For each 33 feet of depth in water the pressure increases approximately 1 atmosphere. So 100 meters is approximately 330 ft divide by 33 equals 10 atmosphere.
The volume of gas at a depth of 100 feet would depend on the pressure and temperature at that depth. As pressure increases with depth, gas volume decreases. To calculate the exact volume, you would need to know the specific pressure and temperature conditions at that depth.
This value is 0,131 578 9 atmospheres.
ATM is the depth by which water resistance is measured on a watch. ATM stands for Atmospheres. 1 atmosphere is equivalent to appx. 33 feet depth in water. So if a watch is 3 ATM = 100 ft. water resistant.
Approximately 66 ft. (10m depth (about 33 ft) = 1 atmosphere) 1 atmosphere at the surface. 2 Atms at 33 ft./10M. 3 Atms at 66ft/20M. 10Atms at 90M. 100 ATM at 990M. Generally z atms at 9.8(z-1)M.
The average depth of the river is 52 feet and the maximum depth at various points is 100 feet.
The integer that represents the depth of 100 feet it -100 because depth means negative and it also means below sea level so above sea level is positive and below sea level is negative so your answer will be negative 100.
100 feet or so...
The average depth of the ganga river is 52 feet (16 m) and the maximum depth is 100 feet (30 m)
A fathom is 6 feet in depth. 100 fathoms is therefore 600 feet, or 200 yards or 182.8 metres.
Because it increases. As you descend in the sea each 10 meters of water above you weighs as much as the whole of Earth's atmosphere as experience at Sea Level. Thus at 10 meters depth in the sea you experience a pressure of 2 atmospheres. At 20 meters 3 atmospheres At 30 meters 4 atmospheres At 100 meters 11 atmospheres At 1000 meters 101 atmospheres.
130 feet (40m) high, 100 feet (30m) wide and 30 feet (9m) in depth