Chemistry · JEE

Bohr model of a hydrogen atom: its postulates, derivation of the relations for the energy of the electron and radii of the different orbits, limitations of Bohr's model Revision for JEE

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  1. 1.Core idea: Bohr model of a hydrogen atom: its postulates, derivation of the relations for the energy of the electron and radii of the different orbits, limitations of Bohr's model
  2. 2.Relates to other subtopics in Atomic Structure
  3. 3.Bohr model limitations, quantum numbers
  4. 4.Orbital shapes s, p, d
  5. 5.Master Bohr model of a hydrogen atom: its postulates, derivation of the relations for the energy of the electron and radii of the different orbits, limitations of Bohr's model definitions and standard results
  6. 6.Solve 20 timed MCQs for Bohr model of a hydrogen atom: its postulates, derivation of the relations for the energy of the electron and radii of the different orbits, limitations of Bohr's model

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Q1ChemistryUnit 2: Atomic Structure
The energy of an electron in the ground state of H\boldsymbol{H} atom is 13.6eV-\mathbf{1 3 . 6 e V} The negative sign indicates that:
Q2ChemistryUnit 2: Atomic Structure
The wavelength of the radiation emitted when an electron falls from Bohr orbit 4 to 2 in hydrogen atom is:
Q3ChemistryUnit 2: Atomic Structure
Which of the following statements about Rutherford's model of an atom are correct? This question has multiple correct options
Q4ChemistryUnit 2: Atomic Structure
An atomic hydrogen is:
Q5ChemistryUnit 2: Atomic Structure
The radius of the stationary state which is also called Bohr radius is given by the expression rn=n2a0r_{n}=n^{2} a_{0} where the value of a0a_{0} is:
Q6ChemistryUnit 2: Atomic Structure
Assertion To overcome electrostatic force of attraction between electrons and nucleus, they revolve around the nucleus Reason Mass of the atom is almost due to its nucleus
Q7ChemistryUnit 2: Atomic Structure
In 1909 discovered nucleus in his famous gold foil experiment.
Q8ChemistryUnit 2: Atomic Structure
Assertion Bohr proposed that angular momentum of electron in an orbit is quantized. Reason Debroglie derived that :mur=nh2π: m u r=n \frac{h}{2 \pi} Read the above assertion and reason and choose the correct option regarding ¡t.

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