Titanium is a strong, lightweight, corrosion-resistant metal that is used in rockets, aircraft, jet, engines, and bicycle frames. It is prepared by the reaction of Titanium (IV) chloride with molten magnesium between 950 °C and 1150 °C. TiCl4(g) + 2Mg() - Ti(s) + 2MgCl20) In a certain industrial operation 3.54 x 107 g of TiCl4 are reacted with 1.13 x 107 g of Mg. (i)) What is the theoretical yield of Ti in grams? (ii) what is the percent yield if 7.91 x 106 g of Ti are obtained?

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Titanium is a strong, lightweight, corrosion-resistant metal that is used in rockets, aircraft, jet,
engines, and bicycle frames. It is prepared by the reaction of Titanium (IV) chloride with molten
magnesium between 950 °C and 1150 °C.
TiCl4(g) + 2Mg(1)
→
Ti(s) + 2MgCl2(1)
In a certain industrial operation 3.54 x 107 g of TiCl4 are reacted with 1.13 x 107 g of Mg. (i) What
is the theoretical yield of Ti in grams? (ii) what is the percent yield if 7.91 x 106 g of Ti are
obtained?
Transcribed Image Text:Titanium is a strong, lightweight, corrosion-resistant metal that is used in rockets, aircraft, jet, engines, and bicycle frames. It is prepared by the reaction of Titanium (IV) chloride with molten magnesium between 950 °C and 1150 °C. TiCl4(g) + 2Mg(1) → Ti(s) + 2MgCl2(1) In a certain industrial operation 3.54 x 107 g of TiCl4 are reacted with 1.13 x 107 g of Mg. (i) What is the theoretical yield of Ti in grams? (ii) what is the percent yield if 7.91 x 106 g of Ti are obtained?
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