sive ionization energies of 738 kJ/mol, 1451 kJ/mól, ala so large Z could be S, since its ionization energies are large and keep going up in regular intervals

Chemistry: An Atoms First Approach
2nd Edition
ISBN:9781305079243
Author:Steven S. Zumdahl, Susan A. Zumdahl
Publisher:Steven S. Zumdahl, Susan A. Zumdahl
Chapter2: Atomic Structure And Periodicity
Section: Chapter Questions
Problem 9RQ
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Part A
Element X has successive ionization energies of 738 kJ/mol, 1451 kJ/mol, and 7733 kJ/mol. Element Z has successive ionization energies of 1000 kJ/mol, 2252 kd/mol, and 3357 kJ/mol. What are the possible identities of X and Z?
O x could be Mg, since its third ionization energy is so large. Z could be S, since its ionization energies are large and keep going up in regular intervals
O x could be P, since the third ionization energy is so large. Z could be Na, since its ionization energies keep going up in regular intervals
O x could be Na, since the second and third ionization energies are so much larger than the first one. Z could be a noble gas, since its ionization energies are large and keep going up in regular intervals
O x could be Fe, since its third ionization energy is so large. Z could be H since its ionization energies keep going up in regular intervals
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Transcribed Image Text:Part A Element X has successive ionization energies of 738 kJ/mol, 1451 kJ/mol, and 7733 kJ/mol. Element Z has successive ionization energies of 1000 kJ/mol, 2252 kd/mol, and 3357 kJ/mol. What are the possible identities of X and Z? O x could be Mg, since its third ionization energy is so large. Z could be S, since its ionization energies are large and keep going up in regular intervals O x could be P, since the third ionization energy is so large. Z could be Na, since its ionization energies keep going up in regular intervals O x could be Na, since the second and third ionization energies are so much larger than the first one. Z could be a noble gas, since its ionization energies are large and keep going up in regular intervals O x could be Fe, since its third ionization energy is so large. Z could be H since its ionization energies keep going up in regular intervals Submit Request Answer vide Feedback
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