Recent content by Amr719

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    Need to be sure of this boolean algebra problem's solution

    Homework Statement Express the function Y= (abd + c)' + ((acd)'+(b)')' as the complete disjunctive normal form: 2.1 by applying Boole's theorerm, Homework EquationsThe Attempt at a Solution I separated the equations to two terms (T1,T2) T1= (abd + c)' T2=((acd)'+(b)')' T1= (abd+c)'...
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    Can some one explain this Code to me

    Can someone tell me why he wrote m_dot*Q_out ? the equation given is P=m(h_2-h_1)
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    C/C++ C++ Program Problem: Solutions & Tips

    No I understand the description. But I don't understand the form of writing the code . Why in the first line he wrote units -500 and why in the second line he wrote units - 1000
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    C/C++ C++ Program Problem: Solutions & Tips

    I cannot Understand the marked lines
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    The velocity profile for viscous and non-viscous fluids

    I want to know if the velocity profile is uniform for viscous fluids or not ?
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    Stress Analysis Problem 1: Variables, Given Data & Equations - Homework Solution

    1. The problem statement, all variables and given/kno wn dataHomework EquationsThe Attempt at a Solution
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    What should I do if didn't find the given pressure?

    now I know if I didn't find a table for a specific pressure I should interpolate .Do I understand correctly ?
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    What should I do if didn't find the given pressure?

    Why what ? Why it works here ?
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    What should I do if didn't find the given pressure?

    h(250C,1.5MPa)=2899.3+((250-240)/(280-240))*(2991.7-2899.3)=2922.4
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    What should I do if didn't find the given pressure?

    Table for 1.0MPa : Table for 1.5MPa: T=240,h=2920.4 T=240,h=2899.3 T=280,h=3008.2 T=280,h=2991.7
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    What should I do if didn't find the given pressure?

    No I know it but like I said before I'm not familiar with it because my teacher doesn't use this method. That's all
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    What should I do if didn't find the given pressure?

    That's the question. Which table ? I don't have a table for the pressure 1.1MPa . I have for 1.0 MPa and for 1.5 MPa
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