283361 In a Young's double slit experiment, the two slits which are separated by \(1.2 \mathrm{~mm}\) are illuminated with a monochromatic light of wavelength 6000 angstrom. The interference pattern is observed on a screen placed at a distance of \(1 \mathrm{~m}\) from the slits. Find the number of bright fringes formed over \(1 \mathrm{~cm}\) width on the screen.
283362 In Young's double slit experiment, the slits are \(2 \mathrm{~mm}\) apart and are illuminated by photons of two wavelengths \(\lambda_1=12000 \AA\) and \(\lambda_2=10000\) \(\AA\). At what minimum distance from the common central bright fringe on the screen \(2 \mathrm{~m}\) from the slit will a bright fringe from one interference pattern coincide with a bright fringe from the other?
283361 In a Young's double slit experiment, the two slits which are separated by \(1.2 \mathrm{~mm}\) are illuminated with a monochromatic light of wavelength 6000 angstrom. The interference pattern is observed on a screen placed at a distance of \(1 \mathrm{~m}\) from the slits. Find the number of bright fringes formed over \(1 \mathrm{~cm}\) width on the screen.
283362 In Young's double slit experiment, the slits are \(2 \mathrm{~mm}\) apart and are illuminated by photons of two wavelengths \(\lambda_1=12000 \AA\) and \(\lambda_2=10000\) \(\AA\). At what minimum distance from the common central bright fringe on the screen \(2 \mathrm{~m}\) from the slit will a bright fringe from one interference pattern coincide with a bright fringe from the other?
283361 In a Young's double slit experiment, the two slits which are separated by \(1.2 \mathrm{~mm}\) are illuminated with a monochromatic light of wavelength 6000 angstrom. The interference pattern is observed on a screen placed at a distance of \(1 \mathrm{~m}\) from the slits. Find the number of bright fringes formed over \(1 \mathrm{~cm}\) width on the screen.
283362 In Young's double slit experiment, the slits are \(2 \mathrm{~mm}\) apart and are illuminated by photons of two wavelengths \(\lambda_1=12000 \AA\) and \(\lambda_2=10000\) \(\AA\). At what minimum distance from the common central bright fringe on the screen \(2 \mathrm{~m}\) from the slit will a bright fringe from one interference pattern coincide with a bright fringe from the other?
283361 In a Young's double slit experiment, the two slits which are separated by \(1.2 \mathrm{~mm}\) are illuminated with a monochromatic light of wavelength 6000 angstrom. The interference pattern is observed on a screen placed at a distance of \(1 \mathrm{~m}\) from the slits. Find the number of bright fringes formed over \(1 \mathrm{~cm}\) width on the screen.
283362 In Young's double slit experiment, the slits are \(2 \mathrm{~mm}\) apart and are illuminated by photons of two wavelengths \(\lambda_1=12000 \AA\) and \(\lambda_2=10000\) \(\AA\). At what minimum distance from the common central bright fringe on the screen \(2 \mathrm{~m}\) from the slit will a bright fringe from one interference pattern coincide with a bright fringe from the other?
283361 In a Young's double slit experiment, the two slits which are separated by \(1.2 \mathrm{~mm}\) are illuminated with a monochromatic light of wavelength 6000 angstrom. The interference pattern is observed on a screen placed at a distance of \(1 \mathrm{~m}\) from the slits. Find the number of bright fringes formed over \(1 \mathrm{~cm}\) width on the screen.
283362 In Young's double slit experiment, the slits are \(2 \mathrm{~mm}\) apart and are illuminated by photons of two wavelengths \(\lambda_1=12000 \AA\) and \(\lambda_2=10000\) \(\AA\). At what minimum distance from the common central bright fringe on the screen \(2 \mathrm{~m}\) from the slit will a bright fringe from one interference pattern coincide with a bright fringe from the other?