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Write the molecular orbital configuratio...

Write the molecular orbital configuration of a molecule having bond order of three.

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To write the molecular orbital configuration of a molecule with a bond order of three, we can take nitrogen (N₂) as an example since it has a bond order of 3. Here’s the step-by-step solution: ### Step 1: Determine the total number of electrons Each nitrogen atom has 7 electrons. Therefore, for two nitrogen atoms: \[ \text{Total electrons} = 7 \times 2 = 14 \text{ electrons} \] ...
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Molecular orbital theory as developed by Hund and Mulliken concerns with the formation of molecular orbitals formed by linear combination of atomic orbitals. The electrons are present in these molecular orbitals. The molecular orbitals are filled. The molecular orbital configuration helps us to calculate bond order which gives information about the number of bonds present between atoms. The bond order is related to bond length and bond strength. Which one of the following does not have single electron in a bonding molecular orbital?

Molecular orbital theory as developed by Hund and Mulliken concerns with the formation of molecular orbitals formed by linear combination of atomic orbitals. The electrons are present in these molecular orbitals. The molecular orbitals are filled. The molecular orbital configuration helps us to calculate bond order which gives information about the number of bonds present between atoms. The bond order is related to bond length and bond strength. Which of the following is expected to have largest bond length?

Molecular orbital theory as developed by Hund and Mulliken concerns with the formation of molecular orbitals formed by linear combination of atomic orbitals. The electrons are present in these molecular orbitals. The molecular orbitals are filled. The molecular orbital configuration helps us to calculate bond order which gives information about the number of bonds present between atoms. The bond order is related to bond length and bond strength. Which of the following will have maximum number of electrons in antibonding MOs?

Molecular orbital theory as developed by Hund and Mulliken concerns with the formation of molecular orbitals formed by linear combination of atomic orbitals. The electrons are present in these molecular orbitals. The molecular orbitals are filled. The molecular orbital configuration helps us to calculate bond order which gives information about the number of bonds present between atoms. The bond order is related to bond length and bond strength. Which of the following combination does ot give sigma MO (assume Z - axis as internuclear axis)

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Write the molecular orbital electronic configuration of peroxide and super oxide ions. Which out of these has higher bond order and why ?

MODERN PUBLICATION-CHEMICAL BONDING AND MOLECULAR STRUCTURE-Revision Exercises (Objective Questions)(Very Short Answer Questions)
  1. How is paramagnetic character of a compound related to the number of u...

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  2. Which out of H(2)^(-) and H(2)^(+) is more stable and why?

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  3. Which d - orbitals are involved in sp^(3)d^(2) hybridisation in SF(6)?

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  4. Write the molecular orbital configuration of a molecule having bond or...

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  5. Which out of O(2)^(+) and O(2)^(-) is more stable?

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  6. Arrange the following molecular species in order of increasing stabili...

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  7. What is the shape of SF(6) molecule?

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  8. Give one example of a molecule involving sp^(3)d^(2) hybridisation.

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  9. Although chlorine has the same electronegativity as nitrogen, it does ...

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  10. Why does formic acid exist as dimer?

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  11. KHF(2) exists while KHCl(2) does not. Explain.

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  12. State the type of hybrid orbitals associated with (i) P in PCl(5) and ...

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  13. Which out of O(2)^(-)and O(2)^(2-) has higher bond order and why ?

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  14. What is the effect of the following ionization processes on the bond o...

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  15. What is the effect on the interatomic bond length of the following ion...

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  16. Which one of the following has higher bond order? N(2), N(2)^(+) or ...

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  17. Draw a diagram showing the formation of bonding and anti - bonding mol...

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  18. Out of water and ice which has lesser density?

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  19. Do N(2)^(+) and O(2)^(+) have same bond order?

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  20. Define the bond length.

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