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    3.

    The dimensions of coefficient of self inductance are

    A

    [ML2T2A2]\left[ {{\rm{M}}{{\rm{L}}^2}{{\rm{T}}^{ - 2}}{{\rm{A}}^{ - 2}}} \right]

    B

    [ML2T2A1]\left[ {{\rm{M}}{{\rm{L}}^2}{{\rm{T}}^{ - 2}}{{\rm{A}}^{ - 1}}} \right]

    C

    [MLT2A2]  \left[ {{\rm{ML}}{{\rm{T}}^{ - 2}}{{\rm{A}}^{ - 2}}} \right]{\rm{\;}}

    D

    [MLT2A1]  \left[ {{\rm{ML}}{{\rm{T}}^{ - 2}}{{\rm{A}}^{ - 1}}} \right]{\rm{\;}}

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    6.

    The dimensions of RL\frac{R}{L} are

    [here, R=electric resistance, L=self inductance]

    A

    [T2]\left[ {{{\rm{T}}^{ - 2}}} \right]

    B

    [T1]\left[ {{{\rm{T}}^{ - 1}}} \right]

    C

    [ML1]\left[ {{\rm{M}}{{\rm{L}}^{ - 1}}} \right]

    D

    [T]\left[ T \right]

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    10.

    Inductance L can be dimensionally represented as

    A

    ML2T2A2M{L^2}{T^{ - 2}}{A^{ - 2}}

    B

    ML2T4A3M{L^2}{T^{ - 4}}{A^{ - 3}}

    C

    ML2T2A2M{L^{ - 2}}{T^{ - 2}}{A^{ - 2}}

    D

    ML2T4A3M{L^2}{T^4}{A^3}

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