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Revision: Dual Nature of Matter and Radiation CUET (UG) Dual Nature of Matter and Radiation

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Definitions [7]

Definition: Photoelectrons

It is a phenomenon where light falling on a material (usually a metal) causes it to emit electrons, generally called photoelectrons.

Definition: Photoelectrons

Electrons emitted from the metal during photoelectric emission are called photoelectrons.

Definition: Threshold Frequency

The minimum frequency of incident radiation required to just cause photoelectric emission from a given metal is called the threshold frequency.

Definition: Photoelectric Effect

The emission of electrons from a metal surface when electromagnetic radiation of sufficiently high frequency falls on it. This phenomenon is called the photoelectric effect.

Definition: Wave-Particle Duality

The property by which light or matter can show both wave-like and particle-like behaviour depending on the experiment is called wave-particle duality.

Definition: Matter Waves

The waves associated with a moving material particle are called matter waves or de Broglie waves.

Definition: de Broglie Hypothesis

According to de Broglie, every moving particle is associated with a wave whose wavelength depends on its momentum.

Formulae [1]

Formula: de Broglie Relation

For a particle of momentum p, the associated wavelength is:

λ = \[\frac {h}{p}\]

For a particle of mass m moving with speed v:

λ = \[\frac {h}{mv}\]
where:
  • λ = de Broglie wavelength
  • h = Planck's constant
  • p = momentum of the particle
  • m = mass of the particle
  • v = velocity of the particle

Key Points

Key Points: Photoelectric Effect - Hertz’s Observations
  • Photoelectric emission was discovered in 1887 by Heinrich Hertz.
  • Hertz made this observation during electromagnetic wave experiments.
  • High-voltage sparks across the detector loop were enhanced when the emitter plate was illuminated by ultraviolet light from an arc lamp.
  • Light shining on the metal surface facilitated the escape of free, charged particles.
  • These free, charged particles are electrons.
  • Electrons near the metal surface absorb energy from incident radiation.
  • If the absorbed energy is sufficient, electrons overcome the attraction of positive ions in the material.
  • The electrons then escape from the metal surface into the surrounding space.
Key Points: Davisson and Germer Experiment
  1.  The experiment verified the de-Broglie hypothesis.
  2. In this experiment, the wave nature of electron particles was studied with the help of a nickel crystal.
  3. Electrons undergo interference and diffraction phenomena and produce alternate bright and dark rings.
  4. When accelerating potential V = 54 V:
    λ = 0.165 nm (Experimental value)
    λ = 0.167 nm (Theoretical value from de-Broglie hypothesis)
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