1,725,527 research outputs found
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FASTBUS interface for the 3081/E
The design of a FASTBUS interface to the 3081/E is presented. The interface consists of two boards, one specific to FASTBUS, the other usable by other interfaces to the 3081/E. The FASTBUS board is a dual-ported slave, permitting access from either of two cable segments. The general purpose board supports transfers to and from 3081/E memory and provides control of program execution. It also has several features which facilitate software debugging
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3081//sub E/ processor
Since the introduction of the 168//sub E/, emulating processors have been successful over an amazingly wide range of applications. This paper will describe a second generation processor, the 3081//sub E/. This new processor, which is being developed as a collaboration between SLAC and CERN, goes beyond just fixing the obvious faults of the 168//sub E/. Not only will the 3081//sub E/ have much more memory space, incorporate many more IBM instructions, and have much more memory space, incorporate many more IBM instructions, and have full double precision floating point arithmetic, but it will also have faster execution times and be much simpler to build, debug, and maintain. The simple interface and reasonable cost of the 168//sub E/ will be maintained for the 3081//sub E/
This study recruited 28 obese volunteer participants with a Body Mass Index (BMI) >30 from the wider community in Dunedin, New Zealand (Dec, 10.1038/s41415-021-3081-1, 2021)
This study recruited 28 obese volunteer participants with a Body Mass Index (BMI) >30 from the wider community in Dunedin, New Zealand (Dec, 10.1038/s41415-021-3081-1, 2021
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3081/E processor
The 3081/E project was formed to prepare a much improved IBM mainframe emulator for the future. Its design is based on a large amount of experience in using the 168/E processor to increase available CPU power in both online and offline environments. The processor will be at least equal to the execution speed of a 370/168 and up to 1.5 times faster for heavy floating point code. A single processor will thus be at least four times more powerful than the VAX 11/780, and five processors on a system would equal at least the performance of the IBM 3081K. With its large memory space and simple but flexible high speed interface, the 3081/E is well suited for the online and offline needs of high energy physics in the future
Correlations among variables (Ganzhou, China) (n = 3081).
Correlations among variables (Ganzhou, China) (n = 3081).</p
Kentucky Council for Community Education (SC 3081)
Finding Aid only for Manuscripts Small Collection 3081. Memos and agenda for a meeting to be held to discuss a statewide coalition to support community education
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3081/E processor and its on-line use
The 3081/E is a second generation emulator of a mainframe IBM. One of it's applications will be to form part of the data acquisition system of the upgraded Mark II detector for data taking at the SLAC linear collider. Since the processor does not have direct connections to I/O devices a FASTBUS interface will be provided to allow communication with both SLAC Scanner Processors (which are responsible for the accumulation of data at a crate level) and the experiment's VAX 8600 mainframe. The 3081/E's will supply a significant amount of on-line computing power to the experiment (a single 3081/E is equivalent to 4 to 5 VAX 11/780's). A major advantage of the 3081/E is that program development can be done on an IBM mainframe (such as the one used for off-line analysis) which gives the programmer access to a full range of debugging tools. The processor's performance can be continually monitored by comparison of the results obtained using it to those given when the same program is run on an IBM computer. 9 refs
Radiocarbon ages from core MD07-3081
This dataset contains the age model of core MD07-3081. It integrates 21 radiocarbon (14C) dates between 50 and 1230 cm and was previously determined by Martínez Fontaine (2021). Depending on foraminifera availability, either monospecific planktonic foraminifera Globigerina bulloides or mixed planktonic foraminifera (Globigerina bulloides, Globorotalia inflata, Globigerinita glutinata, Neogloboquadrina incompta, Neogloboquadrina pachyderma (left coiling) and Turborotalia quinqueloba) were picked from the fraction >150 μm. The age model was obtained with the Undatable software (Lougheed and Obrochta, 2019)
Going Beyond Counting First Authors in Author Co-citation Analysis
The present study examines one of the fundamental aspects of author co-citation analysis (ACA) - the way co-citation
counts are defined. Co-citation counting provides the data on which all subsequent statistical analyses and mappings
are based, and we compare ACA results based on two different types of co-citation counting - the traditional type that
only counts the first one among a cited work's authors on the one hand and a non-traditional type that takes into
account the first 5 authors of a cited work on the other hand. Results indicate that the picture produced through this non-traditional author co-citation counting contains more coherent author groups and is therefore considerably clearer. However, this picture represents fewer specialties in the research field being studied than that produced through the traditional first-author co-citation counting when the same number of top-ranked authors is selected and analyzed. Reasons for these effects are discussed
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