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Question- Nuclear Waste Disposal is one of the major concerns of the nuclear industry. In choosing a safe and stable environment to store nuclear wastes, consideration must be given to the heat released during nuclear decay. As an example, please consider the Beta decay of Beginning with on mole of 90Sr, Calculate the amount of heat released (in Kj) in one year, corresponding to the number of moles of 90Sr decayed to 90Zr
I want you to clarify the chemistry in this above problem.
Esters and amides can be most easily and conveniently prepared by nucleophilic acyl substitution reaction on
This solution required 23.52 mL of 0.02318 M Zn2 for back titration. The Ni2 extracted from the column was treated witn 25.00 mL of 0.04299 M EDTA. How many milliliters of 0.02318 M Zn2 is required for the back titration of the Ni2 solution
How many grams of ammonium sulfate can be produced if 30.0 mol of H2SO4 react with excess NH3 according to the equation 2NH3(aq) + H2SO4(aq) => (NH4)2SO4(aq).
The reaction of H2 and F2 produces HF with PH= -269 kJ/mol of HF. If the H-H and H-F bond energies are 436 and 567 kJ/mol, respectively, what is the F-F bond energy
Using the moles of air, temperature of air and slope of the Air Volume vs. 1/pressure graph, calculate the ideal gas constant.
A sample of gas occupies 1.55 L at 27.0°C and 1.00 atm pressure. What will the volume be if the pressure is increased to 50.0 atm, but the temperature is kept constant?
Use the following balanced equation for the problem below: 2HCl + Na2CO3 = 2NaCl + CO2 + H2O If 35.0 gm of Na2CO3 is reacted with 18.0 gm of HCl, how many grams of CO2 are produced
The mixture had an observed specific rotation of +15.3 degrees. If it is known that the specific rotation of the R enantiomer is -30.8 degree, determine the percentage of each isomer in the mixture.
At 20 degrees C the vapor pressure of pure methanol (CH3OH) is 89.0 torr and of pure water (H2O) is 17.5 torr. A solution of methanol and water has a total vapor pressure of 52.9 torr at 20 degrees C.
Obtain expressions for the following partial derivatives for a diatomic ideal gas, assuming that its translational, rotational, and vibrational motions all behave classically.
What volume of 6.00 M sodium hydroxide in milliliters must be diluted to 232.0 mL to make a 1.50 M solution of sodium hydroxide
consider an ideal gas being heated reversibly from t1 to t2 at a constant volume and then allowed to expand
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