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Applied Hydraulic Engineering - CE6403

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Applied Hydraulic Engineering
-:- Applied Hydraulic Engineering: Uniform Flow
-:- Applied Hydraulic Engineering: Uniform Types of Flow
-:- Differences between Pipe Flow and Open Channel Flow
-:- Properties of open channels (Applied Hydraulic Engineering: Uniform Flow)
-:- Applied Hydraulic Engineering: Uniform Flow - Fundamental equations
-:- Velocity distribution in open channels
-:- Steady Uniform flow: The Chezy and Manning Equation
-:- Best Hydraulic Cross- Section
-:- Computations in Uniform Flow
-:- Applied Hydraulic Engineering: Specific Energy, Critical Flow and Critical Velocity
-:- Varied Flow
-:- Gradually varied flow
-:- Transitions between sub and super critical flow
-:- Profile Classifications
-:- Surface Profiles Determination
-:- The Application of the Energy equation for Rapidly Varied Flow
-:- Critical , Sub-critical and super critical flow
-:- Application of the Momentum equation for Rapidly Varied Flow
-:- Hydraulic jump
-:- Classification of Turbines
-:- Impulse and Reaction Turbines
-:- Turbines in action
-:- Kaplan turbine
-:- Francis Turbine
-:- Turbine Specific speed
-:- Centrifugal Pumps
-:- Operation of Pumps in Series and Parallel
-:- Reciprocating Pumps
-:- Pumps: Air Vessels
-:- Types of positive displacement pump
-:- Important Question And Answer: civil - Applied Hydraulic Engineering - Part 1
-:- Important Question And Answer: civil - Applied Hydraulic Engineering - Part 2
-:- Important Question And Answer: civil - Applied Hydraulic Engineering - Part 3