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The hydrogen -like species Li^(2+) is in...

The hydrogen -like species `Li^(2+)` is in a spherically sysmmetric state `S_(1)` with one node ,Upon ansorbing light , the ion undergoes transition to a state `S_(2)` The state `s_(2)` has one radial node and its energy is equal is to the ground state energy of the hydrogen atom
Energy of the state `S_(1)` in units of the hydrogen atom ground state enegy is

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Energy of the state S_(1) in units of the hydrogen atom ground state energy is

The hydrogen -like species Li^(2+) is in a spherically sysmmetric state S_(1) with one node ,Upon ansorbing light , the ion undergoes transition to a state S_(2) The state s_(2) has one radial node and its energy is equal is to the ground state energy of the hydrogen atom The sate S_(1) is

The hydrogen -like species Li^(2+) is in a spherically sysmmetric state S_(1) with one node ,Upon ansorbing light , the ion undergoes transition to a state S_(2) The state s_(2) has one radial node and its energy is equal is to the ground state energy of the hydrogen atom The sate S_(1) is

The hydrogen -like species Li^(2+) is in a spherically symmetric state S_(1) with one node. Upon absorbing light , the ion undergoes transition to a state S_(2) . The state S_(2) has one radial node and its energy is equal is to the ground state energy of the hydrogen atom. Energy of the state S_(1) in units of the hydrogen atom ground state energy is

The hydrogen like species Li^(2+) is in a spherically symmetric state S_(1) with one radial node. Upon absorbing light, the ion undergoes transition to a state S_(2) . The state S_(2) has one radial node and its energy is equal to the ground state energy of the hydrogen atom. Q. Energy of the state S_(1) in units of the hydrogen atom ground state energy is-

The hydrogen -like species Li^(2+) is in a spherically symmetric state S_(1) with one node. Upon absorbing light , the ion undergoes transition to a state S_(2) . The state S_(2) has one radial node and its energy is equal is to the ground state energy of the hydrogen atom. The sate S_(1) is