A level with the height of the instrument being 2.550 m has been placed at a station having a Reduced Level (RL) of 130.565 m. The instrument reads 3.665 m on a levelling staff held inverted at the bottom of a bridge deck. The RL of the bottom of the bridge deck is _____________
Given: Height of instrument = 2.550 m RL of instrument setup point = 130.565 m Inverted staff reading at the bottom of the bridge deck = 3.665 m First, calculate the RL of the line of sight: \[ {RL}_{{Instrument Axis}} = 130.565 + 2.550 = 133.115 { m} \] Since the staff is held inverted, the point being measured is above the instrument axis by the staff reading: \[ {RL}_{{Bridge Deck Bottom}} = 133.115 + 3.665 = 136.780 { m} \]
In supervised digital image classification, the number of combinations to be evaluated to select three best bands out of five bands is _____________
Piecewise linear contrast stretch is performed on an 8-bit image. The output (\( BV_{{out}} \)) would be zero for input value \( BV_{{in}} \leq 80 \). The output (\( BV_{{out}} \)) would be 255 for \( BV_{{in}}>120 \). For the remaining input values, \( BV_{{out}} = (2 \times BV_{{in}}) - 20 \). If \( BV_{{in}} = 120 \), then \( BV_{{out}} \) is_____________
In levelling between two points P and Q on opposite banks of a river, the level was set up near P, and the staff readings on P and Q were 2.165 m and 3.810 m, respectively. The level was then moved and set up near Q and the respective staff readings on P and Q were 0.910 m and 2.355 m. The true difference of level between P and Q is ____________m (rounded off to 3 decimal places).
In supervised digital image classification, the number of combinations to be evaluated to select three best bands out of five bands is _____________
Piecewise linear contrast stretch is performed on an 8-bit image. The output (\( BV_{{out}} \)) would be zero for input value \( BV_{{in}} \leq 80 \). The output (\( BV_{{out}} \)) would be 255 for \( BV_{{in}}>120 \). For the remaining input values, \( BV_{{out}} = (2 \times BV_{{in}}) - 20 \). If \( BV_{{in}} = 120 \), then \( BV_{{out}} \) is_____________
In levelling between two points P and Q on opposite banks of a river, the level was set up near P, and the staff readings on P and Q were 2.165 m and 3.810 m, respectively. The level was then moved and set up near Q and the respective staff readings on P and Q were 0.910 m and 2.355 m. The true difference of level between P and Q is ____________m (rounded off to 3 decimal places).