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In Young's experiment, monochromatic lig...

In Young's experiment, monochromatic light is used to illuminate the two slits A and B. Interference fringes are observed on a screen placed in front of the slits. Now if a thin glass plate is placed normally in the path of the beam coming from the slit

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In Young’s experiment, monochromatic light through a single slit S is used to illuminate the two slits S_1 and S_2 . Interference fringes are obtained on a screen. The fringe width is found to be w. Now a thin sheet of mica (thickness t and refractive index mu ) is placed near and in front of one of the two slits. Now the fringe width is found to be w’, then :

A two slit Young's interference experiment it done with monochromatic light of wavelength 6000 A . The slits are 2 mm apart. The fringes are observed on a screen placed 10 cm away from the slits. Now a transparent plate of thickness 0.5 mm is placed in front of one of the slits and it if found that the interference pattern shifts by 5 mm . The refractive index of the transparent plate is :

A Young's double slit experiment uses a monochromatic source. The shape of the interference fringes formed on a screen is.....

A Young's double slit experiment uses a monochromatic source. The shape of the interference fringes formed on a screen is

A Young's double slit experiment uses a monochromatic source. The shape of the interference fringes formed on a screen is

A young's double slit experiment uses a monochromatic source. The shape of the interference fringes formed on a screen is

A Young.s double slit experiment uses a monochromatic source. The shape of the interference fringes formed on a screen

In Young's double slit experiment, if the two slits are illuminated with separate sources, no interference pattern is observed because

In Young's double slit experiment, if the two slits are illuminated with separate sources, no interference pattern is observed because