oil (SG = 0.88) dischargesfrom a pipe (D = 13 in.) through a sharp-crested, round orifice (diameter = 5 in.), as shown. the coefficients of contraction and velocity are 0.619 and 0.967, respectively. find the actual velocity (in ft/s) in the jet. Point (1) is a point collinear with the orifice at point (2). Point (3) is the free surface of the manometer containing mercury. use h = 2.84 ft., and y = 7.42 in.
oil (SG = 0.88) dischargesfrom a pipe (D = 13 in.) through a sharp-crested, round orifice (diameter = 5 in.), as shown. the coefficients of contraction and velocity are 0.619 and 0.967, respectively. find the actual velocity (in ft/s) in the jet. Point (1) is a point collinear with the orifice at point (2). Point (3) is the free surface of the manometer containing mercury. use h = 2.84 ft., and y = 7.42 in.
Materials Science And Engineering Properties
1st Edition
ISBN:9781111988609
Author:Charles Gilmore
Publisher:Charles Gilmore
Chapter5: Phase Transformations And Phase Diagrams
Section: Chapter Questions
Problem 5.19P
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oil (SG = 0.88) dischargesfrom a pipe (D = 13 in.) through a sharp-crested, round orifice (diameter = 5 in.), as shown. the coefficients of contraction and velocity are 0.619 and 0.967, respectively. find the actual velocity (in ft/s) in the jet. Point (1) is a point collinear with the orifice at point (2). Point (3) is the free surface of the manometer containing mercury. use h = 2.84 ft., and y = 7.42 in.
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