HARD
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For a hypothetical hydrogen like atom, the potential energy of the system is given by U r = - ke 2 r 4 , where r is the distance between the two particles. If Bohr's model of quantisation of angular momentum is applicable, then the velocity of the particle is given by

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Important Questions on Structure of Atom

MEDIUM
If the de Broglie wavelength of the electron in nth Bohr orbit in a hydrogenic atom is equal to 1.5 πa0 (a0 is Bohr radius), then the value of nz is:
EASY
Which of the following is the energy of a possible excited state of hydrogen?
MEDIUM
A particle of mass m moves in a circular orbit in a central potential field Ur=12kr2. If Bohr's quantization conditions are applied, radii of possible orbitals and energy levels vary with quantum number n as:
MEDIUM

Given below are two statements :
Statement I : According to Bohr's model of an atom, qualitatively the magnitude of velocity of electron increases with decrease in positive charges on the nucleus as there is no strong hold on the electron by the nucleus.
Statement II : According to Bohr's model of an atom, qualitatively the magnitude of velocity of electron increases with decrease in principle quantum number.

In the light of the above statements, choose the most appropriate answer from the options given below:

EASY
Both the nucleus and the atom of some element are in their respective first excited states. They get de-excited by emitting photons of wavelengths λN, λA respectively. The ratio λNλA is closest to:
MEDIUM
The ground state energy of a hydrogen atom is -13.6 eV. The energy of second excited state of He+ ion in eV is:
HARD
A neutron moving with a speed 'v' makes a head on collision with a stationary hydrogen atom in ground state. The minimum kinetic energy of the neutron for which  perfactly inelastic collision will take place is :
MEDIUM

The longest wavelength of light that can be used for the ionisation of lithium atom Li in its ground state is x×10-8 m. The value of x is (Nearest Integer)

(Given : Energy of the electron in the first shell of the hydrogen atom is -2.2×10-18 J; h=6.63×10-34Js and c=3×108 ms-1)

MEDIUM
In hydrogen atom, the minimum energy required to excite an electron from 2nd  orbit to the  3rd  orbit is
MEDIUM
The radius of the second Bohr orbit for hydrogen atom is

(Planck's constant, (h)=6.6262×1034Js; mass of electron =9.1091×10-31kg; charge of electron =1.60210×10-19C; permittivity of vacuum, (0)=8.854185×10-12kg-1m-3A2)
EASY
The radius of the first Bohr orbit of a hydrogen atom is 0.53×10-8 cm. The velocity of the electron in the first Bohr orbit is
EASY
The electron in the hydrogen atom undergoes transition from higher orbitals to orbital of radius 211.6 pm. This transition is associated with
HARD
Energy of an electron is given by  E=-2.178×10-18Z2n2 J. Wavelength of light required to excite an electron in a hydrogen atom from level n=1 to n=2 will be :
h=6.62×10-34 Js and c=3.0×108 ms-1
MEDIUM
The energy of an electron in first Bohr's orbit of H atom is 13.6eV. The energy value of electron in the first excited state of Li 2+ is :
MEDIUM
Consider the Bohr's model of a one-electron atom where the electron moves around the nucleus. In the following List-I contains some quantities for the nth orbit of the atom and List-II contains options showing how they depend on n .
 
List - I List - II
(I) Radius of the nth orbit P n-2
(II) Angular momentum of the electron in the nth orbit Q n-1
(III) Kinetic energy of the electron in the nth orbit R n0
(IV) Potential energy of the electron in the nth orbit S n1
  T n2
  U n1/2

Which of the following options has the correct combination considering List-I and List-II?
MEDIUM
The radius of the second Bohr orbit, in terms of the Bohr radius, a0, in Li2+ is:
MEDIUM

Question Image

The electron in the nth  orbit of Li2+  is excited to (n+1) orbit using the radiation of energy 1.47×10-17 J (as shown in the diagram). The value of n is ___________

Given : RH=2.18×10-18 J

 

MEDIUM
What will be the first ionization energy of Be atom ? Consider the first ionization energy of H atom as 13.6 eV.
MEDIUM

The ionization energy of gaseous Na atoms is 495.5 kJ mol-1. The lowest possible frequency of light that ionizes a sodium atom is 

(h=6.626×10-34 Js, NA=6.022×1023 mol-1)