2. a) A mixture of LiHCO3 and sand weighing 9.20 g is heated. After cooling, the residue composed of Li₂CO3 and sand weighs 6.80 g. Assuming that the sand in the sample is unaf- fected by the heat, calculate the mass loss due to the escape of gaseous CO₂ and H₂O. b) Calculate the mass of LiHCO3 in the original mixture. 2.poite eau violsrodols noites votmods.J c) Calculate the mass of sand in the mixture. noitsups boonsled ort ni mwo har vi asoros b (g) 0,00 Oil to lom glassiqmos bekonya d) Calculate the mass percent of LiHCO3 in the mixture. ed Urw 00420g e) What must be the mass percent of sand in the mixture?

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2. a) A mixture of LiHCO3 and sand weighing 9.20 g is heated. After cooling, the residue
composed of Li₂CO3 and sand weighs 6.80 g. Assuming that the sand in the sample is unaf-
fected by the heat, calculate the mass loss due to the escape of gaseous CO₂ and H₂O.
b) Calculate the mass of LiHCO3 in the original mixture.
recou violerodols
noite noterade.J
c) Calculate the mass of sand in the mixture.
noitsups boonsled odi mi
andead w
(₂) O.H
00 id to lom
d) Calculate the mass percent of LiHCO3 in the mixture.
e) What must be the mass percent of sand in the mixture?
mmosel Banaras
Transcribed Image Text:2. a) A mixture of LiHCO3 and sand weighing 9.20 g is heated. After cooling, the residue composed of Li₂CO3 and sand weighs 6.80 g. Assuming that the sand in the sample is unaf- fected by the heat, calculate the mass loss due to the escape of gaseous CO₂ and H₂O. b) Calculate the mass of LiHCO3 in the original mixture. recou violerodols noite noterade.J c) Calculate the mass of sand in the mixture. noitsups boonsled odi mi andead w (₂) O.H 00 id to lom d) Calculate the mass percent of LiHCO3 in the mixture. e) What must be the mass percent of sand in the mixture? mmosel Banaras
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