If you focus on the second period of the periodic table, you see two exceptions to the general trend in ionization energy (the exceptions are: "blip" between atomic numbers 4 and 5, and the "blip" between atomic numbers 7 and 8). Select the best explanation for the "blips" from the following choices. It is easier to remove an electron if the resulting electron configuration yields a half-filled outermost subshell In general, it is more and more difficult to remove a valence electron as the atomic number increases across a row It is easier to remove an electron if the resulting electron configuration yields a full outermost subshell It is easier to remove an electron if the resulting electron configuration yields a half-filled or completely filled outermost subshell
If you focus on the second period of the periodic table, you see two exceptions to the general trend in ionization energy (the exceptions are: "blip" between atomic numbers 4 and 5, and the "blip" between atomic numbers 7 and 8). Select the best explanation for the "blips" from the following choices. It is easier to remove an electron if the resulting electron configuration yields a half-filled outermost subshell In general, it is more and more difficult to remove a valence electron as the atomic number increases across a row It is easier to remove an electron if the resulting electron configuration yields a full outermost subshell It is easier to remove an electron if the resulting electron configuration yields a half-filled or completely filled outermost subshell
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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If you focus on the second period of the periodic table, you see two exceptions to the general trend in ionization energy (the exceptions are: "blip" between
It is easier to remove an electron if the resulting electron configuration yields a half-filled outermost subshell
In general, it is more and more difficult to remove a valence electron as the atomic number increases across a row
It is easier to remove an electron if the resulting electron configuration yields a full outermost subshell
It is easier to remove an electron if the resulting electron configuration yields a half-filled or completely filled outermost subshell
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