3. A water jet that comes out of a pipe, exits into the air and strikes a plate. If the force is 50+x N. Assuming frictionless flow, calculate (a) the velocities at sections (1) and (2); (b) the mercury manometer reading h. =9810 N/m², y«g=133100 N/m? D1 = (10 +) em D2 = (3 +) cm F water at 20°C air h? Hg
3. A water jet that comes out of a pipe, exits into the air and strikes a plate. If the force is 50+x N. Assuming frictionless flow, calculate (a) the velocities at sections (1) and (2); (b) the mercury manometer reading h. =9810 N/m², y«g=133100 N/m? D1 = (10 +) em D2 = (3 +) cm F water at 20°C air h? Hg
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![3. A water jet that comes out of a pipe, exits into the air and strikes a plate.
If the force is 50+x N. Assuming frictionless flow, calculate
(a) the velocities at sections (1) and (2);
(b) the mercury manometer reading h. yu=9810 N/m?, Y+5=133100 N/m?
D1 = (10 + cm
D2 = (3 + cm
F
water at 20°C
air
h?
Hg](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F4a71b541-f21d-465e-b679-d4748b576ecc%2F090ce57d-99bf-4570-93a1-f511e556db56%2Fh2vkj6k_processed.png&w=3840&q=75)
Transcribed Image Text:3. A water jet that comes out of a pipe, exits into the air and strikes a plate.
If the force is 50+x N. Assuming frictionless flow, calculate
(a) the velocities at sections (1) and (2);
(b) the mercury manometer reading h. yu=9810 N/m?, Y+5=133100 N/m?
D1 = (10 + cm
D2 = (3 + cm
F
water at 20°C
air
h?
Hg
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