🤓 Based on our data, we think this question is relevant for Professor Villamil Otero's class at USF.

$\overline{){\mathbf{density}}{\mathbf{=}}\frac{\mathbf{mass}}{\mathbf{volume}}}$

$(\mathrm{density}=\frac{\mathrm{mass}}{\overline{)\mathrm{volume}}})\overline{)\mathbf{volume}}\phantom{\rule{0ex}{0ex}}\phantom{\rule{0ex}{0ex}}\overline{){\mathbf{mass}}{\mathbf{=}}{\mathbf{density}}{\mathbf{\times}}{\mathbf{volume}}}$

The density of benzene at 15 ^{o}C is 0.8787 g/mL. Calculate the mass of 0.1500 L of benzene at this temperature.

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Based on our data, we think this problem is relevant for Professor Villamil Otero's class at USF.