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Passage I
An aromatic hydrocarbon P has molecular formula C9H12. P on treatment with alkaline KMnO4 in boiling condition followed by hydrolysis gives polar C8H6O4 . Also, P on treatment with CI2/AICI3 gives only two isomers Q and R as major products with their molecular formula C9H11CI
 
Q. If all the monochloro isomers of P are considered, how many of them are possible?
  • a)
    4
  • b)
    6
  • c)
    7
  • d)
    8
Correct answer is option 'D'. Can you explain this answer?
Most Upvoted Answer
Passage IAn aromatic hydrocarbon P has molecular formula C9H12. P on t...
- **Monochloro Isomers of P**
- **Total number of possible isomers:**
- For a molecule with formula C9H11Cl, there are 8 possible positions where the chlorine atom can substitute a hydrogen atom, one on each carbon atom.
- Each substitution can lead to a unique monochloro isomer.
- **Calculation:**
- For each carbon atom in the molecule, there are 3 different types of hydrogen atoms (primary, secondary, tertiary).
- So, each substitution can lead to 3 different isomers.
- Since there are 8 carbon atoms in C9H11Cl, the total number of possible monochloro isomers is 3^8 = 6561.
- **Conclusion:**
- Considering all the monochloro isomers of P, there are 6561 possible isomers.
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Passage IAn aromatic hydrocarbon P has molecular formula C9H12. P on t...
7???
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Consider a solution of CH3COONH4 which is a salt of weak acid weak base. Theequilibrium involved in the solutions are :If we add these three reactions, then the net reaction isBoth CH3C00- and NH4 get hydrolysed independently and their hydrolysis depends on(i) their initial concentration(ii) the value of Kh which is Since both of the ions were produced from the same salt, their initial concentrations are same . Therefore unless untial the value of Kw/Kaand Kb is same, the degree of hydrolysis of ion cant be same.To explain why we assume that degree of hydrolysis of cation and anion is same, we need to now look at the third reaction i.e., combination of H+ and OH ions. It is obvious that this reaction happens only because one reaction produced H+ ion and the other produced OH ions. We can also note that this reaction causes both the hydrolysis reaction to occur more since their product ions are being consumed. Keep this thing in mind that the equilibrium which has smaller value of equilibrium conxtant is affected more by the common ion effect. For the same reason if for any reason a reaction is made to occur to a greater extent by the consumption of any one of the product ion, the reaction with the smaller value of equilibrium constant tends to get affected more.Therefore we conclude that firstly the hydrolysis of both the ions ocurs more in the presence of each other (due to consumption of the product ions) than in each other is absence. Secondly the hydrolysis of the ion which occurs to a lesser extent (due to smaller value of Kh) is affected more than the one whose Kh is greater. Hence we can see that the degree of hydrolysis of both the ions would be close to each other when they are getting hydrolysed in the presence of each other.Q.In a solution of NaHCO3 , the amphiprotic anion can under ionization to form H+ ion and hydrolysis to from OH ion.To calculat PH, suitable approximation is

Passage IAn aromatic hydrocarbon P has molecular formula C9H12. P on treatment with alkaline KMnO4 in boiling condition followed by hydrolysis gives polar C8H6O4 . Also, P on treatment with CI2/AICI3 gives only two isomers Q and R as major products with their molecular formula C9H11CIQ.If all the monochloro isomers of P are considered, how many of them are possible?a)4b)6c)7d)8Correct answer is option 'D'. Can you explain this answer?
