INTRODUCTORY CHEMISTRY-STD.GDE.+SOL.MAN
INTRODUCTORY CHEMISTRY-STD.GDE.+SOL.MAN
8th Edition
ISBN: 9780134580289
Author: CORWIN
Publisher: PEARSON
Question
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Chapter 5, Problem 56E
Interpretation Introduction

(a)

Interpretation:

The predicted electron configuration of B is to be stated.

Concept introduction:

The arrangement of electrons in the energy sublevels is explained by the electron configuration of an atom. The electron configuration of an atom can be written according to the arrangement of energy levels as shown below.

1s<2s<2p<3s<3p<4s<3d<4p<5s<4d<5p<6s

Expert Solution
Check Mark

Answer to Problem 56E

The electron configuration for B is 1s22s22p1 or [He]2s22p1.

Explanation of Solution

The symbol for boron is B. Boron is the first element in the 2p sublevel. The electron configuration is written by filling the electrons according to the energy level order as shown below.

1s<2s<2p<3s<3p<4s<3d<4p<5s<4d<5p<6s

The s orbital can accommodate two electrons and p orbital can accommodate six electrons. The atomic number of boron is 5. Therefore, the electron configuration for B is 1s22s22p1.

The abbreviation of the electron configuration is done by denoting the innermost electrons by the symbol of preceding noble gas. The preceding noble gas with atomic number less than the atomic number of boron is helium (1s2). Therefore, the electronic configuration for boron is [He]2s22p1.

Conclusion

The electron configuration for B is 1s22s22p1.

Interpretation Introduction

(b)

Interpretation:

The predicted electron configuration of Ti is to be stated.

Concept introduction:

The arrangement of electrons in the energy sublevels is explained by the electron configuration of an atom. The electron configuration of an atom can be written according to the arrangement of energy levels as shown below.

1s<2s<2p<3s<3p<4s<3d<4p<5s<4d<5p<6s

Expert Solution
Check Mark

Answer to Problem 56E

The electron configuration for Ti is 1s22s22p63s23p64s23d2 or [Ar]4s23d2.

Explanation of Solution

The symbol for titanium is Ti. Titanium is the second element in the 3d sublevel. The electron configuration is written by filling the electrons according to the energy level order as shown below.

1s<2s<2p<3s<3p<4s<3d<4p<5s<4d<5p<6s

The s orbital can accommodate two electrons, p orbital can accommodate six electrons and d orbital can accommodate ten electrons. The atomic number of titanium is 22. Therefore, the electron configuration for Ti is 1s22s22p63s23p64s23d2.

The abbreviation of the electron configuration is done by denoting the innermost electrons by the symbol of preceding noble gas. The preceding noble gas with atomic number less than the atomic number of titanium is argon (Ar).

The electronic configuration of argon is (1s22s22p63s23p6).

Therefore, the electronic configuration for titanium is [Ar]4s23d2.

Conclusion

The electron configuration for Ti is 1s22s22p63s23p64s23d2.

Interpretation Introduction

(c)

Interpretation:

The predicted electron configuration of Na is to be stated.

Concept introduction:

The arrangement of electrons in the energy sublevels is explained by the electron configuration of an atom. The electron configuration of an atom can be written according to the arrangement of energy levels as shown below.

1s<2s<2p<3s<3p<4s<3d<4p<5s<4d<5p<6s

Expert Solution
Check Mark

Answer to Problem 56E

The electron configuration for Na is 1s22s22p63s1 or [Ne]3s1.

Explanation of Solution

The symbol for sodium is Na. Sodium is the first element in the 3s sublevel. The electron configuration is written by filling the electrons according to the increasing energy sublevel order as shown below.

1s<2s<2p<3s<3p<4s<3d<4p<5s<4d<5p<6s

The s orbital can accommodate two electrons, p orbital can accommodate six electrons and d orbital can accommodate ten electrons. The atomic number of sodium is 11. Therefore, the electron configuration for Na is 1s22s22p63s1.

The abbreviation of the electron configuration is done by denoting the innermost electrons by the symbol of preceding noble gas. The preceding noble gas with atomic number less than the atomic number of sodium is neon (Ne).

