Home
Class 12
CHEMISTRY
The wavelength of the third line of the ...

The wavelength of the third line of the Balmer series for a hydrogen atom is

A

`(21)/(100R)`

B

`(100)/(21R)`

C

`(21R)/(100)`

D

`(100R)/(21)`

Text Solution

Verified by Experts

The correct Answer is:
B
Promotional Banner

Topper's Solved these Questions

  • STRUCTURE OF ATOM

    VMC MODULES ENGLISH|Exercise IN-CHAPTER EXERCISE-E|12 Videos
  • STRUCTURE OF ATOM

    VMC MODULES ENGLISH|Exercise IN-CHAPTER EXERCISE-F|7 Videos
  • STRUCTURE OF ATOM

    VMC MODULES ENGLISH|Exercise IN-CHAPTER EXERCISE-C|15 Videos
  • STOICHIOMETRY-II

    VMC MODULES ENGLISH|Exercise JEE Advanced (Archive)|43 Videos
  • SURFACE CHEMISTRY

    VMC MODULES ENGLISH|Exercise PRACTICE EXERCISE|9 Videos

Similar Questions

Explore conceptually related problems

If the wavelength of the first line of the Balmer series of hydrogen is 6561 Å , the wavelngth of the second line of the series should be

If the wavelength of the first line of the Balmer series of hydrogen is 6561 Å , the wavelngth of the second line of the series should be

the wavelength of the first line of lyman series for hydrogen atom is equal to that of the second line of balmer series for a hydrogen like ion. The atomic number Z of hydrogen like ion is

the wavelength of the first line of lyman series for hydrogen atom is equal to that of the second line of balmer series for a hydrogen like ion. The atomic number Z of hydrogen like ion is

The wave number of the first line in the Balmer series of hydrogen atom is 15200 cm^(-1) . What is the wave number of the first line in the Balmer series of Be^(3+) ?

The wave number of the first line in the Balmer series of hydrogen atom is 15200 cm^(-1) . What is the wave number of the first line in the Balmer series of Be^(3+) ?

The wavelength of the first spectral line in the Balmer series of hydrogen atom is 6561 A^(@) . The wavelength of the second spectral line in the Balmer series of singly - ionized helium atom is

Calculate the wavelength of the first line in the Balmer series of hydrogen spectrum

Calculate the wavelength of the first line in the Balmer series of hydrogen spectrum.

If the wavelength of the first member of Balmer series of hydrogen spectrum is 6563Å , then the wavelength of second member of Balmer series will be