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In ( a) Casting the of set of governing eqn into differential form b) Cast the ears from (9) matrix from Clie Ax=b) -de pendent

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In ( a) Casting the of set of governing eqn into differential form b) Cast the ears from (9) matrix from Clie Ax=b) -de pendent properties you seek (differential form) b-differential form of area term A = Coefficient matrix Cinfluence coefficient matrix). C) Solve the matrix in (b) by writing an appropriate C++ program that gives the properties at State @ as required in of the variable problem (Fox and inc. Donalds) C example I xample 737 ISENTROPIC FLOW IN A CONVERGING CHANNEL Air flows isentropically in a channel. At section the Mach number is 0.3, the area is 0.001m2, and the absolute pressure and the temperature are 650 kPa and 62C, respectively. At section, the Mach number is 0.8. Sketch the channel shape, plot a Ts diagram for the process, and evaluate properties at section Verify that the results agree with the basic equations, Eys. 13.2. Given: Isentropic flow of air in a channel. At sections and the following data are given: M = 03, T1 = 62C, p1 - 650 kPa (abss), A1 = 0.001 m, and M2 = 08. Find: (a) The channel shape. (b) A Ts diagram for the process (c) Properties at section (d) Show that the results satisfy the basic equations. Flow N In ( a) Casting the of set of governing eqn into differential form b) Cast the ears from (9) matrix from Clie Ax=b) -de pendent properties you seek (differential form) b-differential form of area term A = Coefficient matrix Cinfluence coefficient matrix). C) Solve the matrix in (b) by writing an appropriate C++ program that gives the properties at State @ as required in of the variable problem (Fox and inc. Donalds) C example I xample 737 ISENTROPIC FLOW IN A CONVERGING CHANNEL Air flows isentropically in a channel. At section the Mach number is 0.3, the area is 0.001m2, and the absolute pressure and the temperature are 650 kPa and 62C, respectively. At section, the Mach number is 0.8. Sketch the channel shape, plot a Ts diagram for the process, and evaluate properties at section Verify that the results agree with the basic equations, Eys. 13.2. Given: Isentropic flow of air in a channel. At sections and the following data are given: M = 03, T1 = 62C, p1 - 650 kPa (abss), A1 = 0.001 m, and M2 = 08. Find: (a) The channel shape. (b) A Ts diagram for the process (c) Properties at section (d) Show that the results satisfy the basic equations. Flow N

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