10. Engr. Yebes and Engr Quadra were tasked with preparing two solutions for an experiment. Engr. Yebes dissolved a nonvolatile, non-electrolyte in 5 mL of water and diluted it to the mark of a 25 mL volumetric flask producing a 0.05 M solution. Engr. Quadra, on the other hand, simply dissolved a finite amount of sodium chloride in a 150 mL volumetric flask, initially containing 60 mL of deionized water, before diluting it to the mark, producing a 0.03 M aqueous solution. Both engineers, then took 20 mL aliquots of their respective solutions. Before beginning their experiment, both of them decided to have their lunch break, so they placed their aliquot samples in 50 mL beakers beside one another. Assuming that one hour is enough to reach equilibrium, what will be the volumes of the two respective aliquots upon their return?

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10. Engr. Yebes and Engr Quadra were tasked with preparing two solutions for an experiment. Engr. Yebes dissolved a
nonvolatile, non-electrolyte in 5 mL of water and diluted it to the mark of a 25 mL volumetric flask producing a 0.05 M
solution. Engr. Quadra, on the other hand, simply dissolved a finite amount of sodium chloride in a 150 mL volumetric
flask, initially containing 60 mL of deionized water, before diluting it to the mark, producing a 0.03 M aqueous solution.
Both engineers, then took 20 mL aliquots of their respective solutions. Before beginning their experiment, both of them
decided to have their lunch break, so they placed their aliquot samples in 50 mL beakers beside one another. Assuming
that one hour is enough to reach equilibrium, what will be the volumes of the two respective aliquots upon their return?
Transcribed Image Text:10. Engr. Yebes and Engr Quadra were tasked with preparing two solutions for an experiment. Engr. Yebes dissolved a nonvolatile, non-electrolyte in 5 mL of water and diluted it to the mark of a 25 mL volumetric flask producing a 0.05 M solution. Engr. Quadra, on the other hand, simply dissolved a finite amount of sodium chloride in a 150 mL volumetric flask, initially containing 60 mL of deionized water, before diluting it to the mark, producing a 0.03 M aqueous solution. Both engineers, then took 20 mL aliquots of their respective solutions. Before beginning their experiment, both of them decided to have their lunch break, so they placed their aliquot samples in 50 mL beakers beside one another. Assuming that one hour is enough to reach equilibrium, what will be the volumes of the two respective aliquots upon their return?
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