50 Weighted CO2 Emmisions 50 Diesel Petrol 10 40 30 CO2 Weighted Percentage 20 8 10 0 о о 800 0 0 о % -10 0 ୦୧ о 10 10 20 30 40 40 50 60 Car Position Diesel Best Fit Petrol Best Fit
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- T₁ = 10°C $₁ = 30% V₁ = 45 m³/min 10°C Heating coils Air T₂ = 22°C 2 Celllllll3= 25°C = 60% $1 = 30% Humidifier 22°C %09 = 50 AN EXAMPLE The amount of heat and mass at each point along with the properties of the air? 25°C I need a clear answer by hand, not by keyboard and fast answer within 20 minutes. Thank you | dybala 17A) Sketch three isotherms to represent an ideal gas at three different temperatures, where T1>T2>T3. B) Using the previous problem, illustrate how attractive or repulsive force (which causes non-ideal behavior) affects the isotherm at one of the temperatures. Also indicate the corresponding compression factor Z values * Create 2 axes that show x-axis labeled as 1/V (K) and y-axis labeled as PEquations of Polytropic Process Definition, diagrams, equations, & sample problems Test Your Skills 14.1 5. Air undergoes a polytropic process such that n = 3.2. Calculate the polytropic specific heat of air in kJ/kg-K. Express your answer to 4 decimal places. Your answer Submit 曲
- bliuzodt to mopolb 9. If machine parts are degreased by means of kerosene as shown in the diagram, how much kerosene make-up is needed per day? How much kerosene has to enter the degreasing vat per day? There are about 3 lb of grease per 100 lb of machine parts, and 60 tons of machine parts are processed each day. Five thousand pounds of kerosene (the 10% solution) are carried away by the machine parts each day but drip off and are caught and put back in the degreasing vat. Two hundred pounds of the 10% solution are lost each day from the vat by evaporation, spillage, or by being carried away.Thermodynamics-Processes of Gases show solution step by step with units answer it correctlymessageQ&A notifications account_circle Engineering Mechanical EngineeringQ&A Librarya) Determine the amount of work required to compressed 1.5 kg of air at a pressure of 7 barg(gauge pressure). The isentropic index is 1.2 and the air intake is at 1 bar, 20 degrees Celcius & Relative Humidity =65%. i) Find the temperature at the end of the compression. ii) Represent the above process on a p‐v diagram. iii) If the isentropic efficiency is 65%, find the indicated or real work. iv) Find the shaft work needed if the mechanical efficiency is 75%. a) Determine the amount of work required to compressed 1.5 kg of air at a pressure of 7 barg(gauge pressure). The isentropic index is 1.2 and the air intake is at 1 bar, 20 degrees Celcius & Relative Humidity =65%. i) Find the temperature at the end of the compression. ii) Represent the above process on a p‐v diagram. iii) If the isentropic efficiency is 65%, find the indicated or real work. iv) Find the shaft…
- The temperature of an ideal gas changes during a throttling. True False A Moving to another question will save this response.a) Compute the air-fuel ratio by weight used in an engine if the exhaust gas analysis in percent by volume dry shows: CO2 = 12.4%, O2 = 3.2%, CO = 0.1%, H2 = 0.2%, CH4 = 0.3%. b) Find also the atomic ratio H/C of the fuel used.2. For Pump Omicron, the pump performance data is shown in Table 2 below. Plot a curve of best fit Havailable versus Q from 0 Lpm to 30 Lpm. State the equation represented by the curve. On the same graph, plot the Hrequired versus Q and indicate the operating point. Table 2: Pump Omicron performance data Q (LPM) H (m) 0 46.5 46 42 37 29 16.5 0.0 5 10 15 20 25 30
- The fuel used in the diesel engine is C10H22. The air in the engine inlet and the exhaust gases in the outlet are analysis is as follows. Exhaust Gas Volume% Air Volume% 02 CO2 CO 7 23.655 3 N2 76.345 H2O 11 02 8 N2 71 a) How much energy is lost due to incomplete combustion of one kg of fuel? b) What is the actual air fuel ratio? c) What is the theoretical air fuel ratio? d) Is the Air Fuel mixture poor?The specific gravity of natural gas is A. 0.08. B. 1.00. C. 0.42. D. 0.60.Thermodynamics : Ideal Gas Cycle You have to make a SUMMARY OF FORMULAS (entire output must fit in ONE-PAGE ONLY of your chosen paper size) about Ideal Gas Cycles (Carnot, Brayton, Diesel and Otto). Your output must include SCHEMATIC DIAGRAM (T – S or P – V DIAGRAM), SUMMARY OF FORMULAS (Heat Added, Heat Rejected, Efficiency, Net Work, Important Constants, etc.).