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  1. As with the normal shock case, a control volume analysis is applied to the oblique shock flow, using the control volume shown in the figure. The top and bottom boundaries are chosen to lie along …

  2. OBLIQUE SHOCKS In this lesson, we will: Define Oblique Shocks and compare to normal shocks Discuss The θ-β-Ma Relationship and provide some qualitative comments about it Do two example …

  3. Below are depicted two triangles that have sides of length of length a and b, and an angle A opposite the side of length a. Solve the triangle ABC given that B = 113.72 , a = 189.6, and b = 243.8. The interior …

  4. Can have straight/curved, 2-d/3-d oblique shocks will examine straight, 2-d oblique shocks

  5. Properties across Oblique ! Shock wave ~ f(M1, β )! θis the geometric angle! that “forces” the flow! How do we relate θ to β ?!

  6. In reality normal shock waves don’t often occur. Oblique shock waves are more common. We would like to know what causes them, and how we can calculate flow properties around them. When an aircraft …

  7. The following slides show the steps in creating oblique pictorials of the puzzle piece shown below. Imagine a glass box that encloses the entire object. 1. Sketch a rectangle to represent the overall …