A particular metallic element, S, has a heat capacity of 0.22 J/g.K and it forms an oxide that contains 3.75 of S per gram of oxygen. 1. Using the Law of Dulong and Petit, estimate the molar of the metal, S Molar Mass - 113.64 g/mol. 2. From the composition of the oxide and the molar mass of oxygen, determine the mass of S that combines with each mole of oxygen. Mass of S that combines with each mole of oxygen = 60 g 3. Use your estimate of the mass from (1) and the information from (2) to determine the empirical formula of the oxide (moles of M that combine with each mole of 0). EF: S,03 4. Now that you know the composition of the oxide and its formula, what is the value of the atomic mass of the metal M? What is the identity of M?
A particular metallic element, S, has a heat capacity of 0.22 J/g.K and it forms an oxide that contains 3.75 of S per gram of oxygen. 1. Using the Law of Dulong and Petit, estimate the molar of the metal, S Molar Mass - 113.64 g/mol. 2. From the composition of the oxide and the molar mass of oxygen, determine the mass of S that combines with each mole of oxygen. Mass of S that combines with each mole of oxygen = 60 g 3. Use your estimate of the mass from (1) and the information from (2) to determine the empirical formula of the oxide (moles of M that combine with each mole of 0). EF: S,03 4. Now that you know the composition of the oxide and its formula, what is the value of the atomic mass of the metal M? What is the identity of M?
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