Chapter 8: Problem 126
When barium metal is heated in chlorine gas, a binary compound forms that consists of \(65.95 \%\) Ba and \(34.05 \%\) Cl by mass. Calculate the empirical formula of the compound.
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Chapter 8: Problem 126
When barium metal is heated in chlorine gas, a binary compound forms that consists of \(65.95 \%\) Ba and \(34.05 \%\) Cl by mass. Calculate the empirical formula of the compound.
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If \(2.461 \mathrm{g}\) of metallic calcium is heated in a stream of chlorine gas, \(4.353 \mathrm{g}\) of \(\mathrm{Cl}_{2}\) is absorbed in forming the metal chloride. Calculate the empirical formula of calcium chloride.
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A compound was analyzed and found to have the following percentage composition: aluminum, \(15.77 \% ;\) sulfur, \(28.11 \% ;\) oxygen, \(56.12 \% .\) Calculate the empirical formula of the compound.
Using the average atomic masses given inside the front cover of this text, calculate the mass in grams of each of the following samples. a. 5.0 mol of potassium b. 0.000305 mol of mercury c. \(2.31 \times 10^{-5}\) mol of manganese d. 10.5 mol of phosphorus e. \(4.9 \times 10^{4}\) mol of iron f. 125 mol of lithium g. 0.01205 mol of fluorine
When \(1.00 \mathrm{mg}\) of lithium metal is reacted with fluorine gas \(\left(\mathrm{F}_{2}\right),\) the resulting fluoride salt has a mass of \(3.73 \mathrm{mg}\). Calculate the empirical formula of lithium fluoride.
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