ment, 8CE+) = %3D is the distributi

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Given:
G) Density moment, 8CÊ+) = [4cx,7,t) du
where f is the distribuution function
and dü = d3 w = du,duyduz
lii) Momentum density,
(ii) Total energy density.
%3D
(iv) Total inteenal energy density.
partide velocity relative
to the fluid velouty
where Ur : -u,
Show that;
(A) Relative velocity moment off'is zero
i.e.
(B) To tal and internal
densities at
energy.
given position and time are related
as,
se = SE - 1 31ū1?
use the identity, lūri=lūP-260.ũ) +lūl?
Transcribed Image Text:Given: G) Density moment, 8CÊ+) = [4cx,7,t) du where f is the distribuution function and dü = d3 w = du,duyduz lii) Momentum density, (ii) Total energy density. %3D (iv) Total inteenal energy density. partide velocity relative to the fluid velouty where Ur : -u, Show that; (A) Relative velocity moment off'is zero i.e. (B) To tal and internal densities at energy. given position and time are related as, se = SE - 1 31ū1? use the identity, lūri=lūP-260.ũ) +lūl?
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