A laser beam passes through a slit of width 1.0 cm and ispointed at the Moon, which is approximately 380,000 kmfrom the Earth. Assume the laser emits waves of wavelength 633 nm (the red light of a He–Ne laser). Estimatethe width of the beam when it reaches the Moon due todiffraction.
A laser beam passes through a slit of width 1.0 cm and ispointed at the Moon, which is approximately 380,000 kmfrom the Earth. Assume the laser emits waves of wavelength 633 nm (the red light of a He–Ne laser). Estimatethe width of the beam when it reaches the Moon due todiffraction.
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A laser beam passes through a slit of width 1.0 cm and is
pointed at the Moon, which is approximately 380,000 km
from the Earth. Assume the laser emits waves of wavelength 633 nm (the red light of a He–Ne laser). Estimate
the width of the beam when it reaches the Moon due to
diffraction.
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