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The enthalpy of atomisation of CH4 and C2H6 are 360 and 620 kcal mol–1 respectively. The C – C bond energy is expected to be
  • a)
    210 kcal mol–1
  • b)
    130 kcal mol–1
  • c)
    180 kcal mol–1
  • d)
    80 kcal mol–1
Correct answer is option 'D'. Can you explain this answer?
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The enthalpy of atomisation of CH4 and C2H6 are 360 and 620 kcal mol&n...
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The enthalpy of atomisation of CH4 and C2H6 are 360 and 620 kcal mol&n...
The enthalpy of atomization of a substance is the energy required to break one mole of a compound into its individual atoms in the gas phase.

The enthalpy of atomization of CH4 (methane) is 360 kcal/mol, which means that it takes 360 kcal of energy to break one mole of methane into its constituent atoms in the gas phase.

The enthalpy of atomization of C2H6 (ethane) is 620 kcal/mol, which means that it takes 620 kcal of energy to break one mole of ethane into its constituent atoms in the gas phase.
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The enthalpy of atomisation of CH4 and C2H6 are 360 and 620 kcal mol–1 respectively. The C – C bond energy is expected to bea)210 kcal mol–1b)130 kcal mol–1c)180 kcal mol–1d)80 kcal mol–1Correct answer is option 'D'. Can you explain this answer?
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The enthalpy of atomisation of CH4 and C2H6 are 360 and 620 kcal mol–1 respectively. The C – C bond energy is expected to bea)210 kcal mol–1b)130 kcal mol–1c)180 kcal mol–1d)80 kcal mol–1Correct answer is option 'D'. Can you explain this answer? for Class 12 2024 is part of Class 12 preparation. The Question and answers have been prepared according to the Class 12 exam syllabus. Information about The enthalpy of atomisation of CH4 and C2H6 are 360 and 620 kcal mol–1 respectively. The C – C bond energy is expected to bea)210 kcal mol–1b)130 kcal mol–1c)180 kcal mol–1d)80 kcal mol–1Correct answer is option 'D'. Can you explain this answer? covers all topics & solutions for Class 12 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for The enthalpy of atomisation of CH4 and C2H6 are 360 and 620 kcal mol–1 respectively. The C – C bond energy is expected to bea)210 kcal mol–1b)130 kcal mol–1c)180 kcal mol–1d)80 kcal mol–1Correct answer is option 'D'. Can you explain this answer?.
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