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Statement I : BCI3 exists as monomer while AICI3 exists as dimer.
Statement II : Boron atom is too small to form the stable 4-membered ring system
  • a)
    Both Statement I and Statement II are correct and Statement II is the correct explanation of Statement I
  • b)
    Both Statement I and Statement II are correct and Statement II is not the correct explanation of Statement I
  • c)
    Statement I is correct but Statement II is incorrect
  • d)
    Statement II is correct but Statement I is incorrect
Correct answer is option 'A'. Can you explain this answer?
Verified Answer
Statement I : BCI3 exists as monomer while AICI3 exists as dimer.State...

Size of B is too small to form stable 4-membered ring system. (Also delocalised n-bonding is disturbed). Hence, dimerofBCI3is not formed.
Dimer AI2CI6 is stable due to stable ring

Thus, Statements I and II both are correct and Statement II is the correct explanation of Statement 
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Most Upvoted Answer
Statement I : BCI3 exists as monomer while AICI3 exists as dimer.State...
Explanation:

Statement I: BCl3 exists as a monomer while AlCl3 exists as a dimer.
- BCl3: Boron trichloride exists as a monomer because boron is too small to form stable dimeric structures. The boron atom is electron-deficient and cannot form strong enough bonds to hold two BCl3 molecules together.
- AlCl3: Aluminum chloride exists as a dimer, Al2Cl6, due to the larger size of the aluminum atom. The larger atomic size allows for the formation of stable dimeric structures.

Statement II: Boron atom is too small to form the stable 4-membered ring system.
- The small size of the boron atom makes it difficult for boron to form stable 4-membered ring systems. The lack of electrons in the boron atom leads to weak bonding interactions, making the formation of stable ring structures challenging.
Therefore, both Statement I and Statement II are correct. The size of the boron atom plays a crucial role in its ability to form stable structures, with BCl3 existing as a monomer and unable to form stable 4-membered ring systems.
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Statement I : BCI3 exists as monomer while AICI3 exists as dimer.Statement II : Boron atom is too small to form the stable 4-membered ring systema)Both Statement I and Statement II are correct and Statement II is the correct explanation of Statement Ib)Both Statement I and Statement II are correct and Statement II is not the correct explanation of Statement Ic)Statement I is correct but Statement II is incorrectd)Statement II is correct but Statement I is incorrectCorrect answer is option 'A'. Can you explain this answer?
Question Description
Statement I : BCI3 exists as monomer while AICI3 exists as dimer.Statement II : Boron atom is too small to form the stable 4-membered ring systema)Both Statement I and Statement II are correct and Statement II is the correct explanation of Statement Ib)Both Statement I and Statement II are correct and Statement II is not the correct explanation of Statement Ic)Statement I is correct but Statement II is incorrectd)Statement II is correct but Statement I is incorrectCorrect answer is option 'A'. Can you explain this answer? for Class 11 2024 is part of Class 11 preparation. The Question and answers have been prepared according to the Class 11 exam syllabus. Information about Statement I : BCI3 exists as monomer while AICI3 exists as dimer.Statement II : Boron atom is too small to form the stable 4-membered ring systema)Both Statement I and Statement II are correct and Statement II is the correct explanation of Statement Ib)Both Statement I and Statement II are correct and Statement II is not the correct explanation of Statement Ic)Statement I is correct but Statement II is incorrectd)Statement II is correct but Statement I is incorrectCorrect answer is option 'A'. Can you explain this answer? covers all topics & solutions for Class 11 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for Statement I : BCI3 exists as monomer while AICI3 exists as dimer.Statement II : Boron atom is too small to form the stable 4-membered ring systema)Both Statement I and Statement II are correct and Statement II is the correct explanation of Statement Ib)Both Statement I and Statement II are correct and Statement II is not the correct explanation of Statement Ic)Statement I is correct but Statement II is incorrectd)Statement II is correct but Statement I is incorrectCorrect answer is option 'A'. Can you explain this answer?.
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