We are given:
Wavelength \( \lambda = 200\,\text{m} \)
Water depth \( h = 75\,\text{m} \)
Acceleration due to gravity \( g = 10\,\text{m/s}^2 \)
Since depth is neither very small nor very large compared to wavelength, we use the general dispersion relation:
\[ v = \sqrt{ \frac{g\lambda}{2\pi} \tanh\left(\frac{2\pi h}{\lambda}\right) } \] Step 1: Compute the argument:
\[ \frac{2\pi h}{\lambda} = \frac{2\pi \cdot 75}{200} = \frac{150\pi}{200} = 0.75\pi \approx 2.356 \] \[ \tanh(2.356) \approx 0.982 \] Step 2: Plug into the velocity formula:
\[ v = \sqrt{ \frac{10 \cdot 200}{2\pi} \times 0.982 } \] \[ v = \sqrt{ \frac{2000}{6.283} \times 0.982 } \] \[ v = \sqrt{318.3 \times 0.982} \] \[ v = \sqrt{312.6} \approx 17.68\,\text{m/s} \] Rounded off to two decimals: \[ \boxed{17.50\,\text{m/s}} \]

| Group I | Group II |
| P. Dreikanter | 1. Glacial |
| Q. Cirque | 2. Beach |
| R. Natural levee | 3. Eolian |
| S. Berm | 4. Fluvial |
Two boreholes A and B, both inclined towards 270°, penetrate a dipping coal bed at the same point and pass through it entirely in the sub-surface as shown in the figure below. The bed dips towards 270°. The thickness of the coal bed, measured along the borehole A is 10 m and along borehole B is 8 m. The angle between the two boreholes is 20°. The orthogonal thickness \( x \) of the coal bed is ........ m. (Round off to one decimal place) 
A well-developed succession of laminated shale is bound by two volcanic ash beds that were precisely dated as shown in the schematic diagram given below. Assuming a constant sedimentation rate, the age of the fossiliferous limestone bed 65 m above the basal volcanic ash bed is ............ Ma. (Round off to nearest integer) 
The data tabulated below are for flooding events in the last 400 years.
The probability of a large flood accompanied by a glacial lake outburst flood (GLOF) in 2025 is ........... \(\times 10^{-3}\). (Round off to one decimal place)
| Year | Flood Size | Magnitude rank |
|---|---|---|
| 1625 | Large | 2 |
| 1658 | Large + GLOF | 1 |
| 1692 | Small | 4 |
| 1704 | Large | 2 |
| 1767 | Large | 2 |
| 1806 | Small | 4 |
| 1872 | Large + GLOF | 1 |
| 1909 | Large | 2 |
| 1932 | Large | 2 |
| 1966 | Medium | 3 |
| 2023 | Large + GLOF | 1 |
A satellite launching vehicle is carrying a lander for Moon mapping.
As shown in the figure below, P is the position where the gravitational forces exerted by Earth and Moon on the vehicle balance out.
The distance \( P \) from the center of the Earth is ........... \(\times 10^5\) km. (Round off to two decimal places)
The isobaric temperature-composition (T–X) phase diagram given below shows the phase relation between components M and N. The equilibrium melting undergone by the rock R to generate the liquid of composition L is .............. % (In integer )