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The relative intensity of signals in proton NMR is related to
  • a)
    Chemical shift and magnetic environment of proton
  • b)
    Different number of protons
  • c)
    Number of adjacent atoms containing number of protons
  • d)
    Total number of protons present in the molecule
  • e)
    Coupling constant
Correct answer is option 'D'. Can you explain this answer?
Most Upvoted Answer
The relative intensity of signals in proton NMR is related toa)Chemica...
The intensity of signals in proton NMR is directly proportional to the total number of protons present in the molecule. The number of signals corresponds to the different types of protons present in the molecule. The position of signals reflects the chemical shift and the magnetic environment experienced by the protons. The splitting of signals indicates the presence of adjacent atoms that have a different number of protons.
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The relative intensity of signals in proton NMR is related toa)Chemical shift and magnetic environment of protonb)Different number of protonsc)Number of adjacent atoms containing number of protonsd)Total number of protons present in the moleculee)Coupling constantCorrect answer is option 'D'. Can you explain this answer? for MCAT 2025 is part of MCAT preparation. The Question and answers have been prepared according to the MCAT exam syllabus. Information about The relative intensity of signals in proton NMR is related toa)Chemical shift and magnetic environment of protonb)Different number of protonsc)Number of adjacent atoms containing number of protonsd)Total number of protons present in the moleculee)Coupling constantCorrect answer is option 'D'. Can you explain this answer? covers all topics & solutions for MCAT 2025 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for The relative intensity of signals in proton NMR is related toa)Chemical shift and magnetic environment of protonb)Different number of protonsc)Number of adjacent atoms containing number of protonsd)Total number of protons present in the moleculee)Coupling constantCorrect answer is option 'D'. Can you explain this answer?.
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