2. The Paschen series of emission lines in the H atom spectrum are defined as those for which n₂ = 3 and n₁ > 3. Using the Rydberg formula, find the (a) shortest and (b) longest possible wavelengths (in units of um) for lines in this series. The Rydberg formula is 1-(7) 2 n₁ where R = 109,737 cm ¹. [Hint: the shortest wavelength occurs as n₁ → ∞ .]

Inquiry into Physics
8th Edition
ISBN:9781337515863
Author:Ostdiek
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Chapter10: Atomic Physics
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2. The Paschen series of emission lines in the H atom spectrum are defined as those for which
n₂ = 3 and n₁ > 3. Using the Rydberg formula, find the (a) shortest and (b) longest possible
wavelengths (in units of um) for lines in this series. The Rydberg formula is
(4)
2
n₁
where R = 109,737 cm ¹. [Hint: the shortest wavelength occurs as n₁ → ∞ .]
1
= Roo
Transcribed Image Text:2. The Paschen series of emission lines in the H atom spectrum are defined as those for which n₂ = 3 and n₁ > 3. Using the Rydberg formula, find the (a) shortest and (b) longest possible wavelengths (in units of um) for lines in this series. The Rydberg formula is (4) 2 n₁ where R = 109,737 cm ¹. [Hint: the shortest wavelength occurs as n₁ → ∞ .] 1 = Roo
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