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Sound Processing - Wake Forest University Computer Science
Sound Processing - Wake Forest University Computer Science

PIT 96.1 - Communications and signal processing
PIT 96.1 - Communications and signal processing

... however, this time can be neglected. The reason is that the propagation time is often very small compared with the time over which the signal changes appreciably; so that the conductors over which the signal travels remain at equilibrium, i.e. at uniform potential. If this is not the case, we cannot ...
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FE_ASIC_for_SLHCb_Dec10 - Indico

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35. An electric current passing through a wire will produce

... A. One unit of licensed radio equipment is only allowed for one vehicle unless stated otherwise in the license. B. Radio equipment can be installed in any vehicle without any valid amateur radio license. C. Installation of radio equipment and antenna is not required to meet the specifications and re ...
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... When a spectrally pure sinewave passes through an amplifier (or other active device), various harmonic distortion products are produced depending upon the nature and the severity of the non-linearity. However, simply measuring harmonic distortion produced by single tone sinewaves of various frequenc ...
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... fully wired and factory-tested. While mounting it into an empty cabinet the mechanical installation will be completed. This ready-to-use concept allows to squeeze the power-down-time in rebuilding projects to a minimum. The DCS800-E aims for revamping projects to replace old DC-Drives up to 450 A, w ...
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... The newer 2nd generation units use the RS-422 receiver and driver type circuitry for digital I/O. Thus, the inputs and outputs use all differential signaling pairs. This allows a wider range of ground potential difference that is much more immune to signal interference from nearby equipment and from ...
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HD-MAC

HD-MAC was a proposed broadcast television systems standard by the European Commission in 1986 (MAC standard), a part of Eureka 95 project. It was an early attempt by the EEC to provide High-definition television (HDTV) in Europe. It was a complex mix of analogue signal (Multiplexed Analogue Components), multiplexed with digital sound, and assistance data for decoding (DATV). The video signal (1250 (1152 visible) lines/50 fields per second in 16:9 aspect ratio) was encoded with a modified D2-MAC encoder. HD-MAC could be decoded by a standard D2-MAC receivers (SDTV), but in that mode only 625 (576) lines and certain artifacts were visible. To decode the signal in full resolution required a specific HD-MAC tuner.
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