• How does air exert pressure within their respective altitude? Discuss and explain your answer?
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- How does air exert pressure within their respective altitude? Discuss and explain your answer.
- Discuss and explain how the Compressible and Incompressible Continuity Equation is applied on an aircraft wing?
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- A woman of M equals 63KG stands on the ice the contact area between her ski in the ice is a equals 0.0058M^2. Part A. Express the forest at the person exerts on the ice F in terms of MNG you do not need to include the force of the column of air above her Part B. Calculate the numerical value of F in N Part C. Express the pressure on the ice from the person P in terms of F and A Part D. Calculate the number cool value of P in PAA train with cross-sectional area ?? is moving with speed ?? inside a long tunnel of cross-sectional area ?0 (?0 = 4??). Assume that almost all the air (density ρ) in front of the train flows back between its sides and the walls of the tunnel. Also, the airflow with respect to the train is steady and laminar. Take the ambient pressure and that inside the train to be ?0. If the pressure in the region between the sides of the train and the tunnel walls is p, then p0 – p = (7/2N) ρ vt2. The value of N is ____________?In figure 8, we found that the speed of water at point 1 increased from 2.01 m/s at 23 cm to 29.8 m/s at 40 cm going from point 1 to point 2. Calculate the pressure in position 1, given that the absolute pressure in point 2 is 2.06x10 N/m2 (atmospheric, as it must be). Zxp A, dv dx, V2 A, dV Y1 FLOW Figure 8
- The spring of the pressure gauge shown in the figure below has a force constant of 1 350 N/m, and the piston has a diameter of 1.40 cm. As the gauge is lowered into water in a lake, what change in depth causes the piston to move in by 0.700 cm? 4.635 X Your response differs from the correct answer by more than 10%. Double check your calculations. m VacuumAsap plzzx1. What do the flows and obstacles in rows 1 of the three tables suggest has happened to the ‘pressure difference’ across the rheostat? Explain why the data suggests this. What happens to the product for the rheostat (also on the first rows)? 2. What do the flows and obstacles on row 1 of table 1, row 2 of table 2 and row 3 of table 3 suggest has happened to the ‘pressure difference’ across the rheostat? Explain why the data suggests this. What happens to the product for the rheostat? 3. Using the evidence that we have found, can we say that ‘products’ are a measure of anything? If so, specify the quantity that ‘products’ measure. Explain.
- The figure below shows 5 containers of water. A and B have the same height, as do C and E. A and E have the same area on the bottom, as do B and C. D has the largest area and the lowest height. Rank the pressure at the bottom of each container, from least to most (least occurs first, most occurs last). AVİLI O D, A=B, C=E O C=B, A=E, D OD, С, В, А, Е ОС, В, А, Е, D O D, A-B, C, ЕQuestion 6 part cI didn't answer any of it I just pulled the list down so you can see the different options.