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Physics
Taking the wavelength of first Balmer line in hydrogen spectrum (n = 3 to n = 2) as 660 nm, the wavelength of the 2nd Balmer line (n = 4 to n = 2) will be :
Q. Taking the wavelength of first Balmer line in hydrogen spectrum (n = 3 to n = 2) as 660 nm, the wavelength of the 2
n
d
Balmer line (n = 4 to n = 2) will be :
3051
173
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A
889.2
nm
0%
B
642.7
nm
0%
C
488.9
nm
100%
D
388.9
nm
0%
Solution:
660
1
=
R
(
2
2
1
−
3
2
1
)
=
36
5
R
...
(
1
)
λ
1
=
R
(
2
2
1
−
4
2
1
)
=
16
3
R
...
(
2
)
divide equation (1) with (2)
660
λ
=
6
×
3
5
×
16
λ
=
9
4400
=
488.88
=
488.9
nm
Option (3)