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(b) Solubility data for barium hydroxide and calcium hydroxide are given in the table below. (i) Use the data given in the table to calculate the concentration, in moldm^-3 of a saturated solution of calcium hydroxide (M_(r)=74.1) at 20^circ C __

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(b) Solubility data for barium hydroxide and calcium hydroxide are given in the table below.
(i) Use the data given in the table to calculate the concentration, in moldm^-3 of a
saturated solution of calcium hydroxide (M_(r)=74.1) at 20^circ C
__

(b) Solubility data for barium hydroxide and calcium hydroxide are given in the table below. (i) Use the data given in the table to calculate the concentration, in moldm^-3 of a saturated solution of calcium hydroxide (M_(r)=74.1) at 20^circ C __

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SerenExpert · Tutor for 3 years

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The concentration in \( \mathrm{mol} \mathrm{dm}^{-3} \) of a saturated solution of calcium hydroxide, at \( 20^{\circ} \mathrm{C} \) is [calculate]: <br /><br />\[ \text{Answer}= \frac{1.73\, \mathrm{g}/\mathrm{dm}^3}{74.1 \, \mathrm{g/mol}} = 0.023358471365505475 \, \mathrm{mol} \mathrm{dm}^{-3} \]<br /><br />Round to appropriate significant figures based on the problem's context, i.e., three significant figures.<br /><br />\[ \text{Answer}= 0.0234 \, \mathrm{mol} \mathrm{dm}^{-3} \]

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## Step 1: <br />To find the concentration in molar units, we should first convert the solubility from grams per decimetre cubed (\( \mathrm{g}/\mathrm{dm}^3 \)) to moles per decimetre cubed (\( \mathrm{mol}/\mathrm{dm}^3 \)). To do this, we can divide the solubility in \( \mathrm{g}/\mathrm{dm}^3 \) by the molar mass. <br /><br />### \[ \text{Concentration} = \frac{\text{Solubility}}{\text{Molar mass}} \]<br /><br />## Step 2: <br />Substitute the given values into this formula. The solubility is 1.73 \( \mathrm{g}/\mathrm{dm}^3 \) and the molar mass \( M_{\mathrm{r}} (=) \) 74.1 g/mol for calcium hydroxide. <br /><br />### \[ \text{Concentration} = \frac{1.73}{74.1} \]
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