हिंदी
तमिलनाडु बोर्ड ऑफ सेकेंडरी एज्युकेशनएचएससी विज्ञान कक्षा १२

Briefly discuss the observations of Hertz, Hallwachs and Lenard. - Physics

Advertisements
Advertisements

प्रश्न

Briefly discuss the observations of Hertz, Hallwachs and Lenard.

दीर्घउत्तर
Advertisements

उत्तर

Hertz observation:

  1. In 1887, Heinrich Hertz first became successful in generating and detecting electromagnetic waves with his high voltage induction coil to cause a spark discharge between two metallic spheres.
  2. When a spark is formed, the charges will oscillate back and forth rapidly and electromagnetic waves are produced.
  3. The electromagnetic waves thus produced were detected by a detector that has a copper wire bent in the shape of a circle. Although the detection of waves is successful, there is a problem in observing the tiny spark produced in the detector.
  4. In order to improve the visibility of the spark, Hertz made many attempts and finally noticed an important thing that small detector spark became more vigorous when it was exposed to ultraviolet light.
  5. The reason for this behaviour of the spark was not known at that time. Later it was found that it is due to the photoelectric emission.
  6. Whenever ultraviolet light is incident on the metallic sphere, the electrons on the outer surface are emitted which caused the spark to be more vigorous.

Hallwachs’ observation:

Irradiation of ultraviolet light on

  • uncharged zinc plate
  • negatively charged plate
  • positively charged plate
  1. In 1888, Wilhelm Hallwachs, a German physicist, confirmed that the strange behaviour of the spark is due to the action of ultraviolet light with his simple experiment.
  2. A clean circular plate of zinc is mounted on an insulating stand and is attached to a gold leaf electroscope by a wire. When the uncharged zinc plate is irradiated by ultraviolet light from an arc lamp, it becomes positively charged and the leaves will open.
  3. Further, if the negatively charged zinc plate is exposed to ultraviolet light, the leaves will close as the charges leaked away quickly. If the plate is positively charged, it becomes more positive upon UV rays irradiation and the leaves will open further.
  4. From these observations, it was concluded that negatively charged electrons were emitted from the zinc plate under the action of ultraviolet light.

Lenard’s observation:


     Experimental setup of Lenard

  1. In 1902, Lenard studied this electron emission phenomenon in detail. The apparatus consists of two metallic plates A and C placed in an evacuated quartz bulb. The galvanometer G and battery B are connected in the circuit.
  2. When ultraviolet light is incident on the negative plate C, an electric current flows in the circuit that is indicated by the deflection in the galvanometer. On other hand, if the positive plate is irradiated by ultraviolet light, no current is observed in the circuit.
  3. From these observations, it is concluded that when ultraviolet light falls on the negative plate, electrons are ejected from it which are attracted by the positive plate A. On reaching the positive plate through the evacuated bulb, the circuit is completed and the current flows in it.
  4. Thus, the ultraviolet light falling on the negative plate causes electron emission from the surface of the plate.
shaalaa.com
Photo Electric Effect
  क्या इस प्रश्न या उत्तर में कोई त्रुटि है?
अध्याय 8: Dual Nature of Radiation and Matter - Evaluation [पृष्ठ १३७]

APPEARS IN

सामाचीर कलवी Physics - Volume 1 and 2 [English] Class 12 TN Board
अध्याय 8 Dual Nature of Radiation and Matter
Evaluation | Q III. 2. | पृष्ठ १३७

संबंधित प्रश्न

When a metallic surface is illuminated with radiation of wavelength λ, the stopping potential is V. If the same surface is illuminated with radiation of wavelength 2λ, the stopping potential is `"V"/4`. The threshold wavelength for the metallic surface is


In photoelectric emission, a radiation whose frequency is 4 times threshold frequency of a certain metal is incident on the metal. Then the maximum possible velocity of the emitted electron will be


If the mean wavelength of light from sun is taken as 550 nm and its mean power as 3.8 × 1026 W, then the average number of photons received by the human eye per second from sunlight is of the order of


Photons of wavelength λ are incident on a metal. The most energetic electrons ejected from the metal are bent into a circular arc of radius R by a perpendicular magnetic field having magnitude B. The work function of the metal is


Mention the two features of x-ray spectra, not explained by classical electromagnetic theory.


Explain how frequency of incident light varies with stopping potential.


Explain the quantum concept of light.


Calculate the maximum kinetic energy and maximum velocity of the photoelectrons emitted when the stopping potential is 81 V for the photoelectric emission experiment.


Calculate the energies of the photons associated with the following radiation:

  1. violet light of 413 nm
  2. X-rays of 0.1 nm
  3. radio waves of 10 m

UV light of wavelength 1800 Å is incident on a lithium surface whose threshold wavelength is 4965 Å. Determine the maximum energy of the electron emitted.


Share
Notifications

Englishहिंदीमराठी


      Forgot password?
Use app×