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    3.

    The dimensions of power are

    A

    M1L2T3{M^1}{L^2}{T^{ - 3}}

    B

    M2L1T2{M^2}{L^1}{T^{ - 2}}

    C

    M1L2  T1{M^1}{L^2}\;{T^{ - 1}}

    D

    M1L1T2{M^1}{L^1}{T^{ - 2}}

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    6.

    The dimensions of pressure are:

    A

    [MLT2]\left[ {ML{T^{ - 2}}} \right]

    B

    [ML1T2]\left[ {M{L^{ - 1}}{T^2}} \right]

    C

    [ML1T2]\left[ {M{L^{ - 1}}{T^{ - 2}}} \right]

    D

    [MLT2]\left[ {ML{T^2}} \right]

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    8.

    If the velocity of light cc, gravitational constant GG, and Planck's constant hh are chosen as fundamental units, then the dimensions of mass in this system are:

    A

    [c1/2G1/2h1/2][c^{1/2}G^{-1/2}h^{1/2}]

    B

    [c1/2G1/2h1/2][c^{-1/2}G^{1/2}h^{1/2}]

    C

    [c1/2G1/2h1/2][c^{1/2}G^{1/2}h^{-1/2}]

    D

    [c1/2G1/2h1/2][c^{-1/2}G^{-1/2}h^{-1/2}]

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    9.

    The dimensional formula for pressure is:

    A

    [MLT2][MLT^{-2}]

    B

    [ML1T2][ML^{-1}T^{-2}]

    C

    [ML2T2][ML^2T^{-2}]

    D

    [ML2T2][ML^{-2}T^{-2}]

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