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MCB 314
(COM 211)1/2
(COM 211)2/2
(MLT 206)1/3
(MLT 206)2/3
(MLT 206)3/3
(MED 236)
(SOS 203)1/2
(SOS 203)2/2
(COM 313)1/4
(COM 313)2/4
(COM 313)3/4
(MCB 314)
(COM 305)1/2
(COM 305)2/2
EPM 423 (1/2)
EPM 423 (2/2)
IRD 404 (1/2)
IRD 404 (2/2)
EPM 406 (1/2)
EPM 406 (2/2)
CVE 421 (1/2)
CVE 421 (2/2)
BCH 413 (2/2)
CMP 355(1/2)
CMP 355(2/2)
BCH 305(1/2)
BCH 305(2/2)
CHM 305(1/2)
CHM 305(2/2)
Q: a) Differentiate between laminar and turbulent flow with examples.
b) Derive Bernoulli’s equation and state its assumptions.
Mark Attendance

Program Information
Details about FLUID FLOWS FOR CHEMICAL ENGINEERS
FLUID FLOWS FOR CHEMICAL ENGINEERS
Examines principles of fluid mechanics in chemical processes. Topics include flow regimes, pressure drops, and pump design. Students learn to model and analyze fluid systems for process optimization.