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Is hybridisation between the orbitals of...

Is hybridisation between the orbitals of two atoms possible?

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To determine whether hybridization between the orbitals of two atoms is possible, we can follow these steps: ### Step 1: Understand the Concept of Hybridization Hybridization is the process of mixing atomic orbitals to form new hybrid orbitals. This typically occurs within a single atom. **Hint:** Remember that hybridization involves the combination of orbitals from the same atom to create new orbitals that can accommodate bonding. ### Step 2: Identify the Conditions for Hybridization ...
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ICSE-CHEMICAL BONDING AND MOLECULAR STRUCTURE-VERY SHORT ANSWER TYPE QUESTIONS
  1. What type of orbitals can overlap to form a covalent bond?

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  2. What happens to the potential energy of the system when two atoms form...

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  3. Is hybridisation between the orbitals of two atoms possible?

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  4. What type of covalent bonds are formed during the overlapping of p...

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  5. How many sigma and pi bonds are present in CH3-CH=CH2?

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  6. How much s and p characters are present in sp^3 hybrid orbitals?

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  7. What type of hybridisation do you expect in the following molecules? ...

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  8. What type of hybridisation do you expect in the following molecules? ...

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  9. Illustrate the formation of H3O^(+)

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  10. What is a kernel and how is it formed?

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  11. Does the presence of intermolecular hydrogen bonding affect the boilin...

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  12. Why are the molecular orbitals regarded as polycentric?

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  13. Among sigma(2s) and simga(2s)^(*) molecular orbitals, which one is of...

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  14. If PsiA and PsiB are the wave functions of two combining orbitals, wha...

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  15. What is the probability of finding electrons between the nuclei of the...

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  16. For a molecule, Nb = Na, will the molecule be stable?

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  17. How is bond length related to the bond order of the molecule?

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  18. The bond order of He(2)^(+) ion is 1/2Comment on its magnetic nature.

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  19. What for does KK stand in the molecular orbital electronic configurati...

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  20. How many orbitals are singly occupied in O(2) molecule ?

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