The electronic configuration of neon is 1s22s22p6.

Therefore, the electronic configuration for sodium is [Ne]3s1.

Conclusion

The electron configuration for Na is 1s22s22p63s1.

Interpretation Introduction

(d)

Interpretation:

The predicted electron configuration of O is to be stated.

Concept introduction:

The arrangement of electrons in the energy sublevels is explained by the electron configuration of an atom. The electron configuration of an atom can be written according to the arrangement of energy levels as shown below.

1s<2s<2p<3s<3p<4s<3d<4p<5s<4d<5p<6s

Expert Solution
Check Mark

Answer to Problem 56E

The electron configuration for O is 1s22s22p4 or [He]2s22p4.

Explanation of Solution

The symbol for oxygen is O. Oxygen is the fourth element in the 2p sublevel. The electron configuration is written by filling the electrons according to the increasing energy sublevel order as shown below.

1s<2s<2p<3s<3p<4s<3d<4p<5s<4d<5p<6s

The s orbital can accommodate two electrons, p orbital can accommodate six electrons and d orbital can accommodate ten electrons. The atomic number of oxygen is 8. Therefore, the electron configuration for O is 1s22s22p4.

The abbreviation of the electron configuration is done by denoting the innermost electrons by the symbol of preceding noble gas. The preceding noble gas with atomic number less than the atomic number of oxygen is helium (He).

The electronic configuration of helium is 1s2.

Therefore, the electronic configuration for oxygen is [He]2s22p4.

Conclusion

The electron configuration for O is 1s22s22p4.

Interpretation Introduction

(e)

Interpretation:

The predicted electron configuration of Ge is to be stated.

Concept introduction:

The arrangement of electrons in the energy sublevels is explained by the electron configuration of an atom. The electron configuration of an atom can be written according to the arrangement of energy levels as shown below.

1s<2s<2p<3s<3p<4s<3d<4p<5s<4d<5p<6s

Expert Solution
Check Mark

Answer to Problem 56E

The electron configuration for Ge is 1s22s22p63s23p64s23d104p2 or [Ar]4s23d104p2.

Explanation of Solution

The symbol for germanium is Ge. Germanium is the second element in the 4p sublevel. The electron configuration is written by filling the electrons according to the increasing energy sublevel order as shown below.

1s<2s<2p<3s<3p<4s<3d<4p<5s<4d<5p<6s

The s orbital can accommodate two electrons, p orbital can accommodate six electrons and d orbital can accommodate ten electrons. The atomic number of germanium is 32. Therefore, the electron configuration for Ge is 1s22s22p63s23p64s23d104p2.

The abbreviation of the electron configuration is done by denoting the innermost electrons by the symbol of preceding noble gas. The preceding noble gas with atomic number less than the atomic number of germanium is argon (Ar).

The electronic configuration of argon is 1s22s22p63s23p6.

Therefore, the electronic configuration of germanium is [Ar]4s23d104p2.

Conclusion

The electron configuration for Ge is 1s22s22p63s23p64s23d104p2.

Interpretation Introduction

(f)

Interpretation:

The predicted electron configuration of Ba is to be stated.

Concept introduction:

The arrangement of electrons in the energy sublevels is explained by the electron configuration of an atom. The electron configuration of an atom can be written according to the arrangement of energy levels as shown below.

1s<2s<2p<3s<3p<4s<3d<4p<5s<4d<5p<6s

Expert Solution
Check Mark

Answer to Problem 56E

The electron configuration for Ba is 1s22s22p63s23p64s23d104p65s24d105p66s2 or [Xe]6s2.

Explanation of Solution

The symbol for barium is Ba. Barium is the second element in the 6s sublevel. The electron configuration is written by filling the electrons according to the increasing energy sublevel order as shown below.

1s<2s<2p<3s<3p<4s<3d<4p<5s<4d<5p<6s

The s orbital can accommodate two electrons, p orbital can accommodate six electrons and d orbital can accommodate ten electrons. The atomic number of barium is 56. Therefore, the electron configuration for Ba is 1s22s22p63s23p64s23d104p65s24d105p66s2.

The abbreviation of the electron configuration is done by denoting the innermost electrons by the symbol of preceding noble gas. The preceding noble gas with atomic number less than the atomic number of barium is xenon (Xe).

The electronic configuration of xenon is 1s22s22p63s23p64s23d104p65s24d105p6.

Therefore, the electronic configuration of barium is [Xe]6s2.

Conclusion

The electron configuration for Ba is 1s22s22p63s23p64s23d104p65s24d105p66s2.

Interpretation Introduction

(g)

Interpretation:

The predicted electron configuration of Pd is to be stated.

Concept introduction:

The arrangement of electrons in the energy sublevels is explained by the electron configuration of an atom. The electron configuration of an atom can be written according to the arrangement of energy levels as shown below.

1s<2s<2p<3s<3p<4s<3d<4p<5s<4d<5p<6s

Expert Solution
Check Mark

Answer to Problem 56E

The electron configuration for Pd is 1s22s22p63s23p64s23d104p64d10 or [Kr]4d10.

Explanation of Solution

The symbol for palladium is Pd. Palladium is the eight element in the 4d sublevel. The electron configuration is written by filling the electrons according to the increasing energy sublevel order as shown below.

1s<2s<2p<3s<3p<4s<3d<4p<5s<4d<5p<6s

The s orbital can accommodate two electrons, p orbital can accommodate six electrons and d orbital can accommodate ten electrons. The atomic number of palladium is 46. Therefore, the electron configuration for Pd is 1s22s22p63s23p64s23d104p64d10.

The abbreviation of the electron configuration is done by denoting the innermost electrons by the symbol of preceding noble gas. The preceding noble gas with atomic number less than the atomic number of palladium is krypton (Kr).

The electronic configuration of krypton is 1s22s22p63s23p64s23d104p6.

Therefore, the electronic configuration of palladium is [Kr]4d10.

Conclusion

The electron configuration for Pd is 1s22s22p63s23p64s23d104p64d10.

Interpretation Introduction

(h)

Interpretation:

The predicted electron configuration of Kr is to be stated.

Concept introduction:

The arrangement of electrons in the energy sublevels is explained by the electron configuration of an atom. The electron configuration of an atom can be written according to the arrangement of energy levels as shown below.

1s<2s<2p<3s<3p<4s<3d<4p<5s<4d<5p<6s

Expert Solution
Check Mark

Answer to Problem 56E

The electron configuration for Kr is 1s22s22p63s23p64s23d104p6 or [Ar]4s23d104p6.

Explanation of Solution

The symbol for krypton is Kr. Krypton is the sixth element in the 4p sublevel. The electron configuration is written by filling the electrons according to the increasing energy sublevel order as shown below.

1s<2s<2p<3s<3p<4s<3d<4p<5s<4d<5p<6s

The s orbital can accommodate two electrons, p orbital can accommodate six electrons and d orbital can accommodate ten electrons. The atomic number of krypton is 36. Therefore, the electron configuration for Kr is 1s22s22p63s23p64s23d104p6.

The abbreviation of the electron configuration is done by denoting the innermost electrons by the symbol of preceding noble gas. The preceding noble gas with atomic number less than the atomic number of krypton is argon (Ar).

The electron configuration of argon is 1s22s22p63s23p6.

Therefore, the electron configuration of krypton is [Ar]4s23d104p6.

Conclusion

The electron configuration for Kr is 1s22s22p63s23p64s23d104p6.

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Chapter 5 Solutions

INTRODUCTORY CHEMISTRY-STD.GDE.+SOL.MAN

Ch. 5 - Prob. 11CECh. 5 - Prob. 12CECh. 5 - Prob. 13CECh. 5 - Prob. 14CECh. 5 - Prob. 1KTCh. 5 - Prob. 2KTCh. 5 - Prob. 3KTCh. 5 - Prob. 4KTCh. 5 - Prob. 5KTCh. 5 - Prob. 6KTCh. 5 - Prob. 7KTCh. 5 - Prob. 8KTCh. 5 - Prob. 9KTCh. 5 - Prob. 10KTCh. 5 - Prob. 11KTCh. 5 - Prob. 12KTCh. 5 - Prob. 13KTCh. 5 - Prob. 14KTCh. 5 - Prob. 15KTCh. 5 - Prob. 16KTCh. 5 - Prob. 17KTCh. 5 - Prob. 18KTCh. 5 - Prob. 19KTCh. 5 - Prob. 20KTCh. 5 - Prob. 21KTCh. 5 - Prob. 22KTCh. 5 - Prob. 23KTCh. 5 - Prob. 1ECh. 5 - Prob. 2ECh. 5 - Prob. 3ECh. 5 - Prob. 4ECh. 5 - Prob. 5ECh. 5 - Prob. 6ECh. 5 - Prob. 7ECh. 5 - Prob. 8ECh. 5 - Prob. 9ECh. 5 - Prob. 10ECh. 5 - Prob. 11ECh. 5 - Prob. 12ECh. 5 - Prob. 13ECh. 5 - Prob. 14ECh. 5 - Prob. 15ECh. 5 - Prob. 16ECh. 5 - Prob. 17ECh. 5 - Prob. 18ECh. 5 - Prob. 19ECh. 5 - Prob. 20ECh. 5 - Prob. 21ECh. 5 - Prob. 22ECh. 5 - Prob. 23ECh. 5 - Prob. 24ECh. 5 - Prob. 25ECh. 5 - Prob. 26ECh. 5 - Prob. 27ECh. 5 - Prob. 28ECh. 5 - Prob. 29ECh. 5 - Prob. 30ECh. 5 - Prob. 31ECh. 5 - Prob. 32ECh. 5 - Prob. 33ECh. 5 - Prob. 34ECh. 5 - Prob. 35ECh. 5 - Prob. 36ECh. 5 - Prob. 37ECh. 5 - Prob. 38ECh. 5 - Prob. 39ECh. 5 - Prob. 40ECh. 5 - Prob. 41ECh. 5 - Prob. 42ECh. 5 - Prob. 43ECh. 5 - Prob. 44ECh. 5 - Prob. 45ECh. 5 - Prob. 46ECh. 5 - Prob. 47ECh. 5 - Prob. 48ECh. 5 - Prob. 49ECh. 5 - Prob. 50ECh. 5 - Prob. 51ECh. 5 - Prob. 52ECh. 5 - Prob. 53ECh. 5 - Prob. 54ECh. 5 - Prob. 55ECh. 5 - Prob. 56ECh. 5 - Prob. 57ECh. 5 - Prob. 58ECh. 5 - Prob. 59ECh. 5 - Prob. 60ECh. 5 - Prob. 61ECh. 5 - Prob. 62ECh. 5 - Prob. 63ECh. 5 - Prob. 64ECh. 5 - Prob. 65ECh. 5 - Prob. 66ECh. 5 - Prob. 67ECh. 5 - Prob. 68ECh. 5 - Prob. 69ECh. 5 - Prob. 70ECh. 5 - Prob. 71ECh. 5 - Prob. 72ECh. 5 - Prob. 73ECh. 5 - Prob. 74ECh. 5 - Prob. 75ECh. 5 - Prob. 76ECh. 5 - Prob. 77ECh. 5 - Prob. 78ECh. 5 - Prob. 79ECh. 5 - Prob. 80ECh. 5 - Prob. 81ECh. 5 - Prob. 82ECh. 5 - Prob. 83ECh. 5 - Prob. 84ECh. 5 - Prob. 85ECh. 5 - Prob. 86ECh. 5 - Prob. 87ECh. 5 - Prob. 88ECh. 5 - Prob. 89ECh. 5 - Prob. 90ECh. 5 - Prob. 91ECh. 5 - Prob. 92ECh. 5 - Prob. 1STCh. 5 - Prob. 2STCh. 5 - Prob. 3STCh. 5 - Prob. 4STCh. 5 - Prob. 5STCh. 5 - Prob. 6STCh. 5 - Prob. 7STCh. 5 - Prob. 8STCh. 5 - Prob. 9STCh. 5 - Prob. 10STCh. 5 - Prob. 11STCh. 5 - Prob. 12STCh. 5 - Prob. 13STCh. 5 - Prob. 14STCh. 5 - Prob. 15STCh. 5 - Prob. 16STCh. 5 - Prob. 17STCh. 5 - Prob. 18ST
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