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General Chemistry Principles, Patterns, and Applications, 2011

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9. Sketch the shape of the periodic table if there were three possible values of ms for each electron (+½, −½,<br />

<strong>and</strong> 0); assume that the Pauli principle is still valid.<br />

10. Predict the shape of the periodic table if eight electrons could occupy the p subshell.<br />

11. If the electron could only have spin +½, what would the periodic table look like?<br />

12. If three electrons could occupy each s orbital, what would be the electron configuration of each species?<br />

a. sodium<br />

b. titanium<br />

c. fluorine<br />

d. calcium<br />

13. If Hund’s rule were not followed <strong>and</strong> maximum pairing occurred, how many unpaired electrons would each<br />

species have? How do these numbers compare with the number found using Hund’s rule?<br />

a. phosphorus<br />

b. iodine<br />

c. manganese<br />

14. Write the electron configuration for each element in the ground state.<br />

a. aluminum<br />

b. calcium<br />

c. sulfur<br />

d. tin<br />

e. nickel<br />

f. tungsten<br />

g. neodymium<br />

h. americium<br />

15. Write the electron configuration for each element in the ground state.<br />

a. boron<br />

b. rubidium<br />

c. bromine<br />

d. germanium<br />

e. vanadium<br />

Saylor URL: http://www.saylor.org/books<br />

Saylor.org<br />

581

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