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For the reaction, calculate how many grams of the product form when 1.6g of Cl2 completely reacts. Assume that there is more than enough of the other reactant. 2 Na (s) + Cl2 (g) ----> 2 NaCl (s).
Find the equation for work of a reversible isothermal compression of 1mol of a gas in a piston cylinder assembly if the molar volume of the gas is given by V = [(RT)/P] + b; where R and b are positive constants.
How many grams of calcium phosphate are theoretically produced if we start with 3.40 moles of Ca(NO3)2 and 2.40 moles of Li3PO4
An electron in the n=4 energy level of a He+ atom could be in any number of degenerate energy states or orbitals. List all of the possible values of the 1 and m1 quantum numbers for n=4, identify the 1 values in terms of the usual letters
You need to produce a buffer with pH = 4.1 by dissolving a weighed amount of sodium formate (FW = 68.0072) in 500-mL of 0.45-M formic acid
how many milliliters of a .250 m sulfuric acid solution would be required to completely react with 2.398 grams of solid
If a balloon containing 1,200 L of gas at 25C and 760 mm Hg pressure ascends to an altitude where the pressure is 380 mm Hg and the temperature is 54C, the volume will be.
In the production of ammonia via the Haber process, nitrogen gas is combined with hydrogen gas according to the following reaction.
The value of the equilibrium constant for this reaction is 2.2 at 700 celsius. What will be the concentrations of all gases at equilibrium, when 2.00 mol of CO and 2. mol of H20 are mixed in a 2 liter reactor and heated to 700.
Problem- Draw the skeletal structure of the organic species containing the carbonyl functionality needed to form 2-phenylethan-1-ol upon metal-catalyzed hydrogenation.
Enter the correct expression for the reaction rate corresponding to each of the following mechanisms:
CO exhibits an infrared absorption band at 2143 cm^-1 that is attributed to the symmetric stretching transition. Assuming this corresponds to a transition from the v=0 to v=1 vibrational quantum number
A person is exposed for three days to identical amounts of two different nuclides that emit positrons of roughly equal energy. The half-life of nuclide A is 18.5 days and the half-life of nuclide B is 255 days.
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