According to classical electromagnetic theory, calculate the initial frequency of the light emitted by the electron revolving around a proton in hydrogen atom.
Text Solution
AI Generated Solution
To calculate the initial frequency of the light emitted by the electron revolving around a proton in a hydrogen atom according to classical electromagnetic theory, we can follow these steps:
### Step-by-Step Solution:
1. **Understanding the System**:
- In a hydrogen atom, an electron revolves around a proton. According to classical electromagnetic theory, the electron emits electromagnetic radiation as it revolves.
2. **Relating Frequency to Revolution**:
...
Topper's Solved these Questions
ATOMS AND NUCLEI
PRADEEP|Exercise (II) very short answer 16|1 Videos
ATOMS AND NUCLEI
PRADEEP|Exercise (I) Short Answer questions 1|1 Videos
COMMUNICATION SYSTEMS
PRADEEP|Exercise MODEL TEST PAPER-2|9 Videos
Similar Questions
Explore conceptually related problems
Calculate the energy and frequency of the radiation emitted when an electron jumps from n=3 to n=2 ina hydrogen atom.
According to classical electromagnetic theory, the electron in an atom will move along a
The frequency of radiations , emitted when the electron falls , from n=4 to n=1 in a hydrogen , atom
Calculate the highest frequency of the emitted photon in the Paschen series of spectral lines of the hydrogen atom.
According to classical theory, Rutherfor'd atom model is
The total energy of an electron revolving in the second orbit of a hydrogen atom is
If an electron is moving around a nucleus of charge 3theta in a circular orbit of radius 10^(-10) m,then calculate the initial frequency of light emitted by the electron.
Calculate the wavelength and energy of radiation emitted for the electron transition from infinity to stationary state of the hydrogen atom
PRADEEP-ATOMS AND NUCLEI-Assertion- Reason type question 12