A
B
C
D
Text Solution
Verified by Experts
The correct Answer is:
Topper's Solved these Questions
Similar Questions
Explore conceptually related problems
TARGET PUBLICATION-ATOMS, MOLECULES AND NUCLEI -Competitive Thinking
- The ionisation potential of hydrogen atom is 13.6 eV. The energy requi...
Text Solution
|
- An electron collides with a hydrogen atom in its ground state and exci...
Text Solution
|
- The ground state energy of hydrogen atom is -13.6 eV. What is the pote...
Text Solution
|
- The ratio of kinetic energy to the total energy of an electron in a Bo...
Text Solution
|
- The electron in a hydrogen atom makes a transition from an excited sta...
Text Solution
|
- The values of potential energy, kinetic energy and the total energy of...
Text Solution
|
- Total energy of electron in an excited state of hydrogen atom is -3.4 ...
Text Solution
|
- The transition of an electron from n(2)=5,6….. To n(1) =4 gives rise t...
Text Solution
|
- The lines of Lyman sereis are present in which region of the spectrum?
Text Solution
|
- Balmer series lies in which spectrum?
Text Solution
|
- Which one of the series of hydrogen spectrum is in the visible region ...
Text Solution
|
- In Bohr's theory of hydrogen atom, the electron jumps from higher orbi...
Text Solution
|
- If lambda(1) and lambda(2) are the wavelength of the first members of ...
Text Solution
|
- Given the value of Rydberg constant is 10^(7)m^(-1), the waves number ...
Text Solution
|
- The least energetic wave number in the Paschen series is
Text Solution
|
- Out of the following which one is not a possible energy for a photon t...
Text Solution
|
- The ionisation potential of H-atom is 13.6 eV. When it is excited from...
Text Solution
|
- Hydrogen (.(1)H^(1)), Deuterum (.(1)H^(2)), singly ionised Hellium (....
Text Solution
|
- An electron jumps from the 4th orbit to the 2nd orbit of hydrogen atom...
Text Solution
|
- The ratio of the largest to shortest wavelength in Lyman series of hyd...
Text Solution
|