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"It was a wonderful experience interacting with you and appreciate the way you have planned and executed the whole publication process within the agreed timelines.”
Subrat SaurabhAuthor of Kuch Woh Pal
With the latter part of the last century in mind, it is not hard to imagine that in the foreseeable future, there will be a never-ending demand for increased data processing capability. The arithmetic logic unit (ALU) is the core of the CPU in a computer. Arithmetic circuits are power-hungry and performance-limiting in nature. Therefore, by improving these circuits, the overall performance of the computer systems can be improved significantly.
This boo
With the latter part of the last century in mind, it is not hard to imagine that in the foreseeable future, there will be a never-ending demand for increased data processing capability. The arithmetic logic unit (ALU) is the core of the CPU in a computer. Arithmetic circuits are power-hungry and performance-limiting in nature. Therefore, by improving these circuits, the overall performance of the computer systems can be improved significantly.
This book discusses the modeling and analysis of various arithmetic circuits by Tanner EDA Software.
Vibration characterisation of machine tools is essential to keep their operating frequencies away from their natural frequencies, thus avoiding resonance. Modelling and analysis of the actual structure are expensive, time-consuming, and require more computational efforts. Therefore, it seems logical to develop a simplified method using which the natural frequencies and modes shapes of the machine tool structures can be approximated quickly and economically.
Vibration characterisation of machine tools is essential to keep their operating frequencies away from their natural frequencies, thus avoiding resonance. Modelling and analysis of the actual structure are expensive, time-consuming, and require more computational efforts. Therefore, it seems logical to develop a simplified method using which the natural frequencies and modes shapes of the machine tool structures can be approximated quickly and economically.
This book presents a FEM based simplified methodology using which the vibration characteristics of the machine tool structures can be ascertained with reasonable accuracy.
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