Some of the wavelengths of the emitted radiation in the emission spectrum of atomic hydrogen are given below: 97.25nm, 102.57nm, 121.57nm, 656.3nm Choose the correct matches for the below transitions between given energy levels (you do NOT have to make calculations) n=2 to n=1 n=3 to n=1 n=4 to n=1 n=3 to n=2 Select one: a. 102.57nm for n=2 to n=1 121.57nm for n=3 to n=1 656.3nm for n=4 to n=1 97.25nm for n=3 to n=2 b. 121.57nm for n=2 to n=1 102.57nm for n=3 to n=1 97.25nm for n=4 to n=1 656.3nm for n=3 to n=2 c. 656.3nm for n=2 to n=1 121.57nm for n=3 to n=1 102.57nm for n=4 to n=1 97.25nm for n=3 to n=2 d. 656.3nm for n=2 to n=1 97.25nm for n=3 to n=1 102.57nm for n=4 to n=1 121.57nm for n=3 to n=2 e. 97.25nm for n=2 to n=1 102.57nm for n=3 to n=1 121.57nm for n=4 to n=1 656.3nm for n=3 to n=2

Chemistry for Engineering Students
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Author:Lawrence S. Brown, Tom Holme
Publisher:Lawrence S. Brown, Tom Holme
Chapter6: The Periodic Table And Atomic Structure
Section: Chapter Questions
Problem 6.85PAE: 6.85 The visible lines in the hydrogen atom emission spectrum arise from transitions with a final...
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Some of the wavelengths of the emitted radiation in the emission spectrum of atomic hydrogen are given below:

 

97.25nm, 102.57nm, 121.57nm, 656.3nm

 

Choose the correct matches for the below transitions between given energy levels (you do NOT have to make calculations)

 

n=2 to n=1

n=3 to n=1
n=4 to n=1
n=3 to n=2

 

Select one:
a.

 

102.57nm for n=2 to n=1

121.57nm for n=3 to n=1

656.3nm for n=4 to n=1

97.25nm for n=3 to n=2



 

b.

 

 

121.57nm for n=2 to n=1

102.57nm for n=3 to n=1

97.25nm for n=4 to n=1

656.3nm for n=3 to n=2


 

c.

 

656.3nm for n=2 to n=1

121.57nm for n=3 to n=1

102.57nm for n=4 to n=1

97.25nm for n=3 to n=2


 

d.

 

 

656.3nm for n=2 to n=1

97.25nm for n=3 to n=1

102.57nm for n=4 to n=1

121.57nm for n=3 to n=2



 

 

e.

 

97.25nm for n=2 to n=1

102.57nm for n=3 to n=1

 

121.57nm for n=4 to n=1

 

656.3nm for n=3 to n=2

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