(Q-2) A liquid is being pumped through a impressed pressure drop of 75.0 (K-pa) ; the inner pipe diameter is 10.0 (cm) ; and the pipe length is 750 (m). All couplings and fittings are estimated equivalent to ( 45 x Pipe Diameter). Given; p, = 1.280 (g/cm'); µ, = 0.0562 (Poise) ; Friction factor =0.00275 %3D %3D .Calculate the mass flow rate in (kg/Sec)? IS f=.00275 a proper assumption ? Justify your answer?

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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(Q-2) A liquid is being pumped through a horizontal smooth pipe under an
impressed pressure drop of 75.0 (K-pa) ; the inner pipe diameter is 10.0
(cm) ; and the pipe length is 750 (m). All couplings and fittings are
estimated equivalent to ( 45 x Pipe Diameter).
Given; p = 1.280 (g/cm); µ, = 0.0562 (Poise) ; Friction factor =0.00275
.Calculate the mass flow rate in (kg/Sec) ?
IS f=.00275 a proper assumption ? Justify your answer?
Transcribed Image Text:(Q-2) A liquid is being pumped through a horizontal smooth pipe under an impressed pressure drop of 75.0 (K-pa) ; the inner pipe diameter is 10.0 (cm) ; and the pipe length is 750 (m). All couplings and fittings are estimated equivalent to ( 45 x Pipe Diameter). Given; p = 1.280 (g/cm); µ, = 0.0562 (Poise) ; Friction factor =0.00275 .Calculate the mass flow rate in (kg/Sec) ? IS f=.00275 a proper assumption ? Justify your answer?
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