Looking for a handwritten solution. Strictly don't use chatgpt. Explanation required The specific work done on an ideal gas during an adiabatic process in a piston-cylinder is equal to: a) 0 b) (P2 - P1)V c) Cp (T2 - T1) d) Cv (T2 - T1)
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- please help and show work.please help me with thisAn air pump is used to fill a rigid gas bottle with air. The pump is connected to the gas bottle via a rigid pipe. The pump consists of a piston of internal diameter d=0.08 m and a cylinder with a stroke L=0.3m. Air enters the pump through an orifice located at the bottom of the cylinder to raise the pressure in the pump to atmospheric pressure. Air, drawn into the pump through the orifice, mixes completely and adiabatically with the cylinder contents. A valve allows the bottle's refill. The valve opens when the pump pressure is equal to the gas bottle. The valve is always closed when the pump pressure is below the gas bottle pressure. Pressure drop across the valve can be neglected. The bottle, the connecting pipe and the pump are thermally insulated. Air in the pump and connecting pipe undergoes isentropic compression and expansion processes. I F-one The working fluid (air) can be considered a perfect gas with R=287 J/KgK, cp=1005 J/KgK and y=1.4. Initially the piston is located at…
- 1) A piston-cylinder system containing 1100 grams of an ideal gas ‘X’ is cooled from 900 K to 100 K at constant pressure. The specific heat capacity of the gas is Cp = 38.3 J.mol-1.K-1. Assume Cp stays constant in the given temperature range. The molar mass of the gas = 28 g.mol-1. a) Write the simplified first law of thermodynamics for this system with justification. b) Calculate the total heat transferred (in kJ) during the process of cooling c) If the entire heat from the cooling of ‘X’ (as calculated in (b)) could be used as work to change the volume of another gas ‘Y’ from 500 m3 to 1000 m3 in a constant pressure process, calculate the value of pressure. d) Instead of cooling at constant pressure, if ‘X’ was expanded reversibly and at a constant temperature (300K), calculate the work done by the system in kJ if the change in volume was 10-fold.Please sol!!!!!!!:?!!1. One pound of an ideal gas undergoes an isentropic process from 95.3 psig and a volume of 0.6 ft to a final volume of 3.6 ft. If Cp=0.124 and Cy=0.093 BTU/Ik R. What are a. T2 b. P2 c. AH d. W
- Please solve Correctly on a sheet of paperYou are analyzing a piston-cylinder assembly that contains air at an initial pressure and temperature of 500 kPa and 600°C respectively. The air undergoes a polytropic process with the polytropic gas exponent n = 1.2 until the pressure reaches 100 kPa. Assuming the air behaves as an ideal gas (Rair = 0.287 kJ/kg-K). a) Determine the initial specific volume. b) Determine the final specific volume. c) Determine the work per unit mass of air. d) Draw a p-v diagram to qualitatively show the processPlease show work and answer the last 4 questions.
- A condenser is used to convert a gas into a liquid. The energy equation for a condenser is: Qcv = m(h₂ h₁) where 1 and 2 represent the state at the inlet and exit to the condenser (control volume). In addition to the steady state and steady flow assumptions, it has been assumed that: A) the change in kinetic energy is negligible OB) the change in potential energy is negligible OC) the net power input to the condenser is zero OD) all of the above, i.e. A), B) and C)answer a & b. Please show all your work!!! Air is in a cylinder is compressed by a piston. Initial pressure is 1.5 atm., initial temperature is 400 K, initial volume of air is 0.10 m 3 . The final volume of air is 0.05 m 3 . The process is isentropic. a) Compute the work required in kJ. b) Sketch (by hand) a p-V diagram and sketch by hand the curve of points along this compression process, labeling points 1 and 2.PLEASE SHOW THE COMPLETE SOLUTION AND EXAMINATION. THANK YOUUUU.