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Passage IAn aromatic hydrocarbon P has molecular formula C9H12. P on treatment with alkaline KMnO4 in boiling condition followed by hydrolysis gives polar C8H6O4 . Also, P on treatment with CI2/AICI3 gives only two isomers Q and R as major products with their molecular formula C9H11CIQ.If all the monochloro isomers of P are considered, how many of them are possible?a)4b)6c)7d)8Correct answer is option 'D'. Can you explain this answer? for JEE 2024 is part of JEE preparation. The Question and answers have been prepared according to the JEE exam syllabus. Information about Passage IAn aromatic hydrocarbon P has molecular formula C9H12. P on treatment with alkaline KMnO4 in boiling condition followed by hydrolysis gives polar C8H6O4 . Also, P on treatment with CI2/AICI3 gives only two isomers Q and R as major products with their molecular formula C9H11CIQ.If all the monochloro isomers of P are considered, how many of them are possible?a)4b)6c)7d)8Correct answer is option 'D'. Can you explain this answer? covers all topics & solutions for JEE 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for Passage IAn aromatic hydrocarbon P has molecular formula C9H12. P on treatment with alkaline KMnO4 in boiling condition followed by hydrolysis gives polar C8H6O4 . Also, P on treatment with CI2/AICI3 gives only two isomers Q and R as major products with their molecular formula C9H11CIQ.If all the monochloro isomers of P are considered, how many of them are possible?a)4b)6c)7d)8Correct answer is option 'D'. Can you explain this answer?.
Solutions for Passage IAn aromatic hydrocarbon P has molecular formula C9H12. P on treatment with alkaline KMnO4 in boiling condition followed by hydrolysis gives polar C8H6O4 . Also, P on treatment with CI2/AICI3 gives only two isomers Q and R as major products with their molecular formula C9H11CIQ.If all the monochloro isomers of P are considered, how many of them are possible?a)4b)6c)7d)8Correct answer is option 'D'. Can you explain this answer? in English & in Hindi are available as part of our courses for JEE. Download more important topics, notes, lectures and mock test series for JEE Exam by signing up for free.
Here you can find the meaning of Passage IAn aromatic hydrocarbon P has molecular formula C9H12. P on treatment with alkaline KMnO4 in boiling condition followed by hydrolysis gives polar C8H6O4 . Also, P on treatment with CI2/AICI3 gives only two isomers Q and R as major products with their molecular formula C9H11CIQ.If all the monochloro isomers of P are considered, how many of them are possible?a)4b)6c)7d)8Correct answer is option 'D'. Can you explain this answer? defined & explained in the simplest way possible. Besides giving the explanation of Passage IAn aromatic hydrocarbon P has molecular formula C9H12. P on treatment with alkaline KMnO4 in boiling condition followed by hydrolysis gives polar C8H6O4 . Also, P on treatment with CI2/AICI3 gives only two isomers Q and R as major products with their molecular formula C9H11CIQ.If all the monochloro isomers of P are considered, how many of them are possible?a)4b)6c)7d)8Correct answer is option 'D'. Can you explain this answer?, a detailed solution for Passage IAn aromatic hydrocarbon P has molecular formula C9H12. P on treatment with alkaline KMnO4 in boiling condition followed by hydrolysis gives polar C8H6O4 . Also, P on treatment with CI2/AICI3 gives only two isomers Q and R as major products with their molecular formula C9H11CIQ.If all the monochloro isomers of P are considered, how many of them are possible?a)4b)6c)7d)8Correct answer is option 'D'. Can you explain this answer? has been provided alongside types of Passage IAn aromatic hydrocarbon P has molecular formula C9H12. P on treatment with alkaline KMnO4 in boiling condition followed by hydrolysis gives polar C8H6O4 . Also, P on treatment with CI2/AICI3 gives only two isomers Q and R as major products with their molecular formula C9H11CIQ.If all the monochloro isomers of P are considered, how many of them are possible?a)4b)6c)7d)8Correct answer is option 'D'. Can you explain this answer? theory, EduRev gives you an ample number of questions to practice Passage IAn aromatic hydrocarbon P has molecular formula C9H12. P on treatment with alkaline KMnO4 in boiling condition followed by hydrolysis gives polar C8H6O4 . Also, P on treatment with CI2/AICI3 gives only two isomers Q and R as major products with their molecular formula C9H11CIQ.If all the monochloro isomers of P are considered, how many of them are possible?a)4b)6c)7d)8Correct answer is option 'D'. Can you explain this answer? tests, examples and also practice JEE tests.
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