The initial infiltration capacity of a watershed is estimated as 1.5 inlhr, and the time constant is taken to be 0.35/hr. The equilibrium capacity is 0.2 inl kr. Use Horton's equation to find (a) the values of f at t=15min, 1.5hrs. 2kTS, 5krs and 7 krs, and (b) the time period for a total infiltration of O.142 meters.

Structural Analysis
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Chapter2: Loads On Structures
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Give me both a and b right solutions

The initial infiltration capacity of a watershed is estimated as 1.5 inihr, and
the time constant is taken to be 0.35/hr. The equilibrium capacity is 0.2 in/
kr. Use Horton's equation to find (a) the values of f at t-15min, 1.5hrs,
2krS, 5krs and 7 hrs, and (b) the time period for a total infiltration of 0.142
meters.
Transcribed Image Text:The initial infiltration capacity of a watershed is estimated as 1.5 inihr, and the time constant is taken to be 0.35/hr. The equilibrium capacity is 0.2 in/ kr. Use Horton's equation to find (a) the values of f at t-15min, 1.5hrs, 2krS, 5krs and 7 hrs, and (b) the time period for a total infiltration of 0.142 meters.
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