NEET · Chemistry —

p-Block Elements appeared 2 times across 1 year — 4.4% of Chemistry. This question is from Properties of Group 14 and 16 Elements.

Year 2024 Total
Questions 2 2

Identify the incorrect statement from the following:

Solution & Explanation

Related Formula
Oxidation states of Oxygen: O₂ (0), OF₂ (+2), O₂F₂ (+1), H₂O₂ (-1), H₂O (-2)
Core Logic

Statement (3) is incorrect because oxygen exhibits oxidation states of 0 in O₂, +2 in OF₂, +1 in O₂F₂, and -1 in peroxides.

Step 1: Conclusion

Incorrect statement is (3).

Pattern Recognition

Oxygen shows positive oxidation states with fluoride (OF₂, O₂F₂) and -1 state in peroxides.

Chapter Mix

Class 11 Chemistry: p-Block Elements

Reference Study Guides

More p-Block Elements Previous-Year Questions

Q67 neet_2024_05_may_morning Chemical Bonding and Bonding Capabilities in Group 15
Identify the incorrect statement from the following:
  • A. (1) P(C₂H₅)₃ and As(C₆H₅)₃ form dπ-dπ bond with transition metals.
  • B. (2) Nitrogen can form dπ-pπ bond with oxygen.
  • C. (3) Nitrogen can form pπ-pπ multiple bonds with itself.
  • D. (4) Phosphorus, arsenic and antimony show catenation property.

Solution

Related Formula
Nitrogen electronic configuration: 1s² 2s² 2p³ (No vacant d-orbitals)
Core Logic

Nitrogen lacks vacant d-orbitals in its valence shell (n=2). Therefore, it cannot form dπ-pπ or dπ-dπ bonds. Statement (2) is incorrect.

Step 1: Conclusion

Incorrect statement is (2).

Pattern Recognition

Second period elements (N, O, F) cannot form dπ bonds due to non-availability of d orbitals.

Chapter Mix

Class 12 Chemistry: p-Block Elements

More p-Block Elements Questions — neet_2024_05_may_morning

Practice all p-Block Elements previous-year questions →

Rankbit System
JEE Physics: Waves (+15.5%) | Electrostatics: Concentric Shells (-29.7%) | Modern Physics: Photoelectric Clones (+34.2%) | Mathematics: Definite Integrals (+18.1%) | Chemistry: Coordination Splitting (-11.4%) | JEE Physics: Waves (+15.5%) | Electrostatics: Concentric Shells (-29.7%) | Modern Physics: Photoelectric Clones (+34.2%) | Mathematics: Definite Integrals (+18.1%) | Chemistry: Coordination Splitting (-11.4%)