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Titlebook: Engineering Optics; Keigo Iizuka Textbook 19851st edition Springer-Verlag Berlin Heidelberg 1985 Engineering.complexity.diffraction.electr

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Basic Theory of Diffraction,s drawn, generated an unwanted wave front in the backward direction in addition to the wave front in the forward direction. This drawback was overcome by A. J. Fresnel (1818) and later by G. Kirchhoff (1882) by taking the periodic nature of the wave into consideration.
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Fiber Optical Communication,e demonstrated that light illuminating the top surface of water in a pail can be guided along a semi-arc of water streaming out through a hole in the side of the pail. Tremendous progress has been made since then, and thin glass fiber is now a viable means of transmission of light for communications.
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,Recommendations for ‘The City in Need’,holography, one of which is that the wavelength of the microwave is about 10. times larger than that of light, thus making it easier to manipulate the fringe pattern. Another advantage is that microwave sources radiating with long-term stability are readily available.
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by students trying to decide on a field of specialization. My advice has always been to pick any field that combines two or more disciplines such as Nuclear Physics, Biomedical Engineering, Optoelectronics, or even Engineering Optics. With the ever growing complexity of today‘s science and technolo
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https://doi.org/10.1007/978-1-4899-7102-9s drawn, generated an unwanted wave front in the backward direction in addition to the wave front in the forward direction. This drawback was overcome by A. J. Fresnel (1818) and later by G. Kirchhoff (1882) by taking the periodic nature of the wave into consideration.
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