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  2. Choked flow - Wikipedia

    en.wikipedia.org/wiki/Choked_flow

    where is the heat capacity ratio / of the gas and where is the total (stagnation) upstream pressure. For air with a heat capacity ratio =, then =; other gases have in the range 1.09 (e.g. butane) to 1.67 (monatomic gases), so the critical pressure ratio varies in the range < / <, which means that, depending on the gas, choked flow usually ...

  3. Stodola's cone law - Wikipedia

    en.wikipedia.org/wiki/Stodola's_cone_law

    For a given outlet pressure , flow rates change depending on the inlet pressure as an arc of hyperbola in a plane parallel to ˙. Usually, Stodola's cone does not represent absolute flow rates and pressures, but rather maximum flow rates and pressures, with the maximum values of the diagram having in this case the value of 1.

  4. Ferriman–Gallwey score - Wikipedia

    en.wikipedia.org/wiki/Ferriman–Gallwey_score

    With each ethnic group, the amount of hair expected for that ethnicity should be considered. For example, in Caucasian women, a score of 8 or higher is regarded as indicative of androgen excess. The method was further modified in 2001 to include a total of 19 locations, with the 10 extra locations being: sideburns , neck , buttocks , inguinal ...

  5. The best hair growth products for women in 2025, tried ... - AOL

    www.aol.com/lifestyle/best-hair-growth-products...

    Key Ingredient: 5% Minoxidil | Best for: Thinning and Shedding Perhaps one of the most recognizable brands when it comes to hair loss, Rogaine offers FDA-approved products for both men and women ...

  6. Isentropic nozzle flow - Wikipedia

    en.wikipedia.org/wiki/Isentropic_Nozzle_Flow

    As the pressure is reduced still further, a pressure is reached that result in M = 1 at the throat with subsonic flow throughout the remainder of the nozzle. There is another receiver pressure substantially below that of curve C that also results in isentropic flow throughout the nozzle, represented by curve D; after the throat the flow is ...

  7. Discharge coefficient - Wikipedia

    en.wikipedia.org/wiki/Discharge_coefficient

    In a nozzle or other constriction, the discharge coefficient (also known as coefficient of discharge or efflux coefficient) is the ratio of the actual discharge to the ideal discharge, [1] i.e., the ratio of the mass flow rate at the discharge end of the nozzle to that of an ideal nozzle which expands an identical working fluid from the same initial conditions to the same exit pressures.

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