5. A liquid flows through an orifice located in the side of a tank as shown in the Figure below. A commonly used equation for detemining the volume rate of flow, Q, through the orifice is Q = 0.61A/2gh where A is the area of the orifice, g is the acceleration of gravity, and h is the height of the liquid above the orifice. Investigate the dimensional homogeneity of this formula. Good luck!
5. A liquid flows through an orifice located in the side of a tank as shown in the Figure below. A commonly used equation for detemining the volume rate of flow, Q, through the orifice is Q = 0.61A/2gh where A is the area of the orifice, g is the acceleration of gravity, and h is the height of the liquid above the orifice. Investigate the dimensional homogeneity of this formula. Good luck!
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
Related questions
Question
![5. A liquid flows through an orifice located in the side of a tank as shown in the Figure
below. A commonly used equation for
detemining the volume rate of flow, Q.
through the orifice is
Q = 0.61A/2gh
where A is the area of the orifice, g is the
acceleration of gravity, and h is the height
of the liquid above the orifice. Investigate
the dimensional homogeneity of this
formula.
Good luck!](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb0a7e31c-4975-4d88-a789-597bc875e1e3%2Fc8802896-6af1-44d1-8ab7-23978e31a22e%2Fz30f0wg_processed.jpeg&w=3840&q=75)
Transcribed Image Text:5. A liquid flows through an orifice located in the side of a tank as shown in the Figure
below. A commonly used equation for
detemining the volume rate of flow, Q.
through the orifice is
Q = 0.61A/2gh
where A is the area of the orifice, g is the
acceleration of gravity, and h is the height
of the liquid above the orifice. Investigate
the dimensional homogeneity of this
formula.
Good luck!
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