Physics
Physics
3rd Edition
ISBN: 9780073512150
Author: Alan Giambattista, Betty Richardson, Robert C. Richardson Dr.
Publisher: McGraw-Hill Education
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Chapter 13, Problem 38P

(a)

To determine

The number density of the gas.

(a)

Expert Solution
Check Mark

Answer to Problem 38P

The number density of the gas is 2.69×1025m-3.

Explanation of Solution

Write the expression to find the number density of the gas.

ρN=NV

Here, N is the number of molecules, V is the volume, ρN is the number density.

Substitute nNA for N in the above expression.

ρN=nNAV

Here, NA is Avogadro number, n is the number of moles.

Conclusion:

Substitute 1.00mol for n, 0.0224m3 for V and 6.023×1026(kmol)1 for NA to find the number density.

ρN=(1.00mol)6.023×1023(mol)10.0224m3=2.69×1025m-3

(b)

To determine

The average distance between the molecules.

(b)

Expert Solution
Check Mark

Answer to Problem 38P

The average distance between the molecules is 4×109m.

Explanation of Solution

Consider every molecule situates at the center of sphere.

Write the expression to find the number radius of the sphere.

VN=1NV=1ρN

Substitute 2.69×1025m-3 for ρN to find the radius of the sphere.

VN=12.69×1025m-3=3.72×1026m3

Equate the expression with a volume of a sphere to find the radius of the sphere.

VN=43πr34r3

Re-arrange the above expression to find the radius of the sphere.

r=(V4N)13 (I)

The distance between the molecules can be defined as the diameter of the sphere.

Write the expression to find the average distance between the molecules using equation (I).

d=2r=2((V4N)13)

Conclusion:

Substitute 3.72×1026m3 for VN to find the average distance between the molecules.

d=2(3.72×1026m34)134×109m

(c)

To determine

The total mass and mass density of the gas if the gas is N2.

(c)

Expert Solution
Check Mark

Answer to Problem 38P

The total mass and mass density of the gas if the gas is N2 are 28.0g and 1.25kg/m3.

Explanation of Solution

Write the expression to find the mass of N2.

M=nm

Here, m is the molar mass of N2.

Write the expression to find the mass density of N2.

ρ=MV

Conclusion:

Substitute 1.00mol for n and 2(14.00674g/mol) for m to find M.

M=(1.00mol)(2(14.00674g/mol))=28.0g

Substitute 28.0g for M and 0.0224m3 for V to find the mass density of N2.

ρ=28.0g(1.0kg103g)0.0224m3=1.25kg/m3

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Chapter 13 Solutions

Physics

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