?
Categories
Account

Molecular Orbital Theory

Download Q&A
Q. What is the molecular orbital configuration of F2?
  • A. (σ1s)²(σ*1s)²(σ2s)²(σ*2s)²(σ2p)²(π2p)⁴(π*2p)²
  • B. (σ1s)²(σ*1s)²(σ2s)²(σ*2s)²(σ2p)²(π2p)⁴
  • C. (σ1s)²(σ*1s)²(σ2s)²(σ*2s)²(π2p)⁴(π*2p)²
  • D. (σ1s)²(σ*1s)²(σ2s)²(σ*2s)²(σ2p)²(π2p)³(π*2p)²
Q. What is the molecular orbital configuration of O2?
  • A. (σ1s)²(σ*1s)²(σ2s)²(σ*2s)²(σ2p)²(π2p)²(π*2p)¹
  • B. (σ1s)²(σ*1s)²(σ2s)²(σ*2s)²(σ2p)²(π2p)²(π*2p)²
  • C. (σ1s)²(σ*1s)²(σ2s)²(σ*2s)²(σ2p)²(π2p)³
  • D. (σ1s)²(σ*1s)²(σ2s)²(σ*2s)²(σ2p)²(π2p)²(π*2p)⁴
Q. What is the molecular orbital configuration of the F2 molecule?
  • A. (σ1s)²(σ*1s)²(σ2s)²(σ*2s)²(σ2p)²(π2p)⁴(π*2p)²
  • B. (σ1s)²(σ*1s)²(σ2s)²(σ*2s)²(σ2p)²(π2p)⁴(π*2p)⁴
  • C. (σ1s)²(σ*1s)²(σ2s)²(σ*2s)²(σ2p)²(π2p)⁴(π*2p)¹
  • D. (σ1s)²(σ*1s)²(σ2s)²(σ*2s)²(σ2p)²(π2p)³(π*2p)²
Q. What is the molecular orbital configuration of the O2 molecule?
  • A. (σ1s)²(σ*1s)²(σ2s)²(σ*2s)²(σ2p)²(π2p)²(π*2p)¹
  • B. (σ1s)²(σ*1s)²(σ2s)²(σ*2s)²(σ2p)²(π2p)²(π*2p)²
  • C. (σ1s)²(σ*1s)²(σ2s)²(σ*2s)²(σ2p)²(π2p)¹(π*2p)¹
  • D. (σ1s)²(σ*1s)²(σ2s)²(σ*2s)²(σ2p)²(π2p)¹(π*2p)²
Q. What is the shape of the molecular orbital in the case of a π bond?
  • A. Spherical
  • B. Dumbbell
  • C. Linear
  • D. Planar
Q. What is the shape of the molecular orbital in the highest occupied molecular orbital (HOMO) of benzene?
  • A. Linear
  • B. Trigonal planar
  • C. Tetrahedral
  • D. Cyclic
Q. What is the shape of the molecular orbital of the highest energy in O2?
  • A. spherical
  • B. dumbbell
  • C. double dumbbell
  • D. linear
Q. What is the shape of the molecular orbital of the highest energy in the O2 molecule?
  • A. Linear
  • B. Bent
  • C. Planar
  • D. Diatomic
Q. Which of the following diatomic molecules has a bond order of 1?
  • A. N2
  • B. O2
  • C. H2
  • D. F2
Q. Which of the following diatomic molecules has the highest bond order?
  • A. N2
  • B. O2
  • C. F2
  • D. He2
Q. Which of the following has a bond angle of approximately 120 degrees?
  • A. H2O
  • B. NH3
  • C. BF3
  • D. CH4
Q. Which of the following has a bond order of 0?
  • A. He2
  • B. H2
  • C. N2
  • D. O2
Q. Which of the following has a bond order of 1?
  • A. N2
  • B. O2
  • C. H2
  • D. F2
Q. Which of the following has the highest bond order?
  • A. N2
  • B. O2
  • C. F2
  • D. C2
Q. Which of the following has the lowest bond energy?
  • A. N2
  • B. O2
  • C. F2
  • D. Cl2
Q. Which of the following has the lowest bond order?
  • A. O2
  • B. F2
  • C. N2
  • D. He2
Q. Which of the following molecular orbitals is filled first according to the Aufbau principle?
  • A. σ1s
  • B. σ*1s
  • C. π2p
  • D. σ2p
Q. Which of the following molecular orbitals is lower in energy than the 2p atomic orbitals?
  • A. σ2s
  • B. σ*2s
  • C. π2p
  • D. σ2p
Q. Which of the following molecules has a bond order of 1?
  • A. H2
  • B. He2
  • C. Li2
  • D. B2
Q. Which of the following molecules has a bond order of 2?
  • A. O2
  • B. N2
  • C. C2
  • D. F2
Q. Which of the following molecules has a higher bond order than N2?
  • A. O2
  • B. C2
  • C. B2
  • D. F2
Q. Which of the following molecules has a higher bond order: N2 or O2?
  • A. N2
  • B. O2
  • C. Both are equal
  • D. Cannot be determined
Q. Which of the following molecules has a triple bond?
  • A. N2
  • B. O2
  • C. H2
  • D. F2
Q. Which of the following molecules has the highest bond order?
  • A. N2
  • B. O2
  • C. F2
  • D. C2
Q. Which of the following molecules is diamagnetic?
  • A. O2
  • B. N2
  • C. F2
  • D. NO
Q. Which of the following molecules is isoelectronic with N2?
  • A. O2
  • B. C2
  • C. F2
  • D. Ne
Q. Which of the following molecules is isoelectronic with Ne?
  • A. O2
  • B. F2
  • C. N2
  • D. C2
Q. Which of the following molecules is predicted to be stable according to molecular orbital theory?
  • A. He2
  • B. Li2
  • C. Be2
  • D. B2
Q. Which of the following pairs of atoms will form a bond with the highest bond order?
  • A. C and O
  • B. N and O
  • C. C and N
  • D. O and O
Q. Which of the following pairs of atoms will form a stable diatomic molecule according to molecular orbital theory?
  • A. N and O
  • B. O and F
  • C. C and N
  • D. B and O
Showing 31 to 60 of 73 (3 Pages)

