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Lecture
Fluid Mechanics: Control Volume Approach and Energy Conservation
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Energy Conservation: The First Law of Thermodynamics
Covers the first law of thermodynamics, focusing on energy conservation and its implications in fluid dynamics.
Fluid Mechanics: Control Volume Approach
Introduces powerful tools for analyzing fluid mechanics problems, emphasizing mass conservation, Newton's second law, and the continuity equation.
Fluid Mechanics: Understanding Fluid Dynamics and Pressure
Explores fluid mechanics, focusing on fluid dynamics, pressure, and real-world applications.
Fluid Kinematics and Control Volume Analysis
Discusses fluid kinematics and the control volume approach using the Reynolds Transport Theorem.
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Explores energy conservation in fluid flows, emphasizing practical applications and the importance of fundamental physics laws.
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Introduces continuum mechanics, focusing on conservation laws and kinematics for continuous media.
Introduction to Fluid Mechanics: Basic Principles and Properties
Introduces fluid mechanics, covering definitions, fundamental laws, and properties of fluids.
Fluid Mechanics: Control Volume Approach and Applications
Discusses the control volume approach in fluid mechanics, focusing on mass and momentum conservation principles and their applications in real-world scenarios like jet engine thrust.
Fundamental Equations: Conservation and Thermodynamics
Covers mass, momentum, energy conservation, and thermodynamics in fluid dynamics.