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Question
d. calculate the volume, in liters measured at the conditions in the laboratory, that the h₂(g) produced in the reaction would have if it were dry.
e. the laboratory procedure specified that the concentration of the hcl solution be 2.0 m, but only 12.3 m hcl solution was available. describe the steps for safely preparing 50.0 ml of 2.0 m hcl(aq) using 12.3 m hcl solution and materials selected from the list below. show any necessary calculation(s).
Step1: Use dilution formula
The dilution formula is \(C_1V_1 = C_2V_2\), where \(C_1 = 12.3\space M\), \(C_2=2.0\space M\), and \(V_2 = 50.00\space mL\).
Step2: Solve for \(V_1\)
Rearrange the formula to \(V_1=\frac{C_2V_2}{C_1}\). Substitute the values: \(V_1=\frac{2.0\space M\times50.00\space mL}{12.3\space M}\)
Step3: Describe the preparation steps
- Use the \(10.0\space mL\) graduated cylinder to measure out approximately \(8.13\space mL\) of \(12.3\space M\space HCl\).
- Transfer the measured \(HCl\) to the \(50.00\space mL\) volumetric flask.
- Add distilled water to the flask, filling it up to the mark (using the dropper for the final adjustments to ensure accuracy).
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The volume of \(12.3\space M\space HCl\) needed is approximately \(8.13\space mL\). The steps are: measure \(8.13\space mL\) of \(12.3\space M\space HCl\) with \(10.0\space mL\) graduated cylinder, transfer to \(50.00\space mL\) volumetric flask, and dilute to mark with distilled water.