To solve this question, we need to understand how the mass density of a nucleus relates to its mass number \( A \) and its radius \( R \).
The mass density \( \rho \) of a nucleus is given by the formula:
\(\rho = \frac{\text{mass of nucleus}}{\text{volume of nucleus}}\)
We know that the mass of a nucleus is approximately proportional to its mass number \( A \), because the mass number represents the sum of protons and neutrons, which have nearly equal mass.
The volume \( V \) of a spherical nucleus is calculated using the formula:
\(V = \frac{4}{3} \pi R^3\)
For a nucleus, it is empirically found that the radius \( R \) is related to the mass number \( A \) by the equation:
\(R = R_0 A^{1/3}\)
where \( R_0 \) is a constant. Thus, the volume \( V \) can be expressed as:
\(V = \frac{4}{3} \pi (R_0 A^{1/3})^3 = \frac{4}{3} \pi R_0^3 A\)
Substituting this into the formula for density, we get:
\(\rho = \frac{A}{\frac{4}{3} \pi R_0^3 A}\)
Upon simplification, it becomes:
\(\rho = \frac{1}{\frac{4}{3} \pi R_0^3}\)
From this expression, we can see that the density \( \rho \) is independent of \( A \) since the \( A \) terms cancel each other out.
Therefore, the correct answer is:
Independent of \( A \)
Given below are two statements. One is labelled as Assertion (A) and the other is labelled as Reason (R).
 Assertion (A): The binding energy per nucleon is found to be practically independent of the atomic number \( A \), for nuclei with mass numbers between 30 and 170. 
Reason (R): Nuclear force is long range. 
In the light of the above statements, choose the correct answer from the options given below:
Match the LIST-I with LIST-II
\[ \begin{array}{|l|l|} \hline \text{LIST-I} & \text{LIST-II} \\ \hline A. \ ^{236}_{92} U \rightarrow ^{94}_{38} Sr + ^{140}_{54} Xe + 2n & \text{I. Chemical Reaction} \\ \hline B. \ 2H_2 + O_2 \rightarrow 2H_2O & \text{II. Fusion with +ve Q value} \\ \hline C. \ ^3_1 H + ^2_1 H \rightarrow ^4_2 He + n & \text{III. Fission} \\ \hline D. \ ^1_1 H + ^3_1 H \rightarrow ^4_2 H + \gamma & \text{IV. Fusion with -ve Q value} \\ \hline \end{array} \]
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:
Choose the correct nuclear process from the below options:
\( [ p : \text{proton}, n : \text{neutron}, e^- : \text{electron}, e^+ : \text{positron}, \nu : \text{neutrino}, \bar{\nu} : \text{antineutrino} ] \)
Given below are two statements:
Statement (I):
 
 are isomeric compounds. 
Statement (II): 
 are functional group isomers.
In the light of the above statements, choose the correct answer from the options given below:
The effect of temperature on the spontaneity of reactions are represented as: Which of the following is correct?
