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Kinematic factors expansion

It remains to consider the Douglas-Kroll and Barysz-Sadlej-Snijders transformations. Since these corrections have leading order the magnetic terms of this order arise from the commutator [V, a (p - - eA)] = [V, kinematic factors, and are of leading order c. ... [Pg.494]

Using pitot tube as a differential pressure detection device, it need to consider factors that affect measurement accuracy, including the pitot tube coefficient, air density, temperature, pressure, thermal expansion coefficient, kinematic viscosity, and installation locations. [Pg.1096]

Virial equation of state - An equation relating the pressure p, molar volume V, and temperature T of a real gas in the form of an expansion in powers of the molar volume, viz., pV = Rr(l+ V " +CV +. ..), where R is the molar gas constant. B is called the second virial coefficient, C the third virial coefficient, etc. The virial coefficients are functions of temperature. Viscosity (q) - The proportionality factor between sheer rate and sheer stress, defined through the equation f = q A(dv/dv), where F is the tangential force required to move a planar surface of area A at velocity v relative to a parallel surface separated from the first by a distances Sometimes called dynamic or absolute viscosity. The term kinematic viscosity (symbol v) is defined as q divided by the mass density. [Pg.123]


See other pages where Kinematic factors expansion is mentioned: [Pg.478]    [Pg.585]    [Pg.314]    [Pg.310]    [Pg.321]    [Pg.67]    [Pg.18]    [Pg.1]    [Pg.878]    [Pg.659]   
See also in sourсe #XX -- [ Pg.305 ]




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Kinematic factor

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