We are tasked with analyzing the given inequalities for the statements \( S1 \) and \( S2 \) involving complex numbers \( a = x_1 + iy_1 \) and \( z = x + iy \).
The inequality is given as: \[ \text{Re}(a + z) > \text{Im}(a + z). \]
Expanding both sides: \[ \text{Re}(a + z) = x_1 + x, \quad \text{Im}(a + z) = -y_1 + y. \]
The inequality becomes: \[ x_1 + x > -y_1 + y. \]
For \( S1 \), we are given: \[ x_1 = 2, \, y_1 = 10, \, x = -12, \, y = 0. \]
Substitute these values into the inequality: \[ x_1 + x > -y_1 + y \implies 2 - 12 > -(10) + 0 \implies -10 > -10. \]
This inequality is not valid. Hence, \( S1 \) is false.
For \( S2 \), the inequality is: \[ \text{Re}(a + z) < \text{Im}(a + z). \]
Expanding: \[ x_1 + x < -y_1 + y. \]
For \( S2 \), we are given: \[ x_1 = -2, \, y_1 = -10, \, x = 12, \, y = 0. \]
Substitute these values: \[ x_1 + x < -y_1 + y \implies -2 + 12 < -(-10) + 0 \implies 10 < 10. \]
This inequality is not valid. Hence, \( S2 \) is false.
Both \( S1 \) and \( S2 \) are false.

What will be the equilibrium constant of the given reaction carried out in a \(5 \,L\) vessel and having equilibrium amounts of \(A_2\) and \(A\) as \(0.5\) mole and \(2 \times 10^{-6}\) mole respectively?
The reaction : \(A_2 \rightleftharpoons 2A\)