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If one slit is closed in a Young's double-slit experiment, the interference pattern will disappear, and you will only observe the pattern corresponding to a single slit. This occurs because interference requires two sources of coherent waves to create the pattern. By blocking one of the slits, you effectively eliminate the second wavefront needed for interference.

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In young's double slit experiment the intensity of central maximum is Io what will be the intensity at the same site if one of the slits is closed?

If one of the slits is closed in Young's double-slit experiment, the intensity at the central maximum would reduce by half, from Io to Io/2. This is because when both slits are open, the waves from each slit interfere constructively at the central maximum, resulting in a maximum intensity. Closing one slit disrupts this constructive interference, leading to a reduction in intensity at the central maximum.


What is the difference between the interference patterns produced by a single slit and a double slit in a double-slit experiment?

In a double-slit experiment, the interference patterns produced by a single slit and a double slit differ in their complexity and visibility. The interference pattern from a single slit is a simple pattern of alternating light and dark bands, while the interference pattern from a double slit is a more intricate pattern of multiple bright and dark fringes.


What is the relationship between the single and double slits diffraction formula?

The single slit diffraction formula is a special case of the double slit diffraction formula. The double slit formula accounts for interference between two slits, while the single slit formula considers diffraction from a single slit. The double slit formula can be derived from the single slit formula by considering the additional interference effects from the second slit.


How did young achieve the condition of phase coherence in young double slit experiment?

The condition of phase coherence in the Young double-slit experiment is achieved by using a monochromatic light source, which emits a single wavelength of light. This means that all the light waves interfering with each other have the same frequency and are in phase with each other. This results in the characteristic interference pattern observed on the screen.


What are the key findings and implications of Young's double slit experiment?

The key findings of Young's double slit experiment show that light behaves as both a wave and a particle. This duality challenges traditional ideas about the nature of light. The implications of this experiment have had a significant impact on the development of quantum mechanics and our understanding of the fundamental nature of the universe.

Related Questions

In young's double slit experiment the intensity of central maximum is Io what will be the intensity at the same site if one of the slits is closed?

If one of the slits is closed in Young's double-slit experiment, the intensity at the central maximum would reduce by half, from Io to Io/2. This is because when both slits are open, the waves from each slit interfere constructively at the central maximum, resulting in a maximum intensity. Closing one slit disrupts this constructive interference, leading to a reduction in intensity at the central maximum.


What happens when a third slit is introduced in Young's double slit experiment?

Born's rule predicts that interference patterns from three or more slits is equivalent to combining the effects of several double slit experiments. This rule was validated in an experiment done at the University of Waterloo in 2010.


What is the difference between the interference patterns produced by a single slit and a double slit in a double-slit experiment?

In a double-slit experiment, the interference patterns produced by a single slit and a double slit differ in their complexity and visibility. The interference pattern from a single slit is a simple pattern of alternating light and dark bands, while the interference pattern from a double slit is a more intricate pattern of multiple bright and dark fringes.


What is the relationship between the single and double slits diffraction formula?

The single slit diffraction formula is a special case of the double slit diffraction formula. The double slit formula accounts for interference between two slits, while the single slit formula considers diffraction from a single slit. The double slit formula can be derived from the single slit formula by considering the additional interference effects from the second slit.


Who created the simple slit and double-slit experiments?

Youngg.


How did young achieve the condition of phase coherence in young double slit experiment?

The condition of phase coherence in the Young double-slit experiment is achieved by using a monochromatic light source, which emits a single wavelength of light. This means that all the light waves interfering with each other have the same frequency and are in phase with each other. This results in the characteristic interference pattern observed on the screen.


What are the key findings and implications of Young's double slit experiment?

The key findings of Young's double slit experiment show that light behaves as both a wave and a particle. This duality challenges traditional ideas about the nature of light. The implications of this experiment have had a significant impact on the development of quantum mechanics and our understanding of the fundamental nature of the universe.


What is the distance from the slits to the screen in the double-slit experiment?

In the double-slit experiment, the distance from the slits to the screen is typically several meters.


Is the fresnel biprism experiment better than young's double slit experiment?

yes,because in fresnel biprism the fringe width can be increased so that the dark and bright fringes can be seen clearly by naked eyes..but there is no such problem in fresnel biprism.. in young's double slit experiment, the pattern is the superposition of interference and diffraction. but in fresnel biprism it is purely interference pattern.


Who is the scientist who proposed that light is a wave?

Thomas Young is the scientist who proposed in 1801 that light is a wave, using his double-slit experiment to support this theory.


Why narrow slits are taken in Young's double slit interference experiment?

Narrow slits in Young's double slit experiment create a coherent light source, leading to interference patterns. By ensuring the slits are narrow, the light passing through them acts as a coherent wavefront that produces clear interference fringes on the screen. This allows for the observation of the wave nature of light.


What is the equation in the double slit experiment?

The equation is: nλ=d(x/l) where: n is Order of maxima λ is wavelength d is slit separation x is fringe separation l is distance from screen to double slit