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\n2nd year mathematics for class 11,12,B,SC,PUB,Punjab,Palestine,. FSc part 2 Math Notes. Maths Notes for Class X is second in the series of the books published to support students preparing for Mathematics in Junior Science College (MSC). Maths Notes. for Class 10,11 download PDF Page 2. download pdf Page 1. 2nd year maths notes for class 11 download.The present invention relates to a process and apparatus for acoustic emission analysis of structure, and more specifically, to a process and apparatus for measuring explosive devices by analyzing acoustic emissions generated by the structure.
\nBecause of their use in land mines, nuclear weapons, and naval mines, explosive devices generate an undesirable amount of noise during assembly, disassembly, or handling operations. Explosive devices can be detonated in a variety of ways, including by blasting, electric charge detonation, ignition, and chemical triggering. Once detonated, an explosive device may generate a sustained acoustic emission signal, a time-varying acoustic emission signal, an impulse acoustic emission signal, or a combination of these types of signals.
\nDetonation of an explosive device can generally be monitored by visual observation of the device or by acoustic emission detection equipment. However, visual observation is unreliable for monitoring the state of an explosive device, particularly if it has not been suitably packaged or if the observer is unfamiliar with the device. Acoustic emission detection equipment is useful for monitoring the detonation state of an explosive device, but the equipment is complex, bulky, and expensive. Furthermore, the equipment cannot be read immediately upon the detection of a signal and in many cases must be transported to a laboratory for analysis. Even if analysis of acoustic emission signals can be conducted by a remote laboratory, the remote laboratory does not have the necessary equipment to determine precisely where the signal has originated.
\nAccordingly, there is a need for a process and apparatus for using acoustic emissions to detect the state of an explosive device in a timely, accurate, and cost-effective manner.Q:<\/p>\n
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