Embibe Experts Solutions for Chapter: Dual Nature of Matter and Radiation, Exercise 1: TS EAMCET - 10 August 2021 Shift 1
Embibe Experts Physics Solutions for Exercise - Embibe Experts Solutions for Chapter: Dual Nature of Matter and Radiation, Exercise 1: TS EAMCET - 10 August 2021 Shift 1
Attempt the free practice questions on Chapter 26: Dual Nature of Matter and Radiation, Exercise 1: TS EAMCET - 10 August 2021 Shift 1 with hints and solutions to strengthen your understanding. EMBIBE CHAPTER WISE PREVIOUS YEAR PAPERS FOR PHYSICS solutions are prepared by Experienced Embibe Experts.
Questions from Embibe Experts Solutions for Chapter: Dual Nature of Matter and Radiation, Exercise 1: TS EAMCET - 10 August 2021 Shift 1 with Hints & Solutions
A monochromatic source of radiation is operating at power. The source emits photons per second. The wavelength of light will be

A potassium chloride crystal has an energy band gap of . What wavelength of light for which the crystal is completely transparent? (Assume )

In the experimental study of photoelectric effect, if is the stopping potential and is the frequency of the incident light on the metal the slope of graph plotted for Versus is (where and are Planck's constant, charge of electron and work function of the metal respectively.

of light at falls on a metal whose work function is . The maximum number of electrons that can come out of the metal is

In a photoelectic experiment the incident photons have frequency where is the threshold frequency. The stopping potential is If the frequency of the incident photons is changed to then the correct statement is

A stream of electrons accelerated by a potential difference falls on the surface of a metal whose inner potential is . Then the refractive index of the metal for the electrons accelerated by a potential difference of is

An electron is moving with a speed in a constant magnetic field, it's de-Broglie wavelength (Assume magnetic field is perpendicular to the plane of motion of electron)

An electron accelerated by a potential difference of posses a de-Broglie wavelength, . If the accelerating potential is increased by a factor, . The de-Broglie wavelength of electron will be approximately
