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Independent Functions of Losartan − Receptor 1 Novel AT Print ISSN: 0009-7330. Online ISSN: 1524-4571 Copyright © 2002 American Heart Association, Inc. All rights reserved. is published by the American Heart Association, 7272 Greenville Avenue, Dallas, TX 75231 Circulation Research doi: 10.1161/01.RES.0000016843.82450.8C 2002;90:754-756 Circ Res. http://circres.ahajournals.org/content/90/7/754 ...
These include: References http://oem.bmjjournals.com/cgi/content/full/58/11/754#BIBL This article cites 15 articles, 6 of which can be accessed free at: Rapid responses http://oem.bmjjournals.com/cgi/eletter-submit/58/11/754 You can respond to this article at: service Email alerting top right corner of the article Receive free email alerts when new articles cite this article sign up in the box ...
Design and Implementation of a Mitchell-based Logarithmic Converter for a Floating Point Coprocessor
This paper presents a method to approach the implementation of a highly accurate logarithmic converter that operates with floating point numbers. For consistency purposes, it was necessary to adopt a standard to represent all floating point number. Hence, the IEEE Standard for Binary Floating-Point Arithmetic (IEEE 754) was the one selected. This logarithmic converter is based on Mitchell’s alg...
The IEEE-754 standard for Floating Point Arithmetic[1] that was in effect at the time of this seminar was adopted in 1985. That standard was intended for hardware implementation, although provisions were made for software implementation for operations. In addition to required operations, an appendix of recommended functions was also specified. Default exception handling was specified, and provi...
Many Digital Signal Processing (DSP) algorithms use floating-point arithmetic, which requires millions of calculations per second to be performed. For such stringent requirements, design of fast, precise and efficient circuits is the goal of every VLSI designer. This paper presents a comparison of pipelined floating-point adder complaint with IEEE 754 format with an unpipelined adder also compl...
IEEE 754r is the ongoing revision to the IEEE 754 floating point standard and a major enhancement to the standard is the addition of decimal format. Furthermore, in the recent years reversible logic has emerged as a promising computing paradigm having its applications in low power CMOS, quantum computing, nanotechnology, and optical computing. The major goal in reversible logic is to minimize t...
We present an efficient and reliable method for computing the unit–in–the–last–place (ulp) of a double precision floating–point number, taking advantage of the standard binary representation for floating– point numbers defined by IEEE Std 754–1985. The ulp is necessary to perform software rounding for robust rounded interval arithmetic (RIA) operations. Hardware rounding, using two of the stand...
There are several ways to represent real numbers on computers. Fixed point places a radix point somewhere in the middle of the digits, and is equivalent to using integers that represent portions of some unit. For example, one might represent 1/100ths of a unit; if you have four decimal digits, you could represent 10.82, or 00.01. Another approach is to use rationals, and represent every number ...
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