Let \( z = x + iy \), where \( x, y \in \mathbb{R} \). Rewrite the given inequalities:
From \( |z - 1|^2 \leq 4 \):
\[ |z - 1|^2 = (x - 1)^2 + y^2 \leq 4 \implies (x - 1)^2 + y^2 \leq 4. \] This represents a circle with center \((1, 0)\) and radius \(2\).
Step 1: Identify the region of intersection.
The region of intersection is the upper semicircular region of the circle \( (x - 1)^2 + y^2 \leq 4 \) to the right of \( x = 1 \).
Step 2: Compute the area.
The area of the semicircle is: \[ \text{Area of semicircle} = \frac{1}{2} \pi r^2 = \frac{1}{2} \pi (2^2) = 2\pi. \] The area excluded by the sector to the left of \( x = 1 \) (sector A) is: \[ \text{Area of sector A} = \frac{\pi r^2}{4} = \frac{1}{4} \pi (2^2) = \pi. \]
Step 3: Subtract the areas.
The required area is: \[ \text{Area} = \text{Area of semicircle} - \text{Area of sector A} = 2\pi - \pi = \frac{3\pi}{2}. \]

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 : \(A_2 \rightleftharpoons 2A\)
A black body is at a temperature of 2880 K. The energy of radiation emitted by this body with wavelength between 499 nm and 500 nm is U1, between 999 nm and 1000 nm is U2 and between 1499 nm and 1500 nm is U3. The Wien's constant, b = 2.88×106 nm-K. Then,