If \( V=\sqrt{\frac{\gamma P}{\rho}} \), then dimensions of \( \gamma \) are: P W. (1) \( \left[...
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If \( V=\sqrt{\frac{\gamma P}{\rho}} \), then dimensions of \( \gamma \) are:
P
W.
(1) \( \left[\mathrm{M}^{0} \mathrm{~L}^{0} \mathrm{~T}^{0}\right] \)
(2) \( \left[\mathrm{M}^{0} \mathrm{~L}^{0} \mathrm{~T}^{-1}\right] \)
(3) \( \left[\mathrm{M}^{1} \mathrm{~L}^{0} \mathrm{~T}^{0}\right] \)
(4) \( \left[\mathrm{M}^{0} \mathrm{~L}^{1} \mathrm{~T}^{0}\right] \)
\( \diamond \)
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