A circular hatch of diameter d = 1,84m is mounted on an inclined wall in a pool, which indicated on the sketch. The pool contains water with gravity 10 kN/m3. The hatch is hinged in A with a frictionless joint a) Calculate the resultant,R , of the water pressure against the hatch. b) Calculate the location (eccentricity e) of the resultant and the distance from A. c) Calculate the force,K , that must be applied to open the hatch
A circular hatch of diameter d = 1,84m is mounted on an inclined wall in a pool, which indicated on the sketch. The pool contains water with gravity 10 kN/m3. The hatch is hinged in A with a frictionless joint a) Calculate the resultant,R , of the water pressure against the hatch. b) Calculate the location (eccentricity e) of the resultant and the distance from A. c) Calculate the force,K , that must be applied to open the hatch
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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A circular hatch of diameter d = 1,84m is mounted on an inclined wall in a pool, which indicated on the sketch. The pool contains water with gravity 10 kN/m3. The hatch is hinged in A with a frictionless joint
a) Calculate the resultant,R , of the water pressure against the hatch.
b) Calculate the location (eccentricity e) of the resultant and the distance from A.
c) Calculate the force,K , that must be applied to open the hatch
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