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Lyman and Balmer Series

Posted: Sat Oct 12, 2019 5:27 pm
by Janet Nguy 2C
During lecture Dr. Lavelle mentioned a diagram that showed the Lyman and Balmer series, but can someone clarify what they are? I didn't understand it in terms of the diagram.

Re: Lyman and Balmer Series

Posted: Sat Oct 12, 2019 5:31 pm
by Jada Brown 2H
The Lyman and Balmer series refer to wavelengths that quantify a transition to a specific energy level. The Lyman series refers to transitions of an electron from one energy level to the n=1 energy level. The Balmer series refers refers to transitions of an electron from one energy level to the n=2 energy level.

Re: Lyman and Balmer Series

Posted: Sat Oct 12, 2019 5:43 pm
by Ada Chung 1C
To clarify a little bit more on the Balmer series, the Balmer series of spectral emissions lines of hydrogen is the electron transitions going from a higher energy level back down to the principal quantum number of 2. To better visualize or think about this n1 (principal quantum number)=2 and n2=3,4,5... in the Balmer series whereas in the Lyman series n1=1. The Balmer series is also situated in the visible light region of the spectrum while the Lyman series is situated in the UV region of the spectrum. If you want to read more about the Balmer and Lyman series and better understand the differences between the two I recommend you read 1.A3 Atomic Spectra page 7.

Re: Lyman and Balmer Series

Posted: Sat Oct 12, 2019 5:43 pm
by ShastaB4C
Will we have to know the names of the series to answer certain problems?

Re: Lyman and Balmer Series

Posted: Sat Oct 12, 2019 8:59 pm
by Maeve Miller 1A
The Lynman and Balmer series can be seen on the light emission spectrum; the Lynman series refers to when electrons fall to energy level n=1, and the Balmer series refers to when electrons fall to energy level n=2. You can see this on the chart he provided on the slide by seeing which line the arrow goes to: if it goes to the first/bottom line, it is within the Lynman series, and if it falls to the second line, it is within the Balmer series.