Homework A clrcular Jet of water at 20°C Implnges on the vane shown In figure. The Incldent jet has a velocity of 25 m/s and a dlameter of 200 mm. The vane divides the Incldent Jet equally, and the Jet exits the vane as two Jets, each making an angle of 200 with the Incoming Jet. (a) Determine the force on the vane when the vane 200 mm, 20 25 m/s Incident jet Moving vane Is moving at a speed of 15 m/s In the same direction as that of the Incldent Jet. (b) Determine the force on the vane when the vane Is moving at a speed of 15 m/s In the opposite direction to that of the Incldent jet. Assume water at 20°C.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A circular jet of water at 20°C
Implnges on the vane shown In
flgure. The Incident jet has a
velocity of 25 m/s and a dlameter
of 200 mm. The vane divides the
Incident jet equally, and the jet
exits the vane as two jets, each
making an angle of 200 with the
Incoming Jet. (a) Determine the
force on the vane when the vane
200 mm
25 m/s-
20°
V.
Incident jet
Moving vane
Is moving at a speed of 15 m/s In
the same directlon as that of the
Incident jet. (b) Determine the
force on the vane when the vane
Is moving at a speed of 15 m/s In
the opposite dlirection to that of
the Incident jet. Assume water at
20°C.
Transcribed Image Text:Homework A circular jet of water at 20°C Implnges on the vane shown In flgure. The Incident jet has a velocity of 25 m/s and a dlameter of 200 mm. The vane divides the Incident jet equally, and the jet exits the vane as two jets, each making an angle of 200 with the Incoming Jet. (a) Determine the force on the vane when the vane 200 mm 25 m/s- 20° V. Incident jet Moving vane Is moving at a speed of 15 m/s In the same directlon as that of the Incident jet. (b) Determine the force on the vane when the vane Is moving at a speed of 15 m/s In the opposite dlirection to that of the Incident jet. Assume water at 20°C.
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