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Problem- Calculate the Energy (in J/mol) and Constant-Volume Heat Capacity and Constant-Pressure Heat capacity (in J/mol*K) for the following gas molecules at 298K using the Equipartition Theorem.
1) Xe
2) CO2
3) CO
4) C3H8
5) CH5+
Mention step wise computation of your work done
What is the resulting pH of this solution? b. The OCl- form of this acid is less effective as a disinfectant
Which type of mutation is expressed when a DNA sequence changes from GGA TCA CCG GAA
The human body obtains 955 of energy from a candy bar. If this energy were used to vaporize water at 100.0 , how much water (in liters) could be vaporized? (Assume the density of water is 1.00.)
If you predicted that no ionic compound would form from the reaction in part e, what minimum amount of AX(s) lattice energy might lead to compound formation
State a balanced chemical equation for the reaction of CuSO4*5H2O with ammonia to for [Cu(NH3)4]SO4*H2O
Calculate the pH and pOH of a solution that has an H2O+ concentration of 1.3 x 10 -6M.
Nitrogen forms several oxides. At STP what are the densities of NO2, N2O4, and N2O5? How many volumes of oxygen are required to convert one volume of N02 into N2O5
Explain in detail including all resonance arguments why electron withdrawing groups are found to be meta directors,
Problem- 1.50 mol CO2 and 1.50 mol H2 are placed in a 750 mL container at 396 degrees Celsius the equilibrium CO2- -> +H2 CO +H20 is achieved. Kc = 0.802 and Enthalpy= -91 kJ
What would you expect to happen if an unknown solution that may contain ions from Groups I through IV were treated with Na2CO3 under basic conditions?
A solution of ethanol (C2H5OH) in water is prepared by dissolving 72.0 mL of ethanol (density = 0.79 g/cm3) in enough water to make 300.0 mL of solution. What is the molarity of the ethanol in this solution?
A 0.1018 g sample of copper metal is dissolved in 14 mL of concentrated HNO3 to form Cu2+ ions and then water is added to make a total volume of 206.3 mL. (Calculate the molarity of Cu2+.)
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