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1. The process of finding an empirical formula from the mols of each component in the sample includes normalizing all values bases on a scale

1. The process of finding an empirical formula from the mols of each component in the sample includes "normalizing" all values bases on a scale of "1." This is accomplished by dividing each value by the least value on the list to generate the normalized values, where at least one value becomes "1". Normalize the values from the previous question. a. fraction numerator 5.302 over denominator 0.8838 end fraction equals 5.999 fraction numerator 0.8839 over denominator 0.8838 end fraction equals 1.000 fraction numerator 9.72 over denominator 0.8838 end fraction equals 11.0 fraction numerator 0.8838 over denominator 0.8838 end fraction equals 1.000 b. fraction numerator 5.3 over denominator 0.86 end fraction equals 6.2 fraction numerator 0.86 over denominator 0.86 end fraction equals space 1.0 fraction numerator 9.7 over denominator 0.86 end fraction equals 11.3 fraction numerator 0.88 over denominator 0.86 end fraction equals 1.0 2. What is the empirical formula using the previous question's results? a. (C12N2H22O2)n b. (C6N1H11O1)n c. (C3N0.5H5.5O0.5)n 3. Using the same method in the three previous questions, determine the empirical formula for a compound having 26.7 %P, 12.1 %N, 61.2 %Cl. a. (PNCl2)n b. (P2N2Cl4)n c. (P3N3Cl6)n

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