Thanks for reply, this is the question in full word for word:
In a Franck Hertz type experiment, atomic hydrogen is bombareded by electrons that have been accelerated through a poential V and the rate of arrival of electrons at the anode measure as a current I. It is found that the current falls sharply when the potetial V has the values 10.2 V and 12.1 V
What are the principle quantum numbers of the states to which the hydrogen atoms have been excited?
If you don't mind, could you also answer the rest of the question which has me stumped:
If the light emitted in the decay of the exited hydrogen atoms were to be analised, how many spectral lines in total would be observed as the potential is increased from 0V to 12.1 V. Identify the spectral series to which the lines belong.
I'm guessing, this relates to the first part of the question, when I find what the "quantised" volt is, I can count how many n's there are. Once I do that, I should be able to find the spectral lines.
If the potential were increased further to 12.6 how many more spectral lines would be observed. Justify your answer.
I believe I would do it as above, find out what the "quantised" unit is, and then count how many n's there are and work it out from there.
Thanks.