7.73. This nozzle discharges ideal liquid of specific weight 9.80 kN/m³ to the atmosphere. The velocity in the pipe is 3.0 m/s. The velocity through the jet may be assumed to vary linearly from top to bottom. The nozzle is of such shape that the weight of liquid contained therein is 135.0 N, with center of gravity 100 mm to the right of section 1. Calculate accu- rately the magnitude, direction, and location of the resultant force exerted by the liquid on the nozzle. V=3 m/s 300 mm d 150 mm d

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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7.73. This nozzle discharges ideal liquid of specific weight
9.80 kN/m³ to the atmosphere. The velocity in the pipe is
3.0 m/s. The velocity through the jet may be assumed to vary
linearly from top to bottom. The nozzle is of such shape that
the weight of liquid contained therein is 135.0 N, with center
of gravity 100 mm to the right of section 1. Calculate accu-
rately the magnitude, direction, and location of the resultant
force exerted by the liquid on the nozzle.
V=3 m/s 300 mm d
772
150 mm d
Transcribed Image Text:7.73. This nozzle discharges ideal liquid of specific weight 9.80 kN/m³ to the atmosphere. The velocity in the pipe is 3.0 m/s. The velocity through the jet may be assumed to vary linearly from top to bottom. The nozzle is of such shape that the weight of liquid contained therein is 135.0 N, with center of gravity 100 mm to the right of section 1. Calculate accu- rately the magnitude, direction, and location of the resultant force exerted by the liquid on the nozzle. V=3 m/s 300 mm d 772 150 mm d
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