6. Imagine that each of the three containers in Model 2 contains krypton atoms. The atomic radius of a krypton atom is 88.00 pm. Assuming the atom is a solid sphere, calculate the volume of one krypton atom in liters. Hint: Volume of a sphere equation is V = 7. Calculate the total volume occupied by the krypton atoms in each container in Model 2. Enter these data in tuhe table.

Chemistry
10th Edition
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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Moles of Gas
1.0000 mole
1.0000 mole
1.0000 mole
"Ideal" Volume of Container
0.25000 L
1.00000 L
0.50000 L
Volume of Gas Molecules
Volume of "Real" Usable Space
Percent of "Ideal" Volume that
is "Real" Usable Space
6. Imagine that each of the three containers in Model 2 contains krypton atoms. The atomic radius
of a krypton atom is 88.00 pm. Assuming the atom is a solid sphere, calculate the volume of one
krypton atom in liters.
4
Hint: Volume of a sphere equation is V = -
7. Calculate the total volume occupied by the krypton atoms in each container in Model 2. Enter
these data in the table.
Transcribed Image Text:Moles of Gas 1.0000 mole 1.0000 mole 1.0000 mole "Ideal" Volume of Container 0.25000 L 1.00000 L 0.50000 L Volume of Gas Molecules Volume of "Real" Usable Space Percent of "Ideal" Volume that is "Real" Usable Space 6. Imagine that each of the three containers in Model 2 contains krypton atoms. The atomic radius of a krypton atom is 88.00 pm. Assuming the atom is a solid sphere, calculate the volume of one krypton atom in liters. 4 Hint: Volume of a sphere equation is V = - 7. Calculate the total volume occupied by the krypton atoms in each container in Model 2. Enter these data in the table.
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