Derive the law of corresponding state and explain its significant
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Q: Assume 2.5 kg/s of fluid enter a steady-state, steady-flow system with pressure p1 = 700 kPaa,…
A: Answer: The power is 151.95 kW.
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Derive the law of corresponding state and explain its significant
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- Based on thermodynamics of a process, explain intermediary energy. Mention the three characteristic features of this intermediary energyIf a system is at steady state, does this mean intensive properties are uniform with position throughout the system or constant with time? Both uniform with position and constant with time? Explain.How prevalent is hydropower throughout the world? Does it exist everywhere? Is it a luxury item?
- Assume 2.5 kg/s of fluid enter a steady-state, steady-flow system with pressure p1 = 700 kPaa, density ρ1 = 3.2 kg/m3, velocity v1 = 30 m/s, specific internal energy u1 = 1 856.8 kJ/kg, and leave with p2 = 138 kPaa, ρ2 = 0.81 kg/m3, v2 = 150 m/s and u2 = 1 810.4 kJ/kg. During passage through the open system, each kilogram rejects 23.2 kJ of heat. Find the power in kW. (whole number)Assume 2.5 kg/s of fluid enter a steady-state, steady-flow system with pressure p1 = 700 kPaa, density ρ1 = 3.2 kg/m3, velocity v1 = 30 m/s, specific internal energy u1 = 1 856.8 kJ/kg, and leave with p2 = 138 kPaa, ρ2 = 0.81 kg/m3, v2 = 150 m/s and u2 = 1 810.4 kJ/kg. During passage through the open system, each kilogram rejects 23.2 kJ of heat. Find the power in kW.I want to solve these questions in all its branches, especially for thermodynamic, and thanks for the help
- Identify whether the given property is a state or path function: Work Heat Volume Pressure TemperatureGive at least five (5) application of thermodynamics in real life. Briefly explain each application using different concepts, principles and/or theories in thermodynamics.Please indicate the given, assumption and illustration. A Jet plane having a wing area of 20 m2 and weighing 25 kN flies at 950 km/hr speed. The engine develops 8,500 kW and has a mechanical efficiency of 9%. With the specific weight of air at 12 N/m3, determine the following: A) The Coefficient of Lift (CL). B) The Coefficient of Drag (CD).
- The fuel consumption of an automobile is 14 km/ L.The fuel consumption, in miles per gallon, is?Subject: Thermodynamics IShow your solution neatly pleaseTHERMODYNAMICS 0.5 kg/s of an idea gas (molecular weight 30, ratio of specific heats 1.5) is cooled at constant pressure from 500 K to 400 K, without any mechanism for absorbing or producing work. At what rate is heat removed from this gas flow in kW?