Molecular Orbital Theory MCQ & Objective Questions

Molecular Orbital Theory is a crucial topic in chemistry that helps students understand the behavior of electrons in molecules. Mastering this theory is essential for scoring well in exams, as it frequently appears in various formats, including MCQs and objective questions. Practicing Molecular Orbital Theory MCQ questions not only enhances conceptual clarity but also boosts confidence in tackling important questions during exam preparation.

What You Will Practise Here

  • Fundamentals of Molecular Orbital Theory
  • Key concepts of bonding and antibonding orbitals
  • Electron configuration in diatomic molecules
  • Energy level diagrams and their significance
  • Paramagnetism and diamagnetism in molecules
  • Hybridization and its relation to Molecular Orbital Theory
  • Important Molecular Orbital Theory questions for exams

Exam Relevance

Molecular Orbital Theory is a significant part of the syllabus for CBSE, State Boards, NEET, and JEE. Students can expect questions that require them to analyze molecular structures, predict magnetic properties, and interpret energy diagrams. Common question patterns include direct MCQs, assertion-reason type questions, and numerical problems related to electron configurations.

Common Mistakes Students Make

  • Confusing bonding and antibonding orbitals and their energy levels.
  • Misunderstanding the concept of hybridization and its application in molecular geometry.
  • Overlooking the significance of electron spin in determining magnetic properties.
  • Failing to accurately draw and interpret energy level diagrams.

FAQs

Question: What is the significance of Molecular Orbital Theory in chemistry?
Answer: Molecular Orbital Theory provides a deeper understanding of molecular structure and bonding, which is essential for predicting chemical behavior.

Question: How can I effectively prepare for Molecular Orbital Theory questions in exams?
Answer: Regular practice of MCQs and objective questions will help reinforce your understanding and improve your problem-solving skills.

Don't miss the opportunity to enhance your knowledge! Start solving practice MCQs on Molecular Orbital Theory today and test your understanding to excel in your exams.

Soulshift Feedback ×

On a scale of 0–10, how likely are you to recommend The Soulshift Academy?

Not likely Very likely
Home Practice Performance eBooks