INTRODUCTORY CHEMISTRY-STD.GDE.+SOL.MAN
INTRODUCTORY CHEMISTRY-STD.GDE.+SOL.MAN
8th Edition
ISBN: 9780134580289
Author: CORWIN
Publisher: PEARSON
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Chapter 10, Problem 40E
Interpretation Introduction

Interpretation:

When sample of ammonia gas has a volume of 50.0mL at STP, the Celsius temperature if the volume is 350.0mL at 350mmHg, is to be calculated.

Concept introduction:

The combination of Charles’s law, Boyle’s law and Gay-Lussac’s law is known as combined gas law. The law relates one thermodynamic variable with the other, and other variables are kept constant.

The combined gas law can be mathematically expressed as shown below.

PVT=K

Expert Solution & Answer
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Answer to Problem 40E

When the volume is 350.0mL at 350mmHg, the calculated Celsius temperature is 607.06°C.

Explanation of Solution

The combined relation between the initial and final pressure, volume and temperature of gas is shown below.

P1V1T1=P2V2T2 …(1)

Where,

P1 is the initial pressure.

V1 is the initial volume.

T1 is the initial temperature.

P2 is the final pressure.

V2 is the final volume.

T2is the final temperature.

Rearrange the above equation for the value of the final temperature T2.

T2=P2×V2×T1P1×V1

At STP, the temperature is 0°C and the pressure is 1atm.

Conversion of temperature from Celsius to Kelvin can be done as shown below.

T(K)=T(oC)+273

Therefore, 0°C is converted to Kelvin as shown below.

Tfinal(K)=(0+273)K=273K

Conversion of volume from atm into mmHg is shown below.

1 atm=760 mmHg

The value of P1 is 760mmHg.

The value of V1 is 50mL.

The value of P2 is 350mmHg.

The value of V2 is 350mL.

Substitute the values of P1,V1,P2,V2 and T1 in the equation (2).

T2=350mmHg×350mL×273K760mmHg×50mL=880.06K

Conversion of temperature from Kelvin to Celsius can be done as shown below.

T(°C)=T(K)273

Therefore, 880.06K is converted to Celsius as shown below.

T(°C)=(880.06273)°C=607.06°C

Therefore, the final temperature is 607.06°C.

Conclusion

The calculated Celsius temperature, when the volume is 350.0mL at 350mmHg is 607.06°C.

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Chapter 10 Solutions

INTRODUCTORY CHEMISTRY-STD.GDE.+SOL.MAN

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