic, and Biological Chemistry
7th Edition
ISBN: 9781285853918
Author: H. Stephen Stoker
Publisher: Cengage Learning
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Chapter 7, Problem 7.46EP
Interpretation Introduction

Interpretation:

The blanks in the each row of the table by using ideal gas law at given set of conditions has to be filled.

Concept Introduction:

Ideal gas law provides the relationship between the four gas variables temperature, pressure, volume, and molar amount of a gaseous substance at specified set of conditions.  The mathematical expression for ideal gas law can be shown below,

PV=nRTWhere,P=PressureofgasV=VolumeofgasT=Temperatureofgasn=NumberofmolesofgasR=Idealgasconstant

Expert Solution & Answer
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Answer to Problem 7.46EP

At given conditions the blanks in the table is filled by using ideal gas law is,

PVnT
10.9 atm3.00 L1.00mole127oC
 a 22.4 atm3.30 L3.00 mole27oC
 b 7.10 atm8.00 L2.00 mole73oC
 c2.50 atm2.50 L 0.761mole-173oC
 d5.00 atm10.0 L2.00 mole32oC

Explanation of Solution

(a)

Record the given data,

P = 22.4 atmV = ?n = 3.00 moleT = 27°C converted to 300K

Now, substitute these values in ideal gas law and do some mathematical calculation as shown in below,

PV=nRT

V=nRTP

V=(3.00mole)(0.0821atm.L/mole.K)(300K)(22.4atm)=3.30L

Therefore, the new volume is 3.30L.

(b)

Record the given data,

P = ?V = 8.00Ln = 2.00 moleT = 73°C converted to 346K

Now, substitute these values in ideal gas law and do some mathematical calculation as shown in below,

PV=nRT

P=nRTV

P=(2.00mole)(0.0821atm.L/mole.K)(346K)(8.00L)=7.10atm

Therefore, the new pressure is 7.10atm.

(c)

Record the given data,

P = 2.50atmV =2.50 Ln = ?T = -173°C converted to 100K

Now, substitute these values in ideal gas law and do some mathematical calculation as shown in below,

PV=nRT

n=PVRT

n=(2.50atm)(2.50L)(0.0821atm.L/mole.K)(100K)=0.761mole

Therefore, the number of moles is 0.761mole.

(d)

Record the given data,

P = 5.00 atmV =10.0 Ln = 2.00 moleT = ?

Now, substitute these values in ideal gas law and do some mathematical calculation as shown in below,

PV=nRT

T=PVnR

T=(5.00atm)(10.0L)(0.0821atm.L/mole.K)(2.00mole)=305K

Now, convert the obtained Kelvin temperature into degree Celsius temperature by using the following equation,

T273

305273=32°C

Therefore, the new temperature is 32°C.

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Chapter 7 Solutions

General, Organic, and Biological Chemistry

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