Mass Defect and Energy Released in the Fission of \( ^{235}_{92}\text{U} \)
When a neutron collides with \( ^{235}_{92}\text{U} \), the nucleus gives \( ^{140}_{54}\text{Xe} \) and \( ^{94}_{38}\text{Sr} \) as fission products, and two neutrons are ejected. Calculate the mass defect and the energy released (in MeV) in the process.
Given:
In this fission process, the total mass before and after the reaction changes. The total mass defect \( \Delta m \) is the difference between the mass of the fission products and the initial mass.
\[ \Delta m = m(\text{Initial mass}) - m(\text{Final mass}) \]
The initial mass is the mass of the \( ^{235}_{92}\text{U} \) nucleus plus the mass of the neutron:
\[ m_{\text{initial}} = m(^{235}_{92}\text{U}) + m(^{1}_0n) \]
Substituting the given values:
\[ m_{\text{initial}} = 235.04393 + 1.00866 = 236.05259 \, \text{u} \]
The final mass is the mass of the fission products (the \( ^{140}_{54}\text{Xe} \) and \( ^{94}_{38}\text{Sr} \) nuclei) plus the mass of the two neutrons:
\[ m_{\text{final}} = m(^{140}_{54}\text{Xe}) + m(^{94}_{38}\text{Sr}) + 2 \times m(^{1}_0n) \]
Substituting the given values:
\[ m_{\text{final}} = 139.92164 + 93.91536 + 2 \times 1.00866 = 235.85432 \, \text{u} \]
Now, the mass defect is:
\[ \Delta m = 236.05259 - 235.85432 = 0.19827 \, \text{u} \]
To find the energy released, we use the equivalence \( E = \Delta m \times 931 \, \text{MeV}/c^2 \):
\[ E = 0.19827 \times 931 = 184.59 \, \text{MeV} \]
Thus, the energy released in the process is \( \boxed{184.59} \, \text{MeV} \).
Match the LIST-I with LIST-II
LIST-I (Type of decay in Radioactivity) | LIST-II (Reason for stability) | ||
---|---|---|---|
A. | Alpha decay | III. | Nucleus is mostly heavier than Pb (Z=82) |
B. | Beta negative decay | IV. | Nucleus has too many neutrons relative to the number of protons |
C. | Gamma decay | I. | Nucleus has excess energy in an excited state |
D. | Positron Emission | II. | Nucleus has too many protons relative to the number of neutrons |
Choose the correct answer from the options given below:
Given below are two statements: one is labelled as Assertion (A) and the other is labelled as Reason (R).
Assertion (A): The density of the copper ($^{64}Cu$) nucleus is greater than that of the carbon ($^{12}C$) nucleus.
Reason (R): The nucleus of mass number A has a radius proportional to $A^{1/3}$.
In the light of the above statements, choose the most appropriate answer from the options given below:
परसेवा का आनंद — 120 शब्दों में रचनात्मक लेख लिखिए:
Answer the following questions:
[(i)] Explain the structure of a mature embryo sac of a typical flowering plant.
[(ii)] How is triple fusion achieved in these plants?
OR
[(i)] Describe the changes in the ovary and the uterus as induced by the changes in the level of pituitary and ovarian hormones during menstrual cycle in a human female.