A radioactive nucleus X decays to a stable nucleus Y. Then, the graph of the rate of formation R of Y against time will be:

1.         2.  

3.         4.  

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A radioactive sample has a half-life of 30 minutes. At 3 PM, its decay rate was measured as 120,000 counts/s. What will be the decay rate at 5 PM?

1.  120,000 counts/second

2.  60,000 counts/second

3.  30,000 counts/second

4.  7,500 counts/second

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Consider the following nuclear reactions:

I.714N+24He817O+X
II.49Be+24H612He+Y

Then :

1.  X and Y are both protons.

2.  X and Y are both neutrons.

3.  X is a proton and Y is a neutron

4.  X is a neutron and Y is a proton

Subtopic:  Nuclear Energy |
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A nucleus of lead Pb82214 emits two-electron followed by an alpha particle. The resulting nucleus will have:

1.  82 protons and 128 neutrons

2.  80 protons and 130 neutrons

3.  82 protons and 130 neutrons

4.  78 protons and 134 neutrons

Subtopic:  Types of Decay |
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Consider the following statements:

(I) All isotopes of elements have the same number of neutrons.

(II) Only one isotope of an element can be stable and non-radioactive.

(Ill) All elements have isotopes.

(IV) All isotopes of Carbon can form chemical compounds with Oxygen-16.

The correct option regarding an isotope is-

1.  III and IV only

2.  II, III, and IV only

3.  I, II, and III only

4.  I, III, and IV only

Subtopic:  Nuclear Energy |
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The beta particles of a radioactive metal originate from:

1.  The free electrons in the metal

2.  The orbiting electrons of the metal atoms

3.  The photons released from the nucleus

4.  The nucleus of the metal atoms

Subtopic:  Nuclear Energy |
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The isotope Cobalt-57 has a half-life of 272 days. How long does it take for this isotope to decay to about one-sixteenth of its original amount?

1.  544 days

2.  1088 days

3.  1128 days

4.  2176 days

 

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Which particle (X) is emitted in this nuclear reaction?

23490Th91234Pa+X

1.  positron

2.  electron

3.  antineutrino

4.  alpha particle

Subtopic:  Nuclear Energy |
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What is the binding energy of the argon-40 isotope in Mev?
Given: mproton=1.0073 amu, mneutron=1.0087 amu, mAr-40 nucleus=39.9132 amu and c2=932MeVamu

1.  0.4096 MeV

2.  40.3228 MeV

3.  381.7 MeV

4.  643.8 MeV

Subtopic:  Nuclear Binding Energy |
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Which of the following correctly identifies the following process?

   G3167a+e-Z3067n

1.  β- decay

2.  β+ decay

3.  e- capture

4.  y decay

Subtopic:  Types of Decay |
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