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Conservation of mass
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Related lectures (29)
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Advanced Physics I: Energy and Collisions
Explores energy conservation in collisions and systems of variable mass.
Mass Conservation: Lapazian Laws
Covers the principles of mass conservation and Lapazian laws in fluid dynamics.
From Boltzmann to Vlasov equation
Discusses the derivation of Vlasov equation from Boltzmann equation, conservation laws, and formal solutions.
Conservation Laws and Bernoulli Equation
Covers conservation laws in fluid dynamics, including the Venturi effect and Bernoulli equation.
Conservation Equations in Fluid Dynamics
Covers the derivation of conservation equations in fluid dynamics and their practical applications in engineering problems.
Control Volume and System
Explains control volume, system, mass conservation laws, and Reynolds transport theorem with practical examples and theoretical derivations.
Energy Conservation: Simplified Situations
Explores energy conservation in fluid mechanics, focusing on simplified control volume situations and the relationship between mechanical power and heat transfer.
Linear Momentum Balance
Covers the concise local statement of linear momentum balance and continuity, emphasizing the importance of continuity in analyzing particle motion.
Energy Conservation: The First Law of Thermodynamics
Covers the first law of thermodynamics, focusing on energy conservation and its implications in fluid dynamics.