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1.Based on the Hume-Rothery Rules, speculate on the possible driving forces behind the tendency for ordering in this system.
2.Speculate on whether you would expect a mixture of AuAg3 to show a greater or lesser tendency toward ordering in this system and explain your rationale (use physical data available in the textbook).
3. Represent the defect chemistry for the introduction of Y2O3 as a solute in a ZrO2 host crystal using Kroger-Vink notation.
4.In the following systems, which would you expect to show complete solid-solution behavior. Justify your answers.
(a) Pt-Ni
(b) Cu-Na
(c) Al-Cr
(d) ZnTe dSe (both compounds crystallize in the zinc-blende fcc structure).
If the average collection period is 55 days, what is the receivables turnover?
Not more than 5 H-bond donors (OH or NH) Not more than 10 H-bond acceptors (O or N) MW less than 500 g/mol What is the rational for the Rule of Five?
34.62 mL sample of .1510 molar NaOH was needed to completely neutralize 50 mL of an H2SO4 solution. what is the concentration of the origional sulfuric acid solution?
Determine the subunit composition of this protein from the following information: 10 points Molecular mass of the native proteinby gel filtration is 300 kD Molecular mass by SDS-PAGE
How many grams of lanthanum chloride LaCl3 must be added to 1 kg of water to lower the freezing point of water by 1.1 degrees C?
If all of this O3 is converted to oxygen, O2, at the same temperature and pressure then what will be the volume of the oxygen formed?
A .117 gram sample of a metal reacts with hydrpchloric acid to produce 36.3mL od dry hydrogen gas. what is the equivalent weight of this metal.
A similar question was asked before, but the formatting of the answer made it unreadable. So, I am asking it again. I have a thermodynamic system with three states in the canonical ensemble
Consider 4 L of a buffer composed of 2 M HCN and 3 M NaCN? How many moles of strong acid could this buffer withstand?
A 1L flask is filled with 0.25 mol N2and 0.65 mol H2 at 20 oC. These gases react to make NH3, heating up the flask to a temperature of 45 oC.
What is the theoretical yield of bromobenzene in this reaction when 30.0 g of benzene reacts with 65.0 g of bromine?
How many liters of O2 are needed to react completely with 45.0L of H2S at STP? 2H2S(g) + 3O2(g) -> 2SO2(g) +2H20(g)
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