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Oswald Viertel,Oskar Oldenrothld at the Royal Military College of Canada from 18 to 29 July, 1988. Approximately 110 participants from various NATO countries were in attendance during this two week period. Their research interests range from underwater acoustics to signal processing and computer science; some are renowned scientcrockery 发表于 2025-3-23 22:52:09
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icient at . things but hopelessly inefficient at . them (it even has a law preventing the spread of department stores). However, the Japanese are hardly likely to agree with Adam Smith’s assertion that ‘The interest of the producers ought to be attended to, only so far as it may be necessary for pro很像弓] 发表于 2025-3-24 08:45:49
Oswald Viertel,Oskar Oldenrothding the fundamental technologies and state-of-the-art methods, it is a valuable resource for graduate students and researchers working in the field computer vision and machine learning.978-981-10-9941-0978-981-10-3689-7Series ISSN 2190-5053 Series E-ISSN 2190-5061邪恶的你 发表于 2025-3-24 11:58:04
Oswald Viertel,Oskar Oldenrothe (SMRT) sequencing technology. We describe the basic characteristics of the broomcorn millet genome, which in combination with a high-density genetic map will serve as valuable resources for breeders and researchers interested in this underutilized crop.圣歌 发表于 2025-3-24 18:18:48
Oswald Viertel,Oskar Oldenrothit aims at laying a foundation for the further sonar system design. This textbook is recommended for graduate or undergraduate students in the field of sonar signal processing, underwater acoustic engineering, as well as some related subjects of marine technology..978-981-19-0776-0978-981-19-0774-6sphincter 发表于 2025-3-24 20:36:44
Oswald Viertel,Oskar Oldenroth. Propagation and Noise, II. Signal Processing and III. Post Processing. The reader will find in Section I papers on low frequency acoustic sources and effects of the medium on underwater acoustic propagation. Problems such as coherence loss due to boundary interaction, wavefront distortion and multbizarre 发表于 2025-3-25 01:07:00
ce mitigation. Most of these systems use noncoherent or a differentially coherent signal modulation and detection methods. Phase-coherent detection, which offers better efficiency in bandwidth utilization, is the subject of the second part of this chapter. In this part, the design of high-speed digi