Fluid Mechanics: From Basics to Advanced
Fluid Mechanics: From Basics to Advanced, available at $44.99, with 38 lectures, and has 1 subscribers.
You will learn about Fundamental Principles of Fluid Mechanics:Understand and apply the basic physical laws governing fluid mechanics. Analyze fluid flow using differential equations and control volume approaches. Flow Characteristics and Analysis: Investigate incompressible viscous fluids and solve related problems. Examine streamline flow, angular velocity, vorticity, and related concepts. Advanced Fluid Flow Concepts: Explore potential flow solutions and elementary flows and understand the boundary layer equations and their applications. Aerodynamics and Applied Fluid Mechanics: Study the Laplace and Kutta conditions, thin airfoil theory, and induced drag. Learn Prandtl's Classical Lifting Line Theory and elliptical lift distribution. This course is ideal for individuals who are Engineering Students and Professionals: Ideal for those studying mechanical, aerospace, civil, or chemical engineering. or Science Enthusiasts: Suitable for individuals interested in gaining a deep understanding of fluid mechanics. or Industry Practitioners: Beneficial for professionals working in fields related to fluid dynamics, aerodynamics, and hydrodynamics. or Lifelong Learners: Great for anyone with a passion for learning about the behavior of fluids in various applications. It is particularly useful for Engineering Students and Professionals: Ideal for those studying mechanical, aerospace, civil, or chemical engineering. or Science Enthusiasts: Suitable for individuals interested in gaining a deep understanding of fluid mechanics. or Industry Practitioners: Beneficial for professionals working in fields related to fluid dynamics, aerodynamics, and hydrodynamics. or Lifelong Learners: Great for anyone with a passion for learning about the behavior of fluids in various applications.
Enroll now: Fluid Mechanics: From Basics to Advanced
Summary
Title: Fluid Mechanics: From Basics to Advanced
Price: $44.99
Number of Lectures: 38
Number of Published Lectures: 38
Number of Curriculum Items: 38
Number of Published Curriculum Objects: 38
Original Price: $99.99
Quality Status: approved
Status: Live
What You Will Learn
- Fundamental Principles of Fluid Mechanics:Understand and apply the basic physical laws governing fluid mechanics.
- Analyze fluid flow using differential equations and control volume approaches.
- Flow Characteristics and Analysis: Investigate incompressible viscous fluids and solve related problems.
- Examine streamline flow, angular velocity, vorticity, and related concepts.
- Advanced Fluid Flow Concepts: Explore potential flow solutions and elementary flows and understand the boundary layer equations and their applications.
- Aerodynamics and Applied Fluid Mechanics: Study the Laplace and Kutta conditions, thin airfoil theory, and induced drag.
- Learn Prandtl's Classical Lifting Line Theory and elliptical lift distribution.
Who Should Attend
- Engineering Students and Professionals: Ideal for those studying mechanical, aerospace, civil, or chemical engineering.
- Science Enthusiasts: Suitable for individuals interested in gaining a deep understanding of fluid mechanics.
- Industry Practitioners: Beneficial for professionals working in fields related to fluid dynamics, aerodynamics, and hydrodynamics.
- Lifelong Learners: Great for anyone with a passion for learning about the behavior of fluids in various applications.
Target Audiences
- Engineering Students and Professionals: Ideal for those studying mechanical, aerospace, civil, or chemical engineering.
- Science Enthusiasts: Suitable for individuals interested in gaining a deep understanding of fluid mechanics.
- Industry Practitioners: Beneficial for professionals working in fields related to fluid dynamics, aerodynamics, and hydrodynamics.
- Lifelong Learners: Great for anyone with a passion for learning about the behavior of fluids in various applications.
Unlock the secrets of fluid mechanics with our comprehensive course designed for engineering students, professionals, and enthusiasts alike. Whether you’re a beginner or looking to deepen your understanding, this course covers everything from fundamental principles to advanced concepts, equipping you with the skills needed to excel in your field.
What you’ll learn:
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Fundamental Principles of Fluid Mechanics: Grasp the basic physical laws and analyze fluid flow using differential equations and control volume methods.
-
Flow Characteristics and Analysis: Explore incompressible viscous fluids, streamline flow, angular velocity, and vorticity.
-
Advanced Fluid Flow Concepts: Delve into potential flow solutions, boundary layer equations, and elementary flows.
-
Aerodynamics and Applied Fluid Mechanics: Understand the Laplace and Kutta conditions, thin airfoil theory, induced drag, and Prandtl’s Classical Lifting Line Theory.
Course Content:
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Section 1: Introduction
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Section 2: Basic Physical Laws of Fluid Mechanics
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Section 3: Differential Relations for Fluid Flow
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Section 4: Differential Equations for Control Volume
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Section 5: Incompressible Viscous Fluids
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Section 6: Streamline Flow
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Section 7: Elementary Flows
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Section 8: Viscous Flow
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Section 9: Boundary Layer Equations
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Section 10: Laplace and Kutta Conditions
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Section 11: Thin Airfoil Theory
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Section 12: Drag and Biot-Savart’s Laws
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Section 13: Prandtl’s Classical Lifting Line Theory
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Section 14: Elliptical Lift Distribution
Requirements:
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Basic knowledge of mathematics and physics
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Analytical skills for problem-solving
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Access to a computer with internet connectivity and a scientific calculator
Who this course is for:
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Engineering students and professionals in mechanical, aerospace, civil, or chemical fields
-
Science enthusiasts eager to understand fluid mechanics
-
Industry practitioners working with fluid dynamics, aerodynamics, and hydrodynamics
-
Lifelong learners passionate about the behavior of fluids in various applications
Join us on this journey through the fascinating world of fluid mechanics and enhance your expertise with practical insights and in-depth knowledge. Enroll now to master fluid mechanics from basics to advanced!
Course Curriculum
Chapter 1: Introduction
Lecture 1: Introduction
Chapter 2: Basic Physical Laws of Fluid Mechanics
Lecture 1: Basic Physical Laws of Fluid Mechanics
Lecture 2: Basic Physical Laws of Fluid Mechanics Part 2
Lecture 3: Basic Physical Laws of Fluid Mechanics Part 3
Chapter 3: Differential Relations for Fluid Flow
Lecture 1: Differential Relations for Fluid Flow
Chapter 4: Differential Equations for Control Volume
Lecture 1: Differential Equations for Control Volume
Lecture 2: Differential Equations for Control Volume Part 2
Chapter 5: Incompressible Viscous Fluids
Lecture 1: Incompressible Viscous Fluids
Lecture 2: Incompressible Viscous Fluids Examples
Lecture 3: Incompressible Viscous Fluids Part 3
Lecture 4: Incompressible Viscous Fluids Part 4
Chapter 6: Streamline Flow
Lecture 1: Streamline, Angular Velocity, Vorticity
Lecture 2: Strain and Circulation
Lecture 3: Stream Functions
Lecture 4: Velocity Potential
Lecture 5: The Vortex Sheet
Lecture 6: Superposition Of Plane Flow Solutions
Lecture 7: Solving a Potential Flow
Chapter 7: Elementary Flows
Lecture 1: Elementary Flows
Lecture 2: Elementary Flows Part 2
Lecture 3: Elementary Flows Part 3
Chapter 8: Viscous Flow
Lecture 1: Viscous Flow
Lecture 2: Viscous Flow Part 2
Chapter 9: Boundary Layer Equation
Lecture 1: Boundary Layer Equations
Lecture 2: Boundary Layer Equations
Lecture 3: Flat Layer Boundary Layer
Lecture 4: Application Of Flat Layer Boundary Layer
Chapter 10: Laplace condition and Kutta condition
Lecture 1: Laplace Equation
Lecture 2: The Kutta Condition
Lecture 3: Kelvin's Circulation Theorem
Chapter 11: Thin Airfoil Theory
Lecture 1: Thin Airfoil Theory
Lecture 2: Thin Airfoil Theory (Symmetric Airfoil)
Lecture 3: Thin Airfoil Theory (Cambered Airfoil)
Chapter 12: Drag and Biot-Savart's Laws
Lecture 1: Downwash and Induced Drag
Lecture 2: Biot-Savart's Laws
Chapter 13: Prandtl's Classical Lifting Line Theory
Lecture 1: Prandtl's Classical Lifting Line Theory
Lecture 2: Prandtl's Classical Lifting Line Theory Part 2
Chapter 14: Elliptical Lift Distribution
Lecture 1: Elliptical Lift Distrubution
Instructors
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Muhammad Arsalan Khan
Professional Engineer and Professor at a University
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