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Nuclear Physics 1 By Ibrahima Sakho

  • Publisher: PHYSICS
  • Availability: In Stock
  • SKU: 49510
  • Number of Pages: 356

Rs.620.00

Rs.995.00

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Nuclear physics delves into the intricate mechanisms that govern atomic nuclei, focusing on nuclear deexcitations and spontaneous nuclear reactions. These processes are central to understanding how nuclei release energy and how natural nuclear reactions occur without external triggers. In this context, the work by Ibrahima Sakho provides a detailed examination of the phenomena involved, offering insights into the dynamics of nuclear states, energy transitions, and the spontaneous transformations that occur in nuclei under specific conditions.

Key Points

1. Nuclear Deexcitations
Nuclear deexcitations occur when an excited nucleus releases energy and transitions to a lower energy state. This process is often accompanied by the emission of gamma rays or particles, playing a crucial role in the stability of atomic nuclei.

2. Excited Nuclear States
Nuclei can exist in excited states after absorbing energy or undergoing certain reactions. These states are temporary, and the nucleus eventually returns to a more stable configuration through deexcitation.

3. Gamma Ray Emission
One of the primary modes of deexcitation is the emission of gamma rays, which are high-energy photons. This emission allows the nucleus to shed excess energy and reach a lower energy state.

4. Internal Conversion
In some cases, rather than emitting a gamma ray, the nucleus transfers energy directly to one of its electrons, which is then ejected from the atom. This process is known as internal conversion.

5. Spontaneous Nuclear Reactions
Spontaneous nuclear reactions occur without any external influence, driven purely by the inherent properties and instabilities of the nucleus. These reactions include phenomena such as radioactive decay and fission.

6. Radioactive Decay
Radioactive decay is a spontaneous process where an unstable nucleus transforms into a more stable one, releasing energy in the form of particles or electromagnetic radiation.

7. Nuclear Fission
Nuclear fission is a type of spontaneous nuclear reaction where a heavy nucleus splits into two smaller nuclei, accompanied by a significant release of energy. This process is fundamental to both natural and artificial nuclear reactions.

8. Spontaneous Emission of Alpha Particles
Some heavy nuclei undergo spontaneous emission of alpha particles, leading to a reduction in atomic mass and the formation of a new element.

9. Beta Decay
Beta decay is another form of spontaneous nuclear reaction where a neutron is transformed into a proton with the emission of an electron (beta particle) and an antineutrino.

10. Nuclear Stability
The stability of a nucleus is determined by the balance between nuclear forces and the repulsive electromagnetic force between protons. Instabilities lead to spontaneous reactions as the nucleus seeks a more stable state.

Understanding nuclear deexcitations and spontaneous nuclear reactions is vital for both theoretical and practical applications in nuclear physics. These processes not only explain the behavior of atomic nuclei but also have significant implications for energy production, medical imaging, and our understanding of the universe's fundamental forces.

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Writer                 ✤            Ibrahima Sakho

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