The thin (3 mm ) thick plastic panel shown in the figure is lowered from a ship to a construction site on оссan floor. The plastic panel weighs ( 200N) in air and is lowered at a rate of ( 2 m/s ). Assuming the ship panel remains vertically oriented, caleulate the tension force in the cable. Take (p = 1000 kg/m', v * 10“ m²/s), and use; water 1.31 Colem- 1.328 / Re 1/2 Cnorh - 0.072 / Re

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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9. The thin ( 3 mm ) thick plastic panel shown
in the figure is lowered from a ship to a
the ocean
floor. The
construction site
plastic panel weighs ( 200N) in air and is
ship
Cable
lowered at a rate of ( 2 m/s ). Assuming the
panel remains vertically oriented, calculate
ing.
the tension force in the cable. Take ( p = 1000
*10 m/s), and use;
water Plastic
Punel
kg/m', v = 1.31
%3D
1/5
CDlam=1.328/ Re
Cpturb= 0.072 / Re
-3m-
of glureorin
Y 00
nmongo
om
thin
ffat nlete
Transcribed Image Text:9. The thin ( 3 mm ) thick plastic panel shown in the figure is lowered from a ship to a the ocean floor. The construction site plastic panel weighs ( 200N) in air and is ship Cable lowered at a rate of ( 2 m/s ). Assuming the panel remains vertically oriented, calculate ing. the tension force in the cable. Take ( p = 1000 *10 m/s), and use; water Plastic Punel kg/m', v = 1.31 %3D 1/5 CDlam=1.328/ Re Cpturb= 0.072 / Re -3m- of glureorin Y 00 nmongo om thin ffat nlete
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