Relative to the z axis, how many possible directions are there in space for the orbital angular momentum vector that represents an electron in a 2 p state (n = 2,1 = 1)? Select one: а. 5 b. 3 C. 7
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A: electron is present in 4 p orbital to find : possible sets of quantum states
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- An electron is in an angular momentum state with /= 3. (a) What is the length of the electron's angular momen- tum vector? (b) How many different possible z compo- nents can the angular momentum vector have? List the possible z components. (c) What are the values of the angle that the L vector makes with the z axis?L What are the differences and similarities between the quantization of angular momentum in the Bohr model and the Schrödinger theory? Explain in your own words and use examples from both to support your explanation. 111 Responses Reply Showing All Responses ordered by Newest Responseshttps://www.compadre.org/PQP/applications/prob14_6.cfm The animation depicts two 100-gram spheres connected by a spring with k = 200 N/m (position given in meters and time is given in seconds). Determine the quantum number associated with the angular momentum state shown.
- For the hydrogen atom in the 4d excited state find the possible values of n,l,m,m,, and mj. Give the term notation for each possible configuration.What is the greatest magnitude of the orbital angular momentum L for an electron in a state with principal quantum number n = 5? Group of answer choices 4.90 4.47 5.48 3.46: Write out the electronic configuration of the ground state for fluorine (Z = 9). 015²25²2pl 15²2522p³ 15²25²2p4 O 16²25²2p5
- Consider the atom having the electron configuration 1s2 2s2 2p6 3s2. Assume that the z components of both the orbital abd spin angular momenta of the electron in the 3p subshell are positive. What are the quantum numbers that describe the state of this electron. n=3 l=1 m=-1 s=1/2n=3 l=1 m=2 s=1/2n=3 l=2 m=1 s=1/2n=3 l=1 m=1 s=1/2n=3 l=2 m=2 s=-1/2 Can we say which one is correct?The wave function for hydrogen in the 1s state may be expressed as Psi(r) = Ae−r/a0, where A = 1/sqrt(pi*a03) Determine the probability for locating the electron between r = 0 and r = a0.How many different possible states can there be for an atom with n =5 and l = 1 ?