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Arrange the bonds in order of increasing...

Arrange the bonds in order of increasing ionic character in the molecules: LiF, `K_(2)O, N_(2), SO_(2) " and " ClF_(3)`.

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To arrange the bonds in order of increasing ionic character for the molecules LiF, K2O, N2, SO2, and ClF3, we will follow these steps: ### Step 1: Understand Ionic Character Ionic character in a bond is determined by the difference in electronegativity between the two atoms involved in the bond. The greater the difference, the more ionic the bond is. ### Step 2: Identify the Electronegativity Values - **Fluorine (F)**: 4.0 (highest) - **Oxygen (O)**: 3.5 ...
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NCERT-CHEMICAL BONDING AND MOLECULAR STRUCTURE-EXERCISE
  1. Define electronegativity. How does it differ from electron gain enthal...

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  2. Explain with the help of suitable example polar covalent bond.

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  3. Arrange the bonds in order of increasing ionic character in the molecu...

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  4. The skeletal structure of CH(3)COOH as shown below is correct, but som...

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  5. Apart from tetrahedral geometry, another possible geometry for CH(4) i...

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  6. Explain why BeH(2) molecule has a zero dipole moment although the Be-H...

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  7. Out of NH(3) and NF(3) which has a higher Dipole moment?

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  8. What is meant by hybridisation of atomic orbitals? Describe the shape ...

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  9. Describe the change in hybridization (if any) of the Al atom in the fo...

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  10. Is there any change in hybridisation of the B and N atom as a result o...

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  11. Draw diagrams showing the formation of a double bond and a triple bond...

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  12. What is the total number of sigma and pi bonds in the following molecu...

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  13. Considering X axis as the inter nuclear axis, which out of the followi...

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  14. Which hybrid orbitals are used by carbon atoms in the following molecu...

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  15. What do you understand by bond pairs and lone pairs of electrons? Illu...

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  16. Distinguish between a sigma and a pi bond.

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  17. Explain the formation of H(2) molecule on the basis of valence bond th...

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  18. Write the important conditions required for the linear combination of ...

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  19. Use molecular orbital theory to explain why the Be(2) molecules do not...

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  20. Compare the relative stability of the following species and indicate t...

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