box. 2. Balance the REDOX reaction below in acidic solution.. H202(ag) + Cl02(aq) - ClOz(ag) + Oz(9)

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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PROBLEM SOLVING. Use four decimal places all throughout your solution. Show complete
solution. Keep your solutions organized and as neat as possible. Enclose all final answers with
a box.
2. Balance the REDOX reaction below in acidic solution.,
H20z(aq) + Cl02aq) + ClOz(aq) + Ozc)
3. For the reaction: Zn(s) + 2Ag*(aq) → Zn2(aq) 2Ag(s).
a. Determine the standard cell potential.
b. Is the reaction spontaneous? If yes, write the cell notation.
6. Co - 60 is used extensively in radiotherapy. Its half - life is 5.27 years. How many years
will it take to decrease to 30.0% of its original amount?
7. A 12.62 g sample of a compound containing only C, H and O produces 27.73g CO2
and 9.09 g H2O in a combustion analysis. Its molecular mass is found to be 300 g/mol.
Determine its (a) empirical formula (b) molecular formula.
8. Determine the amount of theoretical oxygen and theoretical air needed to burn
a.) 60 kg of butane (CaH1o)
b.) 20 kg of propane (CSH12)
c.) 80 kg of octane (CaH18)
Transcribed Image Text:PROBLEM SOLVING. Use four decimal places all throughout your solution. Show complete solution. Keep your solutions organized and as neat as possible. Enclose all final answers with a box. 2. Balance the REDOX reaction below in acidic solution., H20z(aq) + Cl02aq) + ClOz(aq) + Ozc) 3. For the reaction: Zn(s) + 2Ag*(aq) → Zn2(aq) 2Ag(s). a. Determine the standard cell potential. b. Is the reaction spontaneous? If yes, write the cell notation. 6. Co - 60 is used extensively in radiotherapy. Its half - life is 5.27 years. How many years will it take to decrease to 30.0% of its original amount? 7. A 12.62 g sample of a compound containing only C, H and O produces 27.73g CO2 and 9.09 g H2O in a combustion analysis. Its molecular mass is found to be 300 g/mol. Determine its (a) empirical formula (b) molecular formula. 8. Determine the amount of theoretical oxygen and theoretical air needed to burn a.) 60 kg of butane (CaH1o) b.) 20 kg of propane (CSH12) c.) 80 kg of octane (CaH18)
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