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Nuclear Structure Self-Assessment Quiz

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MOOC Nuclear Structure self-assessment

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Nuclear Structure Self-Assessment Quiz
 

Nuclear Structure Self-Assessment QuizOnline version

MOOC Nuclear Structure self-assessment

by manjula sharma
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1. Who discovered the atomic nucleus?

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2. Rutherford's gold foil experiment used which particles?

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3. The accepted model of the atomic nucleus consists of

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4. The neutron was discovered by

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5. Nuclear radius is proportional to

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6. The SI unit commonly used for nuclear radius is

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7. A positive quadrupole moment indicates

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8. Mass defect is responsible for

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9. Binding energy is calculated using

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10. Which nucleus has the highest binding energy per nucleon?

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11. Heavy nuclei release energy mainly through

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12. Stable heavy nuclei generally have an N/Z ratio close to

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13. Which of the following is a magic number?

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14. The particles obeying Fermi-Dirac statistics are called

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15. Nuclear charge depends upon

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16. Most of the atom is empty space.

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17. Electrons are permanent constituents of the nucleus.

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18. Nuclear density is nearly constant for all nuclei.

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19. Iron-56 is among the most stable nuclei.

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20. Binding energy per nucleon decreases for very heavy nuclei.

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21. The neutron was discovered by __________.

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22. The unit of nuclear radius is __________.

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23. The missing mass in a nucleus is called __________.

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24. The energy required to separate all nucleons is called __________.

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25. Stable nuclei lie within the __________ of stability.

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26. Explain Rutherford's Gold Foil Experiment and its conclusions.

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27. Why was the proton-electron theory abandoned?

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28. Define mass defect and explain its significance.

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29. What is binding energy per nucleon? Why is it important?

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30. Explain the concept of the belt of stability.

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31. Explain how the binding energy curve accounts for both nuclear fusion and nuclear fission.

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32. Discuss the factors responsible for nuclear stability.

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33. Differentiate between proton-electron theory and proton-neutron theory.

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34. Explain the significance of magic numbers in nuclear physics.

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35. Why are medium-mass nuclei generally more stable than very light or very heavy nuclei?

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