
Anna Low Speed Aerodynamics SemIV Unit 3 : Airfoiltheory(CauchyRiemann relations, Complex Potential, Methodology of Conformal Transformation, KuttaJoukowski transformation and its applications, Thin Airfoil theory and its applications) 


1. Recent Advancements in Aerodynamics (Aerodynamics Airworthiness) (Aeronautical Engineering) 
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• Introduction
• High AnglesofAttack Computations
• Laminar and Unsteady Flows
• Numerical Optimisation
• Aeroelasticity
• Stealth Aerodynamics
Title: Aerodynamics Airworthiness




2. Helicopter Aerodynamics(Aeronautical Engineering) 
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Basic aerodynamics, Airfoil section, rotor wing , relative wind, induced flow, angle of attack & incidence, aerodynamic forces, lift, drag, pressure distribution, centrifugal force, loss of disc area due to coning, rotational velocities, twisted & untwisted bade, hovering, ground effect, torque & anti torque, translating tendency, transverse flow effect, dissymmetry of flight & compensation, flapp
......
Title: Helicopter Technology








4. Analytic Functions, CauchyRiemann Equations, Harmonic Functions, Rational Functions(Mathematics) 
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The objective of this unit to show that a function of a complex variable can have a derivative only if the real and imaginary parts satisfy a system of a partial differential equations called the CauchyRiemann equations. Further study of the CauchyRiemann equations shows a connect ion between complex analysis and harmonic functions.
Title: Math 1.3 Complex Analysis  I




5. Computational Algorithms for the Configuration Design (Aerodynamics Airworthiness)(Aeronautical Engineering) 
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Introduction, Theoretical Algorithms, Computational Algorithms, Optimization of Computational Grids , Parallel Computational Computing.
Title: Aerodynamics Airworthiness




6. Computational Algorithms for the Configuration Design (Aerodynamics Airworthiness)(Aeronautical Engineering) 
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• Introduction
• Theoretical Algorithms
• Computational Algorithms, Optimization of Computational Grids
• Parallel Computational Computing
Title: Aerodynamics Airworthiness




7. Complex AnalysisII(Mathematics IV) 
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In this chapter, the study of complex functions is continued. First, we consider
the transformations of complex functions. Thereafter we present an elementary treatment of Integral Calculus of complex functions.
Title: Engineering Mathematics Part  IV




8. Unit  I(Aeronautical Engineering) 
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Loads on Aircraft
Structural nomenclatureTypes of loadsLoad factorAerodynamic loadsSymmetric maneuver
loadsVn diagramFunction of structural components.
Materials for Aircraft Structures
Metallic and nonmetallic materials, Use of Aluminium alloy, Titanium, Stainless steel and
Composite materials, Desirable properties for aircraft application
Mechanical Properties of Material
Stresss
......
Title: Aircraft StructuresI




9. Aerodynamic Strategic Design Software Development and Application (Aerodynamics Airworthiness)(Aeronautical Engineering) 
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• Introduction
• Computer Codes
• Geometry Discretization
• Numerical Viscosity
Title: Aerodynamics Airworthiness




10. Extension of ZetaFunction to the Whole Plane, the Functional Equation, the Zeros of the Zetafunction(Mathematics) 
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In his paper entitled ' On number of primes less than the given magnitude', Riemann deduced certain functional equations satisfied by Riemannzeta functions which involves Gamma function. He also relates Riemannzeta function with Dedekind eta functions. In this unit, we study these types of functional relations.
Title: Math 2.3 Complex Analysis  II




11. Hadamard's Theorem(Mathematics) 
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In the previous blocks, we have considered the representation of entire functions as infinite products. In this unit we study the connection between product representation and the rate of growth of the function.
Title: Math 2.3 Complex Analysis  II




12. Jensen's Formula(Mathematics) 
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Jensen's formula relates the modulus of f(z) on the circle to the modulus of the zeroes. It has many important applications in the theory of entire functions.
Title: Math 2.3 Complex Analysis  II




13. Contents(Mathematics II) 
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This comprehensive and assimilable text introduces to the students the Mathematical concepts such as Matrices, Vector Calculus, Analytic Functions, Complex Integration and Laplace Transforms. The simple and systematic presentation will enable the students to grasp the concepts easily.
Title: Engineering Mathematics II
Published on: 09/02/19
Author:
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Pages:
10








14. Modeling Computational Aerodynamics for Speedup (Aerodynamics Airworthiness) (Aeronautical Engineering) 
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• Introduction
• Accelerating the Computational Algorithms
• Parallel Algorithms for Speedup, Parallel Computer Support
Title: Aerodynamics Airworthiness




15. Topology of the Complex Plane, Linear Transformation, Elementary Conformal Mappings.(Mathematics) 
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In this unit we introduce the concept s of topology of complex numbers and geometry of t he complex valued functions of a complex variable such as linear transformation, elementary conformal mappings.
Title: Math 1.3 Complex Analysis  I




16. The Riemann Integral(Mathematics) 
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In this unit, we introduce the concept of Linear spaces. We give the
properties of Linear spaces and some theorems related to Linear spaces.
Finally, we explain the Linear operators and some theorems related to Linear
operators.
Title: Math 3.2 Measure Theory




17. Definition,Criterion for RiemannStieltjes Integral(Mathematics) 
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The RiemannStieltje's integral is the important generalization of the Riemann integral. The Riemann integral is a particular case of a more general integral.
Title: Math 2.2 Real Analysis II




18. Cauchy's Theorem for a Rectangle and a Disc(Mathematics) 
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There are several forms of Cauchy's theorem, but they differ in t heir topological rather than in their analytical content. It is natural to begin with a case in which the topological considerations are trivial. In this unit we determine Cauchy theorem for a rectangle and Cauchy' s theorem for a disc.
Title: Math 1.3 Complex Analysis  I




19. Aerodynamic Optimization in the Presence of Spanwise Compressibility (Aerodynamics Airworthiness)Variations (Aeronautical Engineering) 
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• Introduction,
Mathematical Modeling
• Scope of Objective
Title: Aerodynamics Airworthiness





21. Complex AnalysisI(Mathematics IV) 
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In this and the next chapter we present an elementary treatment of the subject of Complex Analysis. In this chapter, we introduce the concept of a complex function and study some properties of an important class of complex functions, called analytic functions.
Title: Engineering Mathematics Part  IV




22. Cauchy's Integral Formula and its Consequences(Mathematics) 
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In this unit, we establish another fundamental result known as Cauchy's integral formula using Cauchy's theorem. As application of Cauchy's integral formula. we also deduce Morera's theorem, Liouville's theorem and Fundamental theorem of Algebra.
Title: Math 1.3 Complex Analysis  I




23. Contents(Electrical ) 
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This book titled â€śFundamentals of Electrical and Electronics Engineeringâ€ť, comprises of 17 Chapters covering the areas of Electrical, Electronics and Communication Engineering. All the chapters are fine tuned to suit the revised syllabus. Reinforcement with additional information, solved problems, exercise problems, pictorial representation, revision formulae, review questions, two mark questi
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Title: Fundamentals of Electrical and Electronics Engineering
Published on: 25/03/20
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Pages:
16








24. Helicopter Performance(Aeronautical Engineering) 
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Power requirement in an helicopter, induced power, profile power, parasite power, engine performance, engine power, transmission ratings, power losses, trim condition, hover condition, hover ceiling, vertical climb, forward flight performance, performance flight testing, vertical climb performance.
Title: Helicopter Technology






25. MODULE5B(Fluid Mechanics) 
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Definition of CFD,need of CFD,Applications of CFD,Limitations of CFD,Philosophy behind CFD
Title: Fluid Mechanics study notes
Published on: 12/05/20
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Pages:
11










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