CHEMISTRY: ATOMS FIRST VOL 1 W/CONNECT
CHEMISTRY: ATOMS FIRST VOL 1 W/CONNECT
14th Edition
ISBN: 9781259327933
Author: Burdge
Publisher: MCG
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Chapter 12, Problem 12.114QP

Argon crystallizes in the face-centered cubic arrangement at 40 K. Given that the atomic radius of argon is 191 pm. calculate the density of solid argon.

Expert Solution & Answer
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Interpretation Introduction

Interpretation:

Given the atomic radius of solid Argon, its density has to be calculated.

Concept Introduction:

In a crystalline solid, the components are neatly stacked and closely packed in a regular pattern. The components are imagined as spheres.  The two major types of close packing of the spheres in the crystal are – hexagonal close packing and cubic close packing.  Cubic close packing structure has face-centered cubic (FCC) unit cell.

In face-centered cubic unit cell, each of the six corners is occupied by every single atom. Each face of the cube is occupied by one atom.

Each atom in the corner is shared by eight unit cells and each atom in the face is shared by two unit cells.  Thus the number of atoms per unit cell in FCC unit cell is,

8×18atomsincorners+6×12atomsinfaces=1+3=4atoms       The edge length of one unit cell is given bya=2R2where  a=edge length of unit cellR=radiusofatom

Answer to Problem 12.114QP

The density of solid Argon is calculated as 1.69 g/cm3.

Explanation of Solution

Solid Argon has cubic close packing structure with face-centered cubic unit cells. The atomic radius of solid Argon is given.  The formula for the edge length of the cubic unit cell is known as a=2R2 in which ‘a’ corresponds to edge length of the unit cell and ‘R’ corresponds to radius of the atom in the unit cell.  The value is substituted and ‘a3’value is calculated.  This value corresponds to the volume of the unit cell.

Accordingly calculate volume of FCC unit cell as shown below –

givendata:R=191pm=191×10-12m

volumeofunitcell=a3a=2R2a3=(2R2)3=(2×191×10-12m×1.414)3=1.57×10-22cm3

Each unit cell contains 4 Ar atoms.  Therefore four times the average mass of one Argon atom gives mass of a unit cell of solid Argon.  Hence the mass of a unit cell of solid Argon.

Average mass of one Ar atom=atomicmassofArAvogadronumber=39.95g6.022×1023=6.63×10-23g

Eachunitcellhas4Aratoms.Therefore,

massofaunitcell=4×averagemassofoneAratom=4×6.63×10-23g=2.65×10-22g

Mass and volume of the unit cell is calculated in the previous steps. By substituting the values in the formula, density=massvolume the density of solid Argon is determined.

The density of solid Argon is,

density=massvolume=2.65×10-22g1.57×10-22cm3=1.69g/cm3

Conclusion

The density of solid Argon has been determined using the relation between edge length of the FCC unit cell and atomic radius.

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Chapter 12 Solutions

CHEMISTRY: ATOMS FIRST VOL 1 W/CONNECT

Ch. 12.3 - The density of sodium metal is 0.971 g/cm3 and the...Ch. 12.3 - Prob. 12.3.1SRCh. 12.3 - Prob. 12.3.2SRCh. 12.4 - How many of each ion are contained within a unit...Ch. 12.4 - Referring to Figure 12.23, determine how many of...Ch. 12.4 - Referring to Figure 12.23, determine how many of...Ch. 12.4 - Prob. 3PPCCh. 12.4 - The edge length of the NaCl unit cell is 564 pm....Ch. 12.4 - Prob. 4PPACh. 12.4 - NiO also adopts the face-centered cubic...Ch. 12.4 - The metal iridium (Ir) crystallizes with a...Ch. 12.4 - Prob. 5PPACh. 12.4 - Copper crystallizes in a face-centered cubic...Ch. 12.4 - Given that the diameter and average mass of a...Ch. 12.5 - (a) Calculate the amount of heat deposited oil the...Ch. 12.5 - Calculate the amount of energy (in kilojoules)...Ch. 12.5 - Determine the final state and temperature of 100 g...Ch. 12.5 - Prob. 6PPCCh. 12.5 - Prob. 12.5.1SRCh. 12.5 - Prob. 12.5.2SRCh. 12.6 - Using the following phase diagram, (a) determine...Ch. 12.6 - Use the following phase diagram to (a) determine...Ch. 12.6 - Prob. 7PPBCh. 12.6 - Prob. 7PPCCh. 12.6 - Prob. 12.6.1SRCh. 12 - Explain why liquids, unlike gases, are virtually...Ch. 12 - What is surface tension? 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Label the...Ch. 12 - Prob. 12.78QPCh. 12 - Prob. 12.79QPCh. 12 - Prob. 12.80QPCh. 12 - Prob. 12.81QPCh. 12 - Prob. 12.82QPCh. 12 - The average distance between base pairs measured...Ch. 12 - A CO2 fire extinguisher is located on the outside...Ch. 12 - What is the vapor pressure of mercury at its...Ch. 12 - Prob. 12.86QPCh. 12 - The liquid-vapor boundary line in the phase...Ch. 12 - Prob. 12.88QPCh. 12 - Prob. 12.89QPCh. 12 - A student is given four solid samples labeled W,...Ch. 12 - Prob. 12.91QPCh. 12 - The diagram shows a kettle of boiling water....Ch. 12 - The south pole of Mars is covered with solid...Ch. 12 - The properties of gases, liquids, and solids...Ch. 12 - The standard enthalpy of formation of gaseous...Ch. 12 - Prob. 12.96QPCh. 12 - Under the same conditions of temperature and...Ch. 12 - The distance between Li+ and Cl is 257 pm in solid...Ch. 12 - Heat of hydration, that is, the heat change that...Ch. 12 - The fluorides of the second period elements and...Ch. 12 - Calculate the H for the following processes at...Ch. 12 - Prob. 12.102QPCh. 12 - Prob. 12.103QPCh. 12 - Ozone (O3) is a strong oxidizing agent that can...Ch. 12 - A sample of limestone (CaCO3) is heated in a...Ch. 12 - Carbon and silicon belong to Group 4A of the...Ch. 12 - Prob. 12.107QPCh. 12 - A 1.20-g sample of water is injected into an...Ch. 12 - What are the advantages of cooking the vegetable...Ch. 12 - A quantitative measure of how efficiently spheres...Ch. 12 - The phase diagram of helium is shown. 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