For the following H orbitals, locate the radial and angular nodes. 1. 1s (r, 0, ) 2. b2s (r, 0, 4) 3. b2p, (r, 0, $) 4. ap, (r, 0, 4) 5. rp. (r, 0, 4) 6. 3s (r, 0, ø) 7. b3p, (r, 0, 4)
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Q: In the figure above, and given the following information: A=(8.16, 5.23, 5.23) [m] B=(8.16, 0, 5.23)…
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Q: What is the radius of the 3rd orbital in hydrogen? [?] × 10²] m
A:
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- Which of these expressions would yield the wavelength of light in meters emitted when an electron drops from orbit n = 3 to n = 2 in a Bohr hydrogen atom? Given h = 4.14 x 10-15 eVs and c = 3.00 x 108 m/s. a. 1.89/hxc b. hc/1.89 c. 1.89 x h x c d. (1.51 + 3.4)/hc e. hc/3.41. Enumerate the microstates of p3. Determine the MS and ML values for each microstate. 2. On a table of possible MS and ML values, tally the microstates in no. 1 for a particular combination of MS and ML 3. Based on the table in no. 2, determine the atomic term symbols for the allowed atomic states of p3 resulting from the coupling of orbital and spin angular momentums. 4. Arrange the term symbols in no. 3 according to increasing energy.7. Determine the velocity of the electron in a positronium atom which is shown in the figure (figure is attached). Assume the radius of the positronium atom is 2 x 5.3 x 10 cm a) What is the total angular momentum about the center of the positronium atom in Problem 7? b) What is the force on the electron due to the positron? (Give both magnitude and direction.) c) What is the electric potential energy of the positronium atom?
- 1. [-/2 Points] DETAILS SERPSE10 41.3.OP.004. MY NOTES (a) A hydrogen atom is initially in the ground state. How much energy (in ev) is required to lonize it? ev (b) A hydrogen atom is initially in its third excited state (that is, its n = 4 state). How much energy (in ev) is required to ionize it? ev Submit AnswerI got sqrt(g/4) as my omega from part d. However, I don't how to proceed from there to answer part e,f and g