
Humphrey series in the hydrogen spectrum is obtained as a result of the jump of electrons from to .

Important Questions on Atomic Physics




















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\n "},"encodingFormat":"text/html","position":1,"text":""},"comment":{"@type":"Comment","text":"Use the Rydberg formula."},"eduQuestionType":"Multiple choice","encodingFormat":"text/markdown","learningResourceType":"Practice problem","suggestedAnswer":[{"@type":"Answer","comment":{"@type":"Comment","text":"It is a wrong option."},"encodingFormat":"text/html","position":0,"text":""},{"@type":"Answer","comment":{"@type":"Comment","text":"It is a wrong option."},"encodingFormat":"text/html","position":2,"text":""},{"@type":"Answer","comment":{"@type":"Comment","text":"It is a wrong option."},"encodingFormat":"text/html","position":3,"text":""}],"text":"The energy required to ionise a hydrogen like ion in its ground state is Rydbergs. What is the wavelength of the radiation emitted when the electron in this ion jumps from the second excited state to the ground state?"},"name":"Quiz on Atomic Physics","typicalAgeRange":"10-17","url":"https://www.embibe.com/questions/The-energy-required-to-ionise-a-hydrogen-like-ion-in-its-ground-state-is-9-Rydbergs.-What-is-the-wavelength-of-the-radiation-emitted-when-the-electron-in-this-ion-jumps-from-the-second-excited-state-to-the-ground-state%3F/EM0599632"}