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    6.

    A chemist measures a reaction rate as 2.5imes10βˆ’32.5 imes 10^{-3} mol Lβˆ’1^{-1} sβˆ’1s^{-1}. Express this rate in molecules cmβˆ’3cm^{-3} ΞΌsβˆ’1\mu s^{-1} (molecules per cubic centimeter per microsecond). Avogadro's number = 6.022imes10236.022 imes 10^{23} molecules/mol.

    A

    1.5imes10121.5 imes 10^{12} molecules cmβˆ’3cm^{-3} ΞΌsβˆ’1\mu s^{-1}

    B

    2.5imes10182.5 imes 10^{18} molecules cmβˆ’3cm^{-3} ΞΌsβˆ’1\mu s^{-1}

    C

    1.5imes10151.5 imes 10^{15} molecules cmβˆ’3cm^{-3} ΞΌsβˆ’1\mu s^{-1}

    D

    4.2imes10204.2 imes 10^{20} molecules cmβˆ’3cm^{-3} ΞΌsβˆ’1\mu s^{-1}

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    7.

    A hypothetical equation is given as ρ=aP+bT2\rho = a \sqrt{P} + bT^2, where ρ\rho is density, PP is pressure, and TT is temperature. The dimensions of ab\frac{a}{b} are:

    A

    [Mβˆ’1/2^{-1/2} L1/2^{1/2} T1^{1} \Theta2^{2}]

    B

    [M1/2^{1/2} Lβˆ’1/2^{-1/2} Tβˆ’1^{-1} \Thetaβˆ’2^{-2}]

    C

    [M Lβˆ’3^{-3} \Thetaβˆ’2^{-2}]

    D

    [M1/2^{1/2} Lβˆ’5/2^{-5/2} T1^{1}]

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