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a) Write down the time dependent schrodinger equation for an electron trapped in a one-dimensional infinite potential well of 130 pm wide
b) what is the potential energy function in this case?
c)What are the first four stationary state energies?
d)What are the first four time dependent stationary state wave functions?
e) what are the first four stationary state probability distriputions for the electron?
f) what frequency photon will excite an electron, trapped in this well in its ground state, to jump up to the fourth stationary state?
A mass of mercury occupies .750L. What volume would an equal mass of ethanol occupy if mercury's density is 13.546 g/mL and the density of ethanol is .789 g/mL?
Given that Kp for 2 SO2(g) + O2(g)-->/
Observe while adding 0.5 mL of 6M HCl to 1 mL samples of the anion solutions and then add 5 drops of 0.1M barium nitrate and observe again.
In the molecular orbital model of benzene, the six p-orbitals combine to form how many molecular orbitals
Harmonic Function Morse Function Lennard Jones Function How do I determine the frequency of an absorption spectroscopy line
In this exercise it was assumed that the initial temperature of the metal was the same as that of the boing water. Qualatively, how would the calculated specific heat of the metal be affected
Elements, which has the largest first ionization energy and equation correctly represents the first ionization of calcium?
a variable-mass raindrop in a rocket-propulsion problem the mass is variable. another such problem is a raindrop
Calculate the change in entropy that occurs when 18g of ice at -10C is placed in 54g water at 100C in a perfectly insulated vessel. assume that the molar heat capacity for h2o (s) is 38 J/Kmol and for h2o(l) is 76 J/Kmol and themolar entropy of su..
a solution contains 4.64g kcl in 178 ml of solution. the density of the kcl solution is 1.14 gml. what is the molarity
Calculate the concentration of Al3+ in a saturated aqueous solution of Al(OH)3 (Ksp = 2.1 × 10-32).
A 1.00-mol sample of an ideal monatomic gas is compressed isothermally and irreversibly in one step from 2.50 atm to 6.50 atm at 300.0 K. Calculate G for this process
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