Step 1: Use the time-slope/angle relation.
For a planar reflector, the zero-offset time slope is \[ \frac{\partial t}{\partial x}= \frac{2\sin\theta}{v}, \] where \(\theta\) is the reflector dip (equal to the incidence angle at the reflection point) and \(v\) is the migration velocity.
Step 2: Solve for \(\theta\).
Given \(\partial t/\partial x=0.5\ \text{s/km}\) and \(v=2\ \text{km/s}\), \[ \sin\theta=\frac{v}{2}\,\frac{\partial t}{\partial x} =\frac{2}{2}\times 0.5=0.5. \] Hence, \[ \theta=\sin^{-1}(0.5)=30^\circ. \] \[ \boxed{30.0^\circ} \]
A watershed has an area of 74 km\(^2\). The stream network within this watershed consists of three different stream orders. The stream lengths in each order are as follows: Ist order streams: 3 km, 2.5 km, 4 km, 3 km, 2 km, 5 km
IInd order streams: 10 km, 15 km, 7 km
IIIrd order streams: 30 km
The drainage density of the watershed is _________km/km\(^2\) (Round off to two decimal places)
Is there any good show __________ television tonight? Select the most appropriate option to complete the above sentence.
As the police officer was found guilty of embezzlement, he was ___________ dismissed from the service in accordance with the Service Rules. Select the most appropriate option to complete the above sentence.
The figures I, II, and III are parts of a sequence. Which one of the following options comes next in the sequence at IV?
