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The student used a solution of sodium hydroxide of concentration 4.00g/da Calculate the mass of sodium hydroxide in 25.0cm^3 of this solution. 1dm^3=1000cm^3

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The student used a solution of sodium hydroxide of concentration 4.00g/da
Calculate the mass of sodium hydroxide in 25.0cm^3 of this solution.
1dm^3=1000cm^3

The student used a solution of sodium hydroxide of concentration 4.00g/da Calculate the mass of sodium hydroxide in 25.0cm^3 of this solution. 1dm^3=1000cm^3

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AderynMaster · Tutor for 5 years

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\( Mass = 0.1g \) <br /><br />Now that all conversions have been made, the calculation provides the mass of sodium hydroxide in the \( 25 \, cm^3 \) of solution is 0.1 grams.

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## Step1: <br />First, we start with the solution that the density of the sodium hydroxide solution is given as \(4.00 \, g/dm^3 \).<br /><br />## Step2:<br />To obtain the desired solution we need to use the same units, so we can convert \( 25.0 \, cm^3\) of the volume into \( dm^3 = \frac{1}{1000} \) as \( 25.0 \, cm^3 = 25.0 * 10^{-3} = 0.025 \, dm^3 \).<br /><br />## Step3:<br />By the basic relationship \( density = mass/volume \), we shape the formula to get \( mass= density * volume \). Analogously, in our situation, we will have \( mass= density[4.00]<br />* volume[0.025] \).<br /><br />By using the formula above and following the proper conversion, we apply all of these according to the relationship that was mentioned.<br /><br />### **Formula**: \( Mass = 4.00 *0.025 \)
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