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Related lectures (18)
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Gas Properties and Nozzles
Covers gas properties, energy conservation, nozzles, and fluid flow principles.
Control Volume Approach: Mass Conservation and Physical Laws
Explores the control volume approach, emphasizing mass conservation and key physical laws.
Mass Flow in Nozzles
Covers the concept of mass flow in nozzles and sonic conditions.
Conservation of Momentum in Nozzle Flow
Introduces the conservation of momentum in nozzle flow, deriving an equation resembling the inviscid Navier-Stokes equations.
Nozzle Operation: Subsonic and Supersonic Flow
Discusses the operation of nozzles in subsonic and supersonic flow conditions.
Momentum Equation
Explores the application of the momentum equation in fluid flow analysis, emphasizing force calculations on structures and practical examples.
Straight Shocks: Supersonic Air Intake
Discusses the behavior of straight shocks in supersonic air intake systems.
Straight Shocks - Supersonic Wind Tunnel Operation
Explores the operation of a supersonic wind tunnel with straight shocks and how to optimize test conditions.
Supersonic Nozzles: Wake Effects
Explores the wake effects of supersonic nozzles in different expansion conditions and their impact on thrust.
Fluid Dynamics: Bernoulli Equation
Explores the application of the Bernoulli equation in fluid dynamics and its limitations.
Inkjet Printing: Technologies and Droplet Formation
Explores inkjet printing technologies, droplet formation, nozzle design, ink formulation, and droplet impact physics.
1D Flows: Mach Number in a Nozzle
Explores conservation laws and Mach number effects in 1D flows.
Convergent-Divergent Nozzles
Explores the performance advantages of convergent-divergent nozzles in supersonic applications.
Fluid Kinematics and Control Volume Analysis
Discusses fluid kinematics and the control volume approach using the Reynolds Transport Theorem.
Fluid Mechanics: Control Volume Approach
Introduces powerful tools for analyzing fluid mechanics problems, emphasizing mass conservation, Newton's second law, and the continuity equation.
Designing a 200 N Bi-Propellant Thruster: Key Considerations
Covers the design process for a 200 N bi-propellant thruster, focusing on key parameters and methodologies for effective performance.
Energy Conservation in Open Systems
Explores energy conservation in open systems, analyzing mass and energy transfer in turbines, compressors, and heat exchangers.
High-Resolution 3D Printing Technology
Explores the development of a high-resolution 3D printing technology for advanced biomaterials, focusing on Melt Electrowriting (MEW) and its exceptional stability and fiber diameter control.
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