Tell what type of orbital (such as 1s, 3d and so on ) is described by the following sets of quantum numbers. n = 6, l = 1 n = 5, l = 3 n = 1, l = 0 n = 7, l = 6
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- Tell what type of orbital (such as 1s, 3d and so on ) is described by the following sets of quantum numbers.
- n = 6, l = 1
- n = 5, l = 3
- n = 1, l = 0
- n = 7, l = 6
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- Given the n = 9 shell. (a) What is the largest value of the orbital quantum number, l, in this shell? (b) How many electrons can be placed in this shell?If an atom has an electron in the n = 4 state with m = 3, how many possible values of 1 are there?https://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.
- The quantum mechanical model of the hydrogen atom requires that if the principal quantum number is 4, there will be how many different permitted orbital quantum number(s)? Oone Otwo O four five!(a) For the 1s wave function, calculate the probability for the electron to be found within the nucleus, considered to be a sphere of radius R. (b) Evaluate the probability for a nucleus of lead (R = 7.1 fm). (c) Suppose instead that a muon (m = 207m) were in its 1s state. What is the probability to find it inside the lead nucleus?A hydrogen atom is in the 6g state. (a) What is the principal quantum number? (b) What is the energy of the atom? (c) What are the values for the orbital quantum number and the magnitude of the electron's orbital angular momentum?
- 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 3.46Consider the energy levels of the Hydrogen atom, which are given by the equation: 13.6 eV n² En = - What is the energy of the photon emitted when the atom makes a transition from the n = 2 level to the n = 1 level? 6.80 eV 10.2 eV 12.1 eV 13.6 eV 3.40 eVSuppose an electron has magnetic quantum number ml = 1. What constraints are on the values of the other quantum numbers (orbital l and principal n) for an electron in an atom? n > l ≥ 1 l ≥ n ≥ 1 l ≤ 1, n ≤ 2 l ≤ 2, n ≤ 1 There are no constraints.