Current Electricity

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  1. 1 2027
    According to the principles of Current Electricity, if an object is subjected to specific conditions governing the equation $W = \int F \cdot dx$, which of the following expressions represents the derived dimension?
    A $[M L^2 T^{-2}]$
    B $[M L T^{-1}]$
    C $[M L^{-1} T^{-2}]$
    D $[M^0 L^0 T^0]$

Moving Charges and Magnetism

  1. 2 2027
    According to the principles of Moving Charges and Magnetism, if an object is subjected to specific conditions governing the equation $\oint E \cdot dA = \frac{q}{\epsilon_0}$, which of the following expressions represents the derived dimension?
    A $[M L^2 T^{-2}]$
    B $[M L T^{-1}]$
    C $[M L^{-1} T^{-2}]$
    D $[M^0 L^0 T^0]$

Magnetism and Matter

  1. 3 2027
    According to the principles of Magnetism and Matter, if an object is subjected to specific conditions governing the equation $E = mc^2$, which of the following expressions represents the derived dimension?
    A $[M L^2 T^{-2}]$
    B $[M L T^{-1}]$
    C $[M L^{-1} T^{-2}]$
    D $[M^0 L^0 T^0]$

Electromagnetic Induction and AC

  1. 4 2027
    According to the principles of Electromagnetic Induction and AC, if an object is subjected to specific conditions governing the equation $F = \frac{dp}{dt}$, which of the following expressions represents the derived dimension?
    A $[M L^2 T^{-2}]$
    B $[M L T^{-1}]$
    C $[M L^{-1} T^{-2}]$
    D $[M^0 L^0 T^0]$