1. Which of the following will have an electron configuration ending with 2s22p6? Choose ALL that apply. a. Oxide b. Sulfide C. Fluoride d. Argon e. Neon f. Chloride 2. What is the molecular geometry of AIBr3? a. Bent b. Trigonal pyramidal d. e. Tetrahedral Trigonal planar C. Linear 3. Which of the following relates to the phenomenon of electrons occupying orbitals at the same energy sublevel singly before any orbital is occupied by two electrons? a. Hund's Rule b. Electron Configuration C. Aufbau Principle d. Quantum Mechanical Theory e. Pauli Exclusion Principle f. Orbital Diagram
1. Which of the following will have an electron configuration ending with 2s22p6? Choose ALL that apply. a. Oxide b. Sulfide C. Fluoride d. Argon e. Neon f. Chloride 2. What is the molecular geometry of AIBr3? a. Bent b. Trigonal pyramidal d. e. Tetrahedral Trigonal planar C. Linear 3. Which of the following relates to the phenomenon of electrons occupying orbitals at the same energy sublevel singly before any orbital is occupied by two electrons? a. Hund's Rule b. Electron Configuration C. Aufbau Principle d. Quantum Mechanical Theory e. Pauli Exclusion Principle f. Orbital Diagram
Chemistry: Principles and Practice
3rd Edition
ISBN:9780534420123
Author:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Publisher:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Chapter10: Molecular Structure And Bonding Theories
Section: Chapter Questions
Problem 10.21QE: Compare and contrast the molecular orbital and ionic bonding descriptions of LiF.
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Transcribed Image Text:1. Which of the following will have an electron configuration ending with 2s22p6? Choose ALL that apply.
a.
Oxide
b.
Sulfide
C. Fluoride
d.
Argon
e.
Neon
f.
Chloride
2.
What is the molecular geometry of AIBr3?
a. Bent
b. Trigonal pyramidal
d.
e.
Tetrahedral
Trigonal planar
C.
Linear
3. Which of the following relates to the phenomenon of electrons occupying orbitals at the same energy
sublevel singly before any orbital is occupied by two electrons?
a. Hund's Rule
b. Electron Configuration
C.
Aufbau Principle
d. Quantum Mechanical Theory
e.
Pauli Exclusion Principle
f.
Orbital Diagram